Chapter 7: Further Reading
A
van Aelst AC, van Went JL (1992) Ultrastructural immuno-localisation of pectins and glycoproteins in Arabidopsis thaliana pollen grains. Protoplasma 168: 14-19
Albersheim PD, Roberts K, Sederoff R, Staehelin A (2010) Plant cell walls. Garland Science: New York. pp. 430
Arnon DI (1983) The water-culture method for growing plants without soil. University of Berkeley Press: Berkeley. pp. 34
Arteaga-Vazquez MA (2015) Land plant evolution: listen to your elders. Curr. Biol 26: 26-29
B
Bacic A, Du H, Stone BA, Clarke AE (1997) Arabinogalactan-proteins: a family of cell-surface and extracellular matrix plant proteoglycans. Essays Biochem. 31: 91-101
Bacic A, Harris PJ, Stone BA (1988) The biochemistry of plants: a comprehensive treatise: structure and function of plant cell walls. Academic Press: New York. pp. 705
Bacic A, Moody SF, Clarke AE (1986) Structural analysis of secreted root slime from maize (Zea mays L.). Plant Physiol. 80: 771-777
Badri DV, Vivanco JM (2009) Regulation and function of root exudates. Plant, Cell & Environ. 32: 666-681
Baetz U, Martinoia E (2014) Root exudates: the hidden part of plant defense. Trends Plant Sci. 19: 90-98
Bais HP, Perry LG, Gilroy S, Vivanco JM (2006) The role of root exudates in rhizosphere interactions with plants and other organisms. Annu. Rev. Plant Biol. 57: 233-266
Barea JM, Toro M, Orozco MO, Azcon EC (2002) The application of isotopic (32p and 15n) dilution techniques to evaluate the interactive effect of phosphate-solubilising rhizobacteria, mycorrhizal fungi and rhizobium to improve the agronomic efficiency of rock phosphate for legume crops. Nutri. Cycl. Agroeco. 63: 35-42
Bateman RM, Crane PR, Si Michele WA, Kenrich PR, Rowe NP, Speck T, Stein EW (1998) Early evolution of land plants: phylogeny, physiology, and ecology of the primary terrestrial radiation Annu. Rev. Ecol. Evol. Syst. 29: 263-292
Baur PS (2012) Mass spectrometry for characterising plant cell wall polysaccharides Front Plant Sci. 12: 3-45
Baur PS, Clark RS, Walkinshaw CH, Scholes VE (1974) Uptake and translocation of elements from Apollo 11 luna material by lettuce seedlings. Phyton. 32: 133-142
Beauregard PB, Chai Y, Vlamakis H, Losick R, Kolter R (2013) Bacillus subtilis biofilm induction by plant polysaccharides. Proc. Nat. Acad. Sci. USA 110: 1621-1630
Bengough AG, McKenzie BM (1997) Sloughing of root cap cells decreases the frictional resistance to maize (Zea mays L.) root growth. J. Exp. Bot. 309: 885-893
Benova-Kakosova A, Digonnet C, Goubet F, Ranocha P, Jauneau A, Pesquet E, Barbier O, Zhang Z, Capek P, Dupree P, Liskova D, Goffner D (2006) Galactoglucomannans increase cell population density and alter the protoxylem/metaxylem tracheary element ratio in xylogenic cultures of Zinnia. Plant Physiol. 142: 696-709
Benizri E, Nguyen C, Piutti S, Slezack-Deschaumes S, Philippot I (2007) Additions of maize root mucilage to soil changed the structure of the bacterial community. Soil Biol. & Biochem. 39: 1230-1233
Biedrzycki ML, Jilany AT, Dudley SA, Baiscorresponding HP (2010) Root exudates mediate kin recognition in plants. Comm. Integr. Biol. 1: 28-35
Björndal H, Hellerqvist CG, Lindberg B, Svensson S (1970) Gas-liquid chromatography and mass spectrometry in methylation analysis of polysaccharides. Angewandte Chemie Inter. 9: 610-619
Blake AW, McCartney L, Flint J, Bolam DH, Boraston AB, Gilbert HJ, Knox JP (2006) Understanding the biological rationale for the diversity of cellulose-directed carbohydrate-binding modules in prokaryotic enzymes. J. Biol. Chem. 281: 29321-29329
Boraston AB, Revett TJ, Boraston CM, Nurizzo D, Davies GJ (2003). Structural and thermodynamic dissection of specific mannan recognition by a carbohydrate binding module, TmCBM27. Structure 11: 665–675
Boraston AB, Bolam DN, Gilbert HJ, Davis GJ (2004) Carbohydrate-binding modules in Cellulomonas fimi xylanase 11A. Biochem. J. 382: 769-781
Borner GH, Liley KS, Stevens TJ, Dupree P (2002) Prediction of glycosylphosphatidylinositol-anchored proteins in Arabidopsis. a genomic analysis. Plant Physiol. 129: 486-499
Brown L (2008) Applied principles of horticultural sciences. 3rd ed. Elsevier: London. pp. 322
Buckeridge MS, Vergara CE, Carpita NC (1999) The mechanisms of synthesis of a mixed-linkage (1-3),(1-4)β-D-glucan in maize. Evidence for multiple sites of glucosyl transfer in the synthase complex. Plant Physiol. 120: 1105-1116
Burton RA, Gidley MJ, Fincher GB (2010) Heterogeneity in the chemistry, structure and function of plant cell walls. Nat. Chem. Biol. 6: 724-732
C
Caffall KH, Mohnen D (2009) The structure, function, and biosynthesis of plant cell wall pectic polysaccharides. Carbo. Res. 14: 1879-1900
Cannesan MA, Durand C, Burel C, Gangneux C, Lerouge P, Ishii T, Laval K, Follet-gueye, ML Driouich A, Vicre-Gibouin M (2012) Effect of arabinogalactan proteins from the root caps of pea and Brassica napus on aphanomyces euteiches zoospore chemotaxis and germination. Plant Physiol. 159: 1658-1670
Carpita NC, McCann M (2000) The cell wall. In: Buchanan DB, Gruissem W, Jones RL, eds. Biochemistry and molecular biology of plants. American Society of Plant Physiologists: Rockville. pp. 1280
Carpita NC, McCann M (2002) The functions of cell wall polysaccharides in composition and architecture revealed through mutations. Plant Soil 247: 71-80
Carpita NC (1996) Structure and biogenesis of the cell walls of grasses. Annu. Rev. Plant Physiol. & Plant Mol. Biol. 47: 445-476
Carpita NC, Gibeaut DM (1993) Structural models of primary cell walls in flowering plants: consistency of molecular structure with the physical properties of the walls during growth. Plant J. 3:1-30
Carrizo ME, Alesso CA, Cosentino D, Imhoff S (2015) Aggregation agents and structural stability in soils with different texture and organic carbon contents. Scientia Agricola 72: 75-82
Cassab IC (1998) Plant cell wall proteins. Annu. Rev. Plant Biol. 49: 281-309
Cavalier DM, Lerouxel O, Neuetzler L, Yamauchi K, Reinecke A, Freshour G, Hahn MG, Burgert I, Pauly M, Raikhel NV, Keegstra K (2008) Disrupting two Arabidopsis thaliana xylosyltransferase genes results in plants deficient in xyloglucan, a major primary cell wall component. Plant Cell 20: 1519-1537
Chaboud A (1983) Isolation, purification and chemical composition of maize root cap mucilage. Plant & Soil 73: 395-402
Chaboud A, Rougier M (1984) Identification and localisation of sugar components of rice (Oryza sativa L.) Root cap mucilage. J. Plant Physiol. 116: 323-330
Chateigner-Boutin A, Ordaz-Ortiz JJ, Alvarado C, Bouchet B, Durand S, Verhertbruggen Y, Barriere Y, Saulnier C (2016) Developing pericap of maize: a model to study arabinoxylan synthesis and feruloylation. Front. Plant Sci. 7: 1478-1498
Chang I, Jooyoung IM, Prasidhi AK, Cho G (2015) Effects of xanthan gum biopolymer on soil strengthening. Constr. Build. Mater. 74: 65-72
Chenu C, Guerif J (1989) Mechanical strength of clay minerals as influenced by an adsorbed polysaccharide. Soil Sci. Soc. Amer. 55: 1076-1080
Cheshire MV (1990) Composition, origins, structures, and reactivities of soil polysaccharides. Soil colloids and their applications in aggregates. Springer Science & Business Media: New York. pp 616
Cheshire MV (1979) Nature and origin of carbohydrates in soils. Academic Press: London. pp 484
Cheshire MV, Bracewell JM, Mundie CM, Robertson GW, Russll JD, Fraser AR (1979) Structural studies on soil polysaccharides. J. Soil Sci. 30: 315-326
Cheshire MV, Sparling GP, Mundie CM (1983) Effect of periodate treatment of soil on carbohydrate constituents and soil aggregation. J. Soil Sci. 34: 105-112
Cheshire MV, Sparling CP, Mundie CM (1985) The effect of oxidisation by periodate on soil carbohydrate derived from plants and microorganisms. J. Soil Sci. 36: 351-356
Clapp CE, Davis RJ (1970). Properties of extracellular polysaccharides from rhizobium. Soil Biol. Biochem. 2: 109-117
Clapp CE, Emerson WW (1965) The effect of periodate oxidisation on the strength of soil crumbs. Soil. Sci. Soc. Amer. Proc. 29: 130-134
Clapp CE, Emerson WW (1972) Reactions between ca-montmorillonite and polysaccharides. Soil Sci. 114: 210-216
Clarke AE, Anderson RL, Stone BA (1979) Form and function of arabinogalactans and arabinogalactan-proteins. Phytochem. 18: 521-540
Clausen MD, Ralet M, Willats WGT, McCartney L, Marcus SE, Thibault J, Knox JP (2004) A monoclonal antibody to feruloylated-(1→4)-β-D-galactan. Planta 219: 1036-1041
Clausen MH, Willats WGT, Knox JP (2003) Synthetic methyl hexagalacturonate hapten inhibitors of anti-homogalacturonan monoclonal antibodies LM7, JIM5 and JIM7. Carbohydr. Res. 338: 1797-1800
Cornuault V, Buffetto F, Rydahl MG, Marcus SE, Torode TA, Xue J, Crépeau M, Faria-Blanc N, Willats WGT, Dupree P, Ralet M, Knox JP (2015) Monoclonal antibodies indicate low-abundance links between heteroxylan and other glycans of plant cell walls. Planta 242: 1321-1334
Cornuault V, Knox JP (2014) Sandwich Enzyme-linked Immunosorbent Assay (ELISA) Analysis of plant cell Wall glycan connections. Bio-Protoc 4: e1106. http://www.bio-protocol.org/e1106
Cornuault V Manfield IW, Ralet M, Knox JP (2014) Epitope detection chromatography: a method to dissect the structural heterogeneity and inter-connections of plant cell-wall matrix glycans. Plant J. 78: 715-22
Cosgrove DJ (2005) Growth of the plant cell wall. Nature 6: 850-861
Cosgrove DJ, Park YB (2012) A revised architecture of primary cell walls based on biomechanical changes induced by substrate-specific endoglucanases. Plant Physiol. 158: 1933-1943
Crandall PG, Wicker L (1986) Pectin internal gel strength: theory, measurement, and methodology. Ameican Chemical Society: Washington. pp. 283
Czarnes S, Hallett PD, Bengough AG, Young IM (2000) Root- and microbial-derived mucilages affect soil structure and water transport. Eur. J. Soil Sci. 51: 435-443
D
Day PR (1965) Particle fractionation and particle-size analysis. University of California Publishing: Oakland. pp. 567
Daly KR, Tracy SR, Crout NMJ, Maihofer S, Pridmore TP, Mooney SJ, Roose T (2017) Quantification of root water uptake in soil using X-ray computed tomography and image-based modelling. Plant Cell Environ. 12: 1-13
De Booth MF, Hayes MBH, Herbillon H (1984) Soil colloids and their associations in aggregates. Springer Science & Business Media: Berlin. pp. 598
Del Bem LEV, Vincentz MGA (2010) Evolution of xyloglucan-related genes in green plants. BMC Evol. Biol. 10: 341-345
Dennis PG, Miller AJ, Hirsch PR (2010) Are root exudates more important than other sources of rhizodeposits in structuring rhizosphere bacterial communities? FEMS Microbiol. Ecol. 72: 313-27
Draper J, Mur LAJ, Jenkins G, Ghosh-Biswas GC, Bablak P, Hasterok R, Routledge APM (2001) Brachypodium distachyon. A New Model System for Functional Genomics in Grasses. Plant Physiol. 127: 1539-1555
Driouich A, Durand C, Vicre-Gibouin M (2007) Formation and separation of root border cells. Trends Plant Sci. 12: 14-19
Driouich A. Follet-Gueye M, Vicré-Gibouin M, Hawes M (2013) Root border cells and secretions as critical elements in plant host defense. Curr. Opin. Plant Biol. 16: 489-495
du Toit AGA, Labuschagne MT (2007) A comparison between hydroponics systems and pots for growing wheat in the greenhouse. S. Afr. J. Plant & Soil 24: 120-123
Duan J, Zheng Y, Dong Q, Fang JN (2004) Structural analysis of a pectic polysaccharide from the leaves of Diospyros kaki. Phytochem. 65: 609-615
Durand C, Vicré-Gibouin M, Follet-Gueye ML, Duponchel L, Moreau M, Lerouge P, Driouich A (2009) The organisation pattern of root border-like cells of Arabidopsis is dependent on cell wall homogalacturonan. Plant Physiol. 150: 1411-1421
E
Ebringerová A, Heinze T (2000) Xylan and xylan derivatives – biopolymers with valuable properties. Macromol. Rapid Commun. 21: 542-556
Edwards AP, Bremner JM (1967) Microaggregates in soils. J. Soil Sci.18: 64-73
Ellis M, Egelund J, Schultz CJ, Bacic A (2010) Arabinogalactan-proteins: key regulators at the cell surface? Plant Physiol. 153: 403-419
EnCor Biotechnology Inc (2016) How to use Microsoft excel to quantify ELISA data. Encor Biotechnology Inc: http://www.encorbio.com/protocols/ELISA-Excel.htm
Engvall E, Perlmann P (1971) Enzyme-linked immunosorbent assay (ELISA) quantitative assay of immunoglobulin G. Immunochem. 8: 871-874
Erktan A, Cécillon L, Graf F, Roumet C, Legout C, Rey F (2016) Increase in soil aggregate stability along a Mediterranean successional gradient in severely eroded gully bed ecosystems: combined effects of soil, root traits and plant community characteristics. Plant & Soil 398: 121-137
Evenson RE, Gollin D (2003) Assessing the Impact of the Green Revolution, 1960 to 2000. Science 300: 758-762
F
Fangel JU, Ulvskov P, Knox JP, Mikkelsen MD, Harholt J, Popper ZA, Willats WGT (2012) Cell wall evolution and diversity. Front Plant Sci. 3: 1-8
Ferl RJ, Paul A (2010) Lunar plant biology – a review of the Apollo Era. Astrobiology 10: 261-274
Field KJ, Pressel S, Duckett JG, Rimmington WR, Bidartondo MI (2015) Symbiotic options for the conquest of land. Trends Ecol & Evol. 30: 477-486
Fincher GB, Stone BA, Clarke AE (1983) Arabinogalactan-proteins: structure, biosynthesis, and function. Annu. Rev. Plant Physiol. 34: 47-70
Fitz Patrick EA (1993) Soil microscopy and micromorphology. Wiley Blackwell: New Jersey: pp. 304
Flemming H, Wingender J (2010) The biofilm matrix. Nature Rev. Microbiol. 8: 623-633
Foster RC (1981) Polysaccharides in soil fabrics. Science 4521: 665-667
Foster RC (1982) The fine structure of epidermal cell mucilages of roots. New Phytol. 91: 727-740
Fry SC (1988) The growing plant cell wall: chemical and metabolic analysis. Longman Scientific & Technical: London. pp. 352
Fry SC (1989) The structure and functions of xyloglucan. J. Exp. Biol. 40: 1-11
Fry SC (2011) Plant Cell Walls. From Chemistry to Biology. Ann. of Bot. 108: 3-9
G
Gahoonia TS, Nielsen NE, Joshi PA, Jahoor A (2001) A root hairless barley mutant for elucidating genetic of root hairs and phosphorus uptake. Plant Soil 235: 211-219
Gane AM, David C, Munro SLA, Howlett GJ, Clarke AE, Bacic A (1995) Structural analysis of the carbohydrate moiety of arabinogalactan-proteins from stigmas and styles of Nicotiana alata. Carbo. Res. 277: 67-85
Garcia-Salamanca AG, Molina-Henares MA, van Dilewijn P, Solano J, Pizarro-Tobias P, Roca A, Duque E, Ramos JL (2013) Bacterial diversity in the rhizosphere of maize and the surrounding carbonate-rich bulk soil. Microbiol. Biotech. 6: 36-44
Geshi N, Johansen JN, Dilokpimol A, Rolland A, Belcram K, Verger S, Kotake T, Tsumuraya Y, Kaneko S, Tryfona T, Dupree P, Scheller HV, Hofte H, Mouille G (2013) A galactosyltransferase acting on arabinogalactan protein glycans is essential for embryo development in Arabidopsis. Plant J. 76: 128-37
Giacomelli G, Kacira M, Furfaro R, Patterson RL, Sadler P (2015) Plant production, energy balance and monitoring-control-telepresence in a recirculating hydroponic vegetable crop production system: prototype lunar greenhouse. Acta Hortic. 1107: 53-60
Gibeaut DM, Carpita NC (1994) Biosynthesis of plant cell wall polysaccharides. FASEB J. 8: 904-915.
Gilbert HJ, Knox JP, Boraston AB (2013) Advances in understanding the molecular basis of plant cell wall polysaccharide recognition by carbohydrate-binding modules. Curr. Opin. Struct. Biol. 23: 669-677
Gilbert N (2009) Environment: the disappearing nutrient. Nature 461: 716-718
Gilroy S, Jones D (2000) Through form to function: root hair development and nutrient uptake. Trends Plant Sci. 5: 56.60
Goubet F, Barton CJ, Mortimer JC, Yu X, Zhang Z, Miles GP, Richens J, Liepman AH, Seffen K, Dupree P (2009) Cell wall glucomannan in Arabidopsis is synthesised by CSLA glycosyltransferases, and influences the progression of embryogenesis. Plant J. 60: 527-538
Greenland DJ (1965) Nteractions between clays and organic compounds in soils. Soils & Fertil. 28: 415-425
Greenland DJ (1979) The physics and chemistry of the soil root interface: some comments. Academic Press: London. pp. 448
Griffiths E, Burns RG (1972) Interaction between phenolic substances and microbial polysaccharides in soil aggregation Plant & Soil 36: 599-612
Griffiths E, Jones D (1965). Microbiological aspects of soil structure. Plant & Soil 23:17-33
Guinel FC, McCully ME (1986) Some water-related physical properties of maize root-cap mucilage. Plant, Cell & Environ. 9: 657-666
Gunawardena U, Hawes MC (2002) Tissue specific localisation of root infection by fungal pathogens: role of root border cells. Mol. Plant-Microbe Interact. 15: 1128-1136
Gunina A, Kuzyakov Y (2015) Sugars in soil and sweets for microorganisms: review of origin, content, composition and fate. Soil Biol & Biochem. 90: 87-100
H
Hadfield KA, Bennet BA (1998) Polygalacturonase: many genes in search of a function. Plant Physiol. 117: 337-343
Haichar FZ, Santaella C, Heulin T, Achouak W (2014) Root exudates mediated interactions belowground. Soil Biol & Biochem. 77: 69-80
Hamilton SK, Doll JE, Philip G (2015) The ecology of agricultural landscapes: long-term research on the path to sustainability. Oxford University Press: Oxford. pp. 432
Handford MG, Baldwin TC, Goubet F, Prime TA, Yu JMX, Dupree P (2003) Localisation and characterisation of cell wall mannan polysaccharides in Arabidopsis thaliana. Planta 218: 27-36
Hao Z, Mohnen D (2014) A review of xylan and lignin biosynthesis: foundation for studying Arabidopsis irregular xylem mutants with pleiotropic phenotypes. Crit. Rev. Biochem. Mol. Biol. 49: 212-241
Harholt J, Moestrup O, Ulvskov P (2016) Why plants were terrestrial from the beginning. Trends Plant Sci. 21: 96-101
Harholt J, Suttangkakul A, Scheller HV (2010) Biosynthesis of pectin. Plant Physol. 153: 384-395
Hartnett DC, Wilson GWT, Ott JP, Setshogo M (2012) Variation in root system traits among African semi-arid savanna grasses: Implications for drought tolerance. Austral Ecol. 38: 383-392
Haughn GW, Western TL (2012) Arabidopsis seed coat mucilage is a specialized cell wall that can be used as a model for genetic analysis of plant cell wall structure and function. Front Plant Sci. 3: 1-5
Hawes MC, Bengough AG, Cassab G, Ponce G (2002) Root caps and rhizosphere. J. Plant Growth Reg. 21: 352-367
Hawes MC, Brigham LA, Wen F, Woo HH, Zhu Y (1998) Function of root border cells in plant health: pioneers in the rhizosphere. Annu. Rev. Phytopathol. 36: 311-327
Hayashi T (1989) Xyloglucans in the Primary Cell Wall. Annu. Rev Plant Physiol. Plant Mol. Biol. 40: 139-168
Haynes RJ, Francis GS (1993) Changes in microbial biomass C, soil carbohydrate composition and aggregate stability induced by growth of selected crop and forage species under field conditions. Eur. J. Soil Sci. 44: 665-675
Heiss C, Klutts JS, Wang W, Doering TL, Azadi P (2009) The structure of Cryptococcus neoformans galactoxylomannan contains β-D-glucuronic acid. Carbohydr. Res. 344: 915-920
Helgason T, Daniell TJ, Husband R, Fitter AH, Young JPW (1998) Ploughing up the wood-wide web? Nature 394: 431-438
Herth W, Schnepf E (1980) The fluorochrome, calcofluor white, binds oriented to structural polysaccharide fibrils. Protoplasma 105: 129-133
Hernandez-Gomez MC, Rydahl MG, Rogowski A, Morland C, Cartmell A, Crouch L, Labourel A, Fontes CMGA, Willats WGT, Gilbert HJ (2015). Recognition of xyloglucan by the crystalline cellulose-binding site of a family 3a carbohydrate-binding module. FEBS Lett. 589: 2297-2303
Hervé C, Rogowski A, Gilbert HJ, Knox JP (2009) Enzymatic treatments reveal differential capacities for xylan recognition and degradation in primary and secondary plant cell walls. Plant J. 58: 413-422
Hirsinger C, Parmentier Y, Jacqueline AD, Jamet FE (1997) Characterisation of a tobacco extensin gene and regulation of its gene family in healthy plants and under various stress conditions. Plant Mol. Biol. 33: 279-289
Hoflich G, Wiehe W, Kuhn G (1994) Plant growth stimulation by inoculation with symbiotic and associative rhizosphere microorganisms. Experientia 50: 897-905
Houghton RA (2007) Balancing the global carbon budget. Annu. Rev. Earth Planet. Sci. 35: 313-347
Huang L, Shi X, Wang W, Ryu KH, Schiefelbein J (2017) Diversification of root hair development genes in vascular plants. Plant Physiol. 174: 1697-1712
Huggett RJ (1998) Soil chronosequences, soil development, and soil evolution: a critical review. CATENA 32: 155-172
I
Iijima K, Lam T, Stone BA (1990) Phenolic acid bridges between polysaccharides and lignin in wheat internodes. Phytochem. 29: 733-737
Iijima M, Higuchi T, Barlow PW (2004) Contribution of root cap mucilage and presence of an intact root cap in maize (Zea mays) to the reduction of soil mechanical impedance. Ann. Bot. 94: 473-477
Iijima M, Sako Y, Rao TP (2002) A new approach for the quantification of root-cap mucilage exudation in the soil. Develop. Plant & Soil Sci. 101: 399-407
Ishii T, Matsunaga T, Pellerin P, O’Neill MA, Darvill A, Albersheim P (1999) The plant cell wall polysaccharide rhamnogalacturonan II self-assembles into a covalently cross-linked dimer. J. Biol. Chem. 274: 13098-13104
Ishii T (1997) Structure and functions of feruloylated polysaccharides. Plant Sci. 127: 111-127
J
Ji B, Zhao Y, Mu X, Li C (2013) Effects of tillage on soil properties and root growth of maize in loam and clay in central China. Plant Soil Environ. 59: 295-302
Jones VAS, Dolan I (2012) The evolution of root hairs and rhizoids. Ann. Bot. 2: 205-212
Jones KM, Kobayashi J, Davies BW, Taga ME, Walker GC (2007) How rhizobial symbionts invade plants: the sinorhizobium-medicago model. Nature Rev. Microbiol. 8: 619-633
Jones DL, Nguyen C, Finlay RD (2009) Carbon flow in the rhizosphere: carbon trading at the soil–root interface. Plant & Soil 321: 5-33
Jones EJ, Ravskvo S, Jakobsen I (2000) Arbuscular mycorrhizal phosphate transport under monoxenic conditions using radio-labelled inorganic and organic phosphate. Biotech. Letters 22: 1705-1708
Jones L, Seymour GB, Knox JP (1997) Localisation of pectin galactan in tomato cell walls using a monoclonal antibody specific to (1-4)-β-D-galactan. Plant Physiol. 113: 1405-1412
K
Keegstra K (2010) Plant cell walls. Plant Physiol. 154: 483-486
Kenrick P, Crane PR (1997) The origin and early evolution of plants on land. Nature 389: 33-39
Kibblewhite MG, Ritz K, Swift MJ (2008) Soil health in agricultural systems. Phil. Trans. Royal Soc. 363: 685-701
Kieliczewski MJ (2001) The latest hype on hypo-o-glycosylation codes. Phytochem. 57: 319-323
Kiemle SN, Zhang X, Esker AR, Toriz G, Gatenholm P, Cosgrove DJ (2014) Role of (1,3)(1,4)-β-glucan in cell walls: interaction with cellulose. Biomacromolecules 15: 1727-1736
Klute A (1982) Tillage effects on the hydraulic properties of soil: a review. American Society of Agronomy Publication: Madison. pp. 247
Knee EM, Gong F, Gao M, Teplitski M, Jones AR, Foxworthly A, Mort AJ, Bauer WD (2001) Root mucilage from pea and its utilisation by rhizosphere bacteria as a sole carbon source. Amer. Phytopathol. Soc. 6: 775-784
Knox JP (2008) Revealing the structural and functional diversity of plant cell walls. Curr. Opin. Plant Biol. 11: 308-313
Knox JP, Roberts K (1989) Carbohydrate antigens and lectin receptors of the plasma membrane of carrot cells. Protoplasma 152: 123-129
Knox JP, Day S, Roberts K (1989) A set of cell surface glycoproteins forms a marker of cell position, but not cell type, in the root apical meristem of Daucus carota L. Development 106: 47-56
Knox JP, Linstead PJ, Peart J, Cooper C, Roberts K (1991). Developmentally-regulated epitopes of cell surface arabinogalactan-proteins and their relation to root tissue pattern formation. Plant J. 1: 317-326
Kobayashi M, Matoh T, Azuma J (1996) Two chains of rhamnogalacturonan II are cross-linked by borate-diol ester bonds in higher plant cell walls. Plant Physiol. 110: 1017-1020
Konno H, Yamaski Y, Katoh K (1987) Fractionation and Partial Characterization of Pectic Polysaccharides in Cell Walls from Liverwort (Marchantia polymorpha) Cell Cultures. J. Exp. Bot. 38: 711-722
Konrat MR, Renner M, Söderström l, Hagborg A, Mutke J (2008) Early land plants today: liverwort species diversity and the relationship with higher taxonomy and higher plants. Field Museum of Natural History: Chicago. pp. 548
Kumar A, Azan-Ali SN, Snape JW, Weightman R, Foulkes MJ (2011) Relationships between carbon-isotope discrimination and grain yield in wheat under well-watered and drought conditions. J. Agric. Sci. 149: 257-272
L
Lal R (1997) Degradation and resilience of soils. Biochem. Soc. Trans. 352: 997-1010
Lee KJD, Marcus SE, Knox JP (2011) Cell wall biology: perspectives from cell wall imaging. Mol. Plant 4: 212-219
Lee KJD, Cornuault V, Manfield IW, Ralet M, Knox JP (2013) Multi-scale spatial heterogeneity of pectic rhamnogalacturonan I (RG–I) structural features in tobacco seed endosperm cell walls. Plant J. 75: 1018-1027
Lehmann J, Kleber M (2015) The contentious nature of soil organic matter. Nature 528: 60-68
Liang Y, Falk A, Kieliszewski M, Tan L, Xu W, Showalter AM (2010) Identification and characterisation of in vitro galactosyltransferase activities involved in arabinogalactan-protein glycosylation in tobacco and Arabidopsis. Plant Physiol. 154: 632-642
Ligrone R, Duckett JG, Renzaglia KS (2012) Major transitions in the evolution of early land plants: a bryological perspective. Ann. Bot. 109: 851-871
Lindberg B (1972) Methylation analysis of polysaccharides; complex carbohydrates part b. Methods Enzymol. 28: 178-195
Lisec J, Schauer N, Kopka J, Willmitzer L, Fernie AR (2006) Gas chromatography mass spectrometry-based metabolite profiling in plants. Nat. Protoc. 1: 387-96
López-Gutiérrez JC, Philippot I, Martin-Laurent F (2005) Impact of maize mucilage on atrazine mineralisation and atzc abundance. Pest Manage. Sci. 61: 838-844
M
Marcus SE, Blake WA, Benians TA, Lee KJD, Poyser C, Donaldson I, Leroux O, Rogowski A., Petersen HL, Boraston A, Gilbert HJ, Willats WGT, Knox JP (2010) Restricted access of proteins to mannan polysaccharides in intact plant cell walls. Plant J. 64:191-203
Marcus SE, Verhertbruggen Y, Harve C, Ordaz-Ortiz JJ, Farkas V, Pederson HL, Willats WGT, Knox JP (2008) Pectic homogalacturonan masks abundant sets of xyloglucan epitopes in plant cell walls. BMC Plant Biol. 8: 60-68.
Marschner H, Römheld V, Horst WJ, Martin P (1986) Root-induced changes in the rhizosphere: importance for the mineral nutrition of plants. Zpflanz Bodlenkunde 149: 441-456
Mary B, Fresneau C, Morel JL, Mariotti A (1993) C and N cycling during decomposition of root mucilage, roots and glucose in soil. Soil Biol. & Biochem. 25: 1005-1014
Masuko T, Minami A, Iwasaki N, Majima T, Nishumura S, Lee YC (2005) Carbohydrate analysis by a phenol–sulphuric acid method in microplate format. Ann. Biochem. 339 (69-72)
McCartney L, Blake AW, Flint J, Bolam DN, Boraston AB, Gilbert HJ, Knox JP (2006) Differential recognition of plant cell walls by microbial xylan-specific carbohydrate-binding modules. Proc. Nat. Acad. Sci. USA 103: 4765-4770
McCartney L, Marcus SE, Knox JP (2005) Monoclonal antibodies to plant cell wall xylans and arabinoxylans. J. Histochem. & Cytochem. 53: 543-6
McCully ME (1999) Roots in soil: unearthing the complexities of roots and their rhizospheres. Annu. Rev. Plant Physiol. & Plant Mol. Biol. 50: 695-718
McCully ME, Sealey IJ (1996) The expansion of maize root-cap mucilage during hydration. 2. Observations on soil-grown roots by cryo-scanning electron microscopy. Physiol. Plant. 97: 454-462
McNear DH (2013) The rhizosphere - roots, soil and everything in between. Nature Edu. 4: 1
Medzhitov R, Janeway CA (1997) Innate immunity: impact on the adaptive immune response. Curr. Opin. Immunol. 9: 4-9
Meikle PJ, Bonig I, Hoogenraad NJ, Clarke AE, Stone BA (1991) The location of (1-3)-β-glucans in the walls of pollen tubes of Nicotiana alata using a (1-3)-β-glucan-specific monoclonal antibody. Planta 185: 1-8
Meikle PJ, Hoogenraad NJ, Bonig I, Clarke AE, Stone BA (1994) A (1-3,1-4)-beta-glucan-specific monoclonal antibody and its use in the quantitation and immunocytochemical location of (1-3,1-4)-beta-glucans. Plant J. 51: 1-9
Micallef SA, Shiaris MP, Colón-Carmona A (2009) Influence of Arabidopsis thaliana accessions on rhizobacterial communities and natural variation in root exudates. J. Exp. Bot. 60: 1729-1742
Miki NK, Clarke KJ, McCully ME (1980) A histological and histochemical comparison of the mucilages on the root tips of several grasses. Can. J. Bot. 58: 2581-2593
Millar I, Randy M (1989) Defective secretion of mucilage is the cellular basis for agravitropism in primary roots of Zea mays cv. Ageotropic. Ann. Bot. 113: 169-178
Mitchell RA, Duckett JG, Pressel S, Mavris C, Sykes D, Najorka J, Edgecombe GD, kenrick P (2016). Mineral weathering and soil development in the earliest land plant ecosystems. Geology 44: 1007-1010
Miyasaka SC, Hawes MC (2001) Possible role of root border cells in detection and avoidance of aluminium toxicity. Plant Physiol. 125: 1978-1987
Mizuta K, Taguchi S, Sato S (2015) Soil aggregate formation and stability induced by starch and cellulose. Soil Biol. & Biochem. 87: 90-96
Mohnen D (2008) Pectin structure and biosynthesis. Curr. Opin. Plant Biol. 11: 266-277
Moller I, Marcus SE, Haeger A, Verhertbruggen Y, Verhoef R, Schols H, Ulvskov P, Mikkelsen JD, Knox JP, Willats WGT (2008) High-throughput screening of monoclonal antibodies against plant cell wall glycans by hierarchical clustering of their carbohydrate microarray binding profiles. Glycoconj. J. 25: 37-48
Moody SF, Clarke AE, Bacic A (1988) Structural analysis of secreted slime from wheat and cowpea roots. Phytochem. 27: 2857-2861
Morel JL, Andreux F, Habib I, Guckert A (1987) Comparison of the adsorption of maize root mucilage and polygalacturonic acid on montmorillonite homoionic to divalent lead and cadmium. Biol. & Fertil. Soils 5: 13-17
Morel JL, Habib I, Plantureux S, Guckert A (1991) Influence of maize root mucilage on soil aggregate stability. Plant & Soil 136: 111-119
Morel JL, Mench M, Guckert A (1986) Measurement of Pb2+, Cu2+ and Cd2+ binding with mucilage exudates from maize (Zea mays L.) roots. Biol. Fertil. Soils 2: 29-34
Mounier E, Hallet S, Cheneby D, Benizri E, Gruet Y, Nguyen C, Piutti S, Robin C, Slezack-deschaumes S, Martin-laurent F, Germon JC, Philippot I (2004) Influence of maize mucilage on the diversity and activity of the denitrifying community. Environ. Microbiol. 6: 301-312
Mravec J, Guo X, Hansen AR, Schuckel J, Kracun SK, Mikkelsen MD, Mouille G, Johansen IE, Ulvskov P, Domozych DS, Willats WGT (2017) Pea border maturation and release involve complex cell wall structural dynamics. Plant Physiol. 174: 1051-1066
N
Narasimhan K, Basheer C, Bajic VB, Swarup S (2003). Enhancement of plant-microbe interactions using a rhizosphere metabolomics-driven approach and its application in the removal of polychlorinated biphenyls. Plant Physiol. 132: 146-53
Neumann G, Romheld V (2001) The release of root exudates as affected by the plant's physiological status. Dekker: New York. pp. 72
Metha NC, Streuli H, Mϋller M, Deuel H (1960) Role of polysaccharides in soil aggregation. J. Sci. Food Agric. 11: 40-47
Newman EI (1985) The rhizosphere: carbon sources and microbial populations. Ecological interactions in soil. Blackwell Scientific Publications: Oxford. pp. 121
Nishitani K, Nevins DJ (1989) Enzymatic analysis of feruloylated arabinoxylans (feraxan) derived from Zea mays cell walls III. Structural changes in the feraxan during coleoptile elongation. Plant Physiol. 91: 242-248
Northcote DH, Pickett-Heaps JD (1966) A function of the Golgi apparatus in polysaccharide synthesis and transport in the root-cap cells of wheat. Biochemical J. 98: 159-167
O
Oades JM (1978) Mucilages at the root surface. J Soil Sci. 29: 1-16
Oades JM (1984) Soil organic matter and structural stability: mechanisms and implications for management. Plant & Soil 76: 319-337
Oades JM (1993) The role of biology in the formation, stabilisation and degradation of soil structure. Geoderma 56: 377-400
Olness AE, Clapp CE (1973) Occurrence of collapsed and expanded crystals in montmorillonite-dextran complexes. Clays & Clay Minerals 21: 289-293
Olsson R, Giesler R, Persson P (2011) Adsorption mechanisms of glucose in aqueous goethite suspensions. J. Colloid & Interface Sci. 35: 263-268
Ordaz-Ortiz JJ, Marcus SE, Knox JP (2009). Cell wall microstructure analysis implicates hemicellulose polysaccharides in cell adhesion in tomato fruit pericarp parenchyma. Mol. Plant 2: 910-921
Osborn HMI, Lochey l, Mosley L, Read D (1999) Analysis of polysaccharides and monosaccharides in the root mucilage of maize (Zea mays L.) By gas chromatography. J. Chromatogr. 831: 267-276
P
Pattathil S, Avci U, Baldwin D, Swennes AG, McGill JA, Popper Z, Bootten T, Albert A, Davis RH, Chennareddy C, Dong R, O'shea B, Rossi R, Leoff C, Freshour G, Narra R, O'Neil M, York WS, Hahn MG (2010) A comprehensive toolkit of plant cell wall glycan-directed monoclonal antibodies. Plant Physiol. 153: 514-525
Pattathil S, Avci U, Miller JS, Hahn MG (2012) Immunological approaches to plant cell wall and biomass characterisation: Glycome profiling. Springer Science and Business Media: New York. pp. 292
Pedersen HL, Fangel JU, McCleary B, Ruzanski C, Rydahl MG, Ralet MC, Farkas V, von Schantz L, Marcus SE, Andersen MC, Field R, Ohlin M, Knox JP, Clausen MH, Willats WGT (2012) Versatile high resolution oligosaccharide microarrays for plant glycobiology and cell wall research. J. Biol. Chem. 287: 39429-3938
Peleg-Grossman S, Volpin H, Levine A (2007) Root hair curling and rhizobium infection in Medicago truncatula are mediated by phosphatidylinositide-regulated endocytosis and reactive oxygen species. J. Exp. Bot. 58: 1637-1649
Peña MJ, Darvill AG, Eberhard S, York WS, O'Neill MA (2008) Moss and liverwort xyloglucans contain galacturonic acid and are structurally distinct from the xyloglucans synthesized by hornworts and vascular plants. Glycobiol. 18: 891-904
Peña MJ, Kong Y, York SW, O'Neill MA (2012a) A galacturonic acid-containing xyloglucan is involved in Arabidopsis root hair tip growth. Plant Cell 24: 4511-24
Peña MJ, Tuomivaara ST, Urbanowicz BR, O’Neill MA, York WS (2012b) Methods for structural characterization of the products of cellulose- and xyloglucan-hydrolyzing enzymes. Methods Enzymol. 510: 121-139
Pennell R, Knox JP, Scofield GN, Selvendran RR, Roberts K (1989) A family of abundant plasma membrane-associated glycoproteins related to the arabinogalactan proteins is unique to flowering plants. J. Cell Biol. 108: 1967-1977
Pettolino F, Sasaki I, Turbic A, Wilson SM, Bacic A, Hrmova M, Fincher GB (2009) Hyphal cell walls from the plant pathogen Rhynchosporium secalis contain (1,3/1,6)-beta-D-glucans, galacto- and rhamnomannans, (1,3;1,4)-beta-D-glucans and chitin. FEBS J. 14: 3698-3709
Pettolino FA, Walsh, CG, Fincher B, Bacic A (2012) Determining the polysaccharide composition of plant cell walls. Nat. Protoc. 7: 1590-1607.
Pfannkoch E, Lu KC, Regnier FE, Barth HG (1980) Characterisation of some commercial high performance size-exclusion chromatography columns for water-soluble polymers J. Chromatogr. Sci. 18: 430-441
Popper ZA, Fry SC (2003) Primary cell wall composition of bryophytes and charophytes. Ann. Bot. 91: 1-12
Popper ZA, Fry SC (2008) XyG-pectin linkages are formed intra-protoplasmic ally, contribute to wall-assembly, and remain stable in the cell wall. Planta 227: 781-794
Popper ZA, Michel G, Hervé C, Domozych DS, Willats WGT, Tuohy MG, Kloareg B, Stengel DB (2011) Evolution and Diversity of Plant Cell Walls: From Algae to Flowering Plants. Annu. Rev. Plant Biol. 62: 567-590
Pose S, Kirby AR, Paniagua C, Waldron KW, Morris VJ, Quesada, Mercado JA (2015) The nanostructural characterisation of strawberry pectins in pectate lyase or polygalacturonase silenced fruits elucidates their role in softening. Carbohydr. Polym. 132: 134-145
Prosser JL (2015) Dispersing misconceptions and identifying opportunities for the use of 'omics' in soil microbial ecology. Nature Rev. Microbiol. 13: 439-446
R
Ralet M, Crepeau M, Lefebvre J, Mouille G, Hofte H, Thibault J (2008) Reduced number of homogalacturonan domains in pectins of an arabidopsis mutant enhances the flexibility of the polymer. Biomacromolecules 9:1454-1460
Rasse D, Rumpel C, Dignac M (2005). Is soil carbon mostly root carbon? Mechanisms for a specific stabilisation. Plant & Soil 269: 341-356
Ray TC, Callow JA, Kennedy JF (1988). Composition of root mucilage polysaccharides from Lepidium sativum. J. Exp. Bot. 39: 1249-1261
Read DB, Gregory JP (1997). Surface tension and viscosity of axenic maize and lupin root mucilages. New Phytol. 137: 623-628
Reid JB, Goss MJ (1981) Effect of living roots of different plant species on the aggregate stability of two arable soils. J. Soil Sci. 32: 521-541
Reid JB, Goss MJ, Robertson PD (1982) Relationship between the decreases in soil stability effected by growth of maize roots and changes in organically bound iron and aluminium. J. Soil Sci. 33: 397-410
Reiter WD (2002) Biosynthesis and properties of the plant cell wall. Curr. Opin. Plant Biol. 5: 536-542
Rejon-Palomares A, Garcia-Garrido JA, Ocampo J, Garcia-Romera I (1996). Presence of xyloglucan-hydrolysing glucanases (xyloglucanases) in arbuscular mycorrhizal symbiosis. Symbiosis 21: 249-26
Renard MCGC, Weightman RM, Thibault JF (1997) The xylose-rich pectins from pea hulls. Inter J. Bot. Macromol. 21: 155-162
Pereira RI, Costa M, Coimbra S (2013) Localisation of arabinogalactan protein 6 fused with sirus ultramarine florescent protein in Arabidopsis pollen and pollen tubes. Plant Signal. Behav. 8: 1-3
Rillig MC, Muller LAH, Lehmann A (2017) Soil aggregates as massively concurrent evolutionary incubators. ISME J. 11: 1943-1948
Rillig MC, Aguilar-Trigueros CA, Bergmann J, Verbruggen E, Veresoglou SD, Lehmann A (2015) Plant root and mycorrhizal fungal traits for understanding soil aggregation. New Phytol. 205: 1385-1388
Rillig MC (2004) Arbuscular mycorrhizae, glomalin, and soil aggregation. Can. J. Soil Sci. 84: 355-368
Rimmington WR, Pressel S, Field Kj, Strullu-Derrien C, Duckett JG, Bidartondo MI (2016). Reappraising the origin of mycorrhizas. Molecular Mycorrhizal Symbiosis. Wiley: London. pp. 576
Rippka R, Deruelles J, Waterbury JB (1979) Generic assignments, strain histories and properties of pure cultures of cyanobacteria. J. Gen. Microbiol. 111: 1-61
Roach MJ, Mokshina NY, Badhan A, Snegireva AV, Hobson N, Deyholos MK, Gorshkova TA (2011) Development of cellulosic secondary walls in flax fibers requires β-galactosidase. Plant Physiol. 156: 1351-1363
Ruprecht C, Bartetzko MP, Senf D, Dallabernardina P, Boos I, Anderson MCF, Kotake T, Knox JP, Hahn MG, Clausen MH, Pfrengle F (2017) A synthetic glycan microarray enables epitope mapping of plant cell wall glycan-directed antibodies. Plant Physol. 175: 737-756
Ryden P, Selvendran RR (1990) Cell-wall polysaccharides and glycoproteins of parenchymatous tissues of runner bean (Phaseolus coccineus). Biochem. J. 269: 393-402
S
Scheller HV, Ulvskov P (2010) Hemicelluloses. Annu. Rev. Plant Biol. 61: 263-289
Schwartz F (1883) Die wurzelhaare der pflanzen. Untersuchugen des Botanischen Instituts Tubigen 1: 135-188
Sealey LJ, McCully ME, Canny MJ (1995) The expansion of maize root-cap mucilage during hydration. 1. Kinetics. Physiol. Plant. 93: 38-46
Semchenko M, Saar S, Lepik A (2014) Plant root exudate mediate neighbour recognition and trigger complex behavioural changes. New Phytol. 204: 631-637
Showalter AM (2001) Arabinogalactan-proteins: structure, expression and function. Cellular & Mol. Life Sci. 58(10): 1399-1417
Simmons TC, Mortimer JC, Bernardinelli OD, Pöppler A, Brown ST, de Azevedo ER, Dupree R, Dupree P (2016) Folding of xylan onto cellulose fibrils in plant cell walls revealed by solid-state NMR. Nat. Commun. 7: 13902
Sims IM, Middleton K, Lane AG, Cairns AJ, Bacic A (2000) Characterisation of extracellular polysaccharides from suspension cultures of members of the Poaceae. Planta 210: 261-268
Six J, Elliot ET, Paustian K (1999) Aggregate and soil organic matter dynamics under conventional and no-tillage systems. Soil. Sci. Soc. Amer. 63: 1350–1358
Smallwood M, Beven A, Donovan N, Neill SJ, Peart J, Roberts K, Knox JP (1994) Localisation of cell wall proteins in relation to the developmental anatomy of the carrot root apex. Plant J. 5: 237-246
Smallwood M, Martin H, Knox JP (1995) An epitope of rice threonine- and hydroxyproline-rich glycoprotein is common to cell wall and hydrophobic plasma membrane glycoproteins. Planta 196: 510-522
Smallwood M, Yates EA, Willats WGT, Martin H, knox JP (1996) Immunochemical comparison of membrane-associated and secreted arabinogalactan-proteins in rice and carrot. Planta 198: 452-459
Somerville C, Bauer S, Brininstool G, Facette M, Hamann T, Milne J, Osborne E, Paredez A, Persson S, Raab T, Vorwerk S, Youngs H (2004) Toward a systems approach to understanding plant cell walls. Science 306: 2206
Somerville C (2006) Cellulose synthesis in higher plants. Annu. Rev. Cell Develop. Biol. 22: 53-78
Sorensen I, Domozych D, Willats WGT (2010). How have plant cell walls evolved? Plant Physiol. 153: 366-372
Spohn M, Giani I (2010) Water-stable aggregates, glomalin-related soil protein, and carbohydrates in a chronosequence of sandy hydromorphic soils. Soil Biol. & Biochem. 42: 1505-1511
Stacey NJ, Roberts K, Knox JP (1990) Patterns of expression of the JIM4 arabinogalactan protein epitope in cell cultures and during somatic embryogenesis in Daucus carota L. Planta 180: 285-292
Stephenson MB, Hawes MC (1994) Correlation of pectin methylesterase activity in root caps of pea with root border cell separation. Plant Physiol. 106: 739-745
Stumpf L, Pauletto EA, Pinto LFS (2016) Soil aggregation and root growth of perennial grasses in a constructed clay minesoil. Soil & Tillage Res. 161: 71-78
Sun R, Belcher RW, Lliang J, Wang L, Thater B, Crowley DE, Wei G (2015) Effects of cowpea (Vigna unguiculata) root mucilage on microbial community response and capacity for phenanthrene remediation. J. Environ. Sci. 33: 45-59
Synek I, Sekeres J, Zarsky V (2014) The exocyst at the interface between cytoskeleton and membranes in eukaryotic cells. Front. Plant Sci. 4: 543
T
Tan I, Eberhard S, Pattathil S. Warder C, Glushka J, Yuan C, Hao Z, Zhu X, Avci U, Miller JS, Baldwin D, Pham C, Orlando R, Darvill A, Hahn MG, Kieliszewski MJ, Mohnen D (2013) An Arabidopsis cell wall proteoglycan consists of pectin and arabinoxylan covalently linked to an arabinogalactan protein. Plant Cell 25: 270-287
Tisdall JM (1994) Possible role of soil microorganism in aggregation in soils. Plant & Soil 159: 115-121
Tisdall JM, Oades JM (1982) Organic matter and water stable aggregates in soils. J. Soil Sci. 3: 141-167
Tracy SR, Black CR, Roberts JA, Dodd IC, Mooney SJ (2015) Using X-ray Computed Tomography to explore the role of abscisic acid in moderating the impact of soil compaction on root system architecture. Environ. Exp. Bot. 110: 11-118
Traore O, Groleau-Renuad V, Plantureux S, Tubeileh A, Boeuf-Tremblay V (2000) Effect of root mucilage and modelled root exudates on soil structure. Soil Sci. 51: 575-581
V
Vaugham D, Malcolm RE (1985) Soil organic matter and biological activity. Kluwer Academic Publishers: London. pp. 469
Verhertbruggen Y, Marcus SE, Haeger A, Ordaz-Ortiz JJ Knox JP (2009a) An extended set of monoclonal antibodies to pectic homogalacturonan. Carbohydr. Res. 344: 1858-1862
Verhertbruggen Y, Marcus SE, Haeger A, Verhoef R, Schols HA, McCleary BV, McKee L, Gilbert HJ, Knox JP (2009b) Developmental complexity of arabinan polysaccharides and their processing in plant cell walls. Plant J. 59: 413-425
Vogel J (2008) Unique aspects of the grass cell wall. Curr. Opin. Plant Biol. 11: 301-307
W
Walker TS, Bais HP, Grotewold E, Vivanco JM (2003) Root exudation and rhizosphere biology. Plant Physiol. 132: 44-51
Walkinshaw CH, Sweet HC, Venketeswaran S, Horne WH (1970) Results of Apollo 11 and 12 quarantine studies on plants. Bioscience 20: 1297-1302
Walkinshaw CH, Johnson PH (1971) Analysis of vegetable seedlings grown in contact with Apollo 14 luna surface fines. HortScience 20: 532-535
Watanabe T, Misawa S, Hiradate S, Mitsuru M (2008) Root mucilage enhances aluminium accumulation in Melastoma malabathricum, an aluminium accumulator. Plant Signal. & Behav. 3: 603-605
Watanabe T, Misawa S, Hiradate S, Osaki M (2000) Characterisation of root mucilage from Melastoma malabathricum, with emphasis on its roles in aluminum accumulation. New Phytol. 179: 581-589
Watt M, McCully ME, Jeffree CE (1993) Plant and bacterial mucilages of the maize rhizosphere: comparison of their soil binding properties and histochemistry in a model system. Plant & Soil 151: 151-165
Willats WGT, McCartney I, Steele-King CE, Marcus SE, Mort A, Huisman M, van Alebeek GJ, Schols HA, Voragen AG, Le goff A, Bonnin E, Thibault JF, Knox JP (2004) A xylogalacturonan epitope is specifically associated with plant cell detachment. Planta 218: 673-81
Willats WGT, Orfila C, Limberg G, Buchholt HC, van Alebeek GJ, Voragen AG, Marcus SE, Christensen TM, Mikkelsen JD, Murray BS, Knox JP (2001) Modulation of the degree and pattern of methyl-esterification of pectic homogalacturonan in plant cell walls. Implications for pectin methyl esterase action, matrix properties, and cell adhesion. J. Biol. Chem. 276: 19404-19413
Willats WGT, Steele-King CG, Marcus SE, Knox JP (2002) Antibody Techniques In: molecular plant biology. Oxford University Press: Oxford. pp 291
Willats WGT, Steele-King CG, McCartney L, Orfila C, Marcus SE, Knox JP (2000) Making and using antibody probes to study plant cell walls. Plant Physiol. 38: 27-36
Willats WGT, Marcus SE, Knox JP (1998) Generation of a monoclonal antibody specific to (1→5)-α-l-arabinan. Carbohydrate Res. 308: 149-152
Woodward JR, Fincher GB, Stone BA (1983) Water-soluble (1→3), (1→4)-β-D-glucans from barley (Hordeum vulgare) endosperm. II. fine structure. Carbohydr. Polym. 3: 207-225
Y
Yates EA, Valdor J, Haslam SM, Morris HR, Dell A, Mackie W, Knox JP (1996) Characterisation of carbohydrate structural features recognised by anti-arabinogalactan-protein monoclonal antibodies. Glycobiol. 6: 131-139
York WS, Darvill AG, McNeil M, Stevenson TT, Albersheim P (1985). Isolation and characterisation of plant cell walls and cell-wall components. Methods Enzymol. 118: 3-40
York WS, Kolli KVS, Orlando R, Albersheim P, Darvill AG (1996) The structures of arabinoxyloglucans produced by solanaceous plants. Carbohydr. Res. 14: 99-128
Z
Zandleven J, Sorensen SO, Harholt J, Beldman G, Schols HA, Scheller HV, Voragen AJ (2007) Xylogalacturonan exists in cell walls from various tissues of Arabidopsis thaliana. Phytochem. 68: 1219-1226
Zhang T, Vavylonis D, Durachko DM, Cosgrove DJ (2017) Nanoscale movements of cellulose microfibrils in primary cell walls. Nat. Plants 3: 1-6
Zheng J, Scutton JC, Yu H (2000) Interactions among Pythium aphanidermatum, roots, root mucilage, and microbial agents in hydroponic cucumbers. Can. J. Soil. Sci. 22: 368-379