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edwards, m., dea, i. c. m., bulpin, p. v. and reid, j. s. g. 1985. Xyloglucan (amyloid)
mobilization in the cotyledons of Tropaeolum majus L seeds following germina-
tion. Planta 163: 133–140.
edwards, m., dea, i. c. m., bulpin, p. v. and reid, j. s. g. 1986. Purifi cation and
properties of a novel xyloglucan-specifi c endo-(1 → 4)-beta-d-glucanase from
germinated nasturtium seeds (Tropaeolum majus L). J. Biol. Chem. 261: 9489–
9494.
fry, s. c. 1997. Novel ‘dot-blot’ assays for glycosyltransferases and glycosylhydro-
lases: Optimization for xyloglucan endotransglycosylase (XET) activity. Plant J.
11: 1141–1150.
fry, s. c., smith, r. c., renwick, k. f., martin, d. j., hodge, s. k. and matthews, k. j.
1992. Xyloglucan endotransglycosylase, a new wall-loosening enzyme activity
from plants. Biochem. J. 282: 821–828.
gerard, t. 1980. Tamarind gum. In Davidson, R. L., ed., Handbook of water-soluble
gums and resins, McGraw-Hill, New York, pp. 23.1–23.12.
gilbert, h. j., stalbrand, h. and brurner, h. 2008. How the walls come crumbling
down: recent structural biochemistry of plant polysaccharide degradation. Curr.
Opin. Plant Biol. 11: 338–348.
golas, p. l. and matyjaszewski, k. 2007. Click chemistry and ATRP: A benefi cial
union for the preparation of functional materials. QSAR Comb. Sci. 26: 1116–
1134.
greffe, l., bessueille, l., bulone, v. and brumer, h. 2005. Synthesis, preliminary
characterization, and application of novel surfactants from highly branched xylo-
glucan oligosaccharides. Glycobiology 15: 437–445.
gustavsson, m. t., persson, p. v., iversen, t., martinelle, m., hult, k., teeri, t. t. and
brumer, h. 2005. Modification of cellulose fiber surfaces by use of a lipase and a
xyloglucan endotransglycosylase. Biomacromolecules 6: 196–203.
hanus, j. and mazeau, k. 2006. The xyloglucan–cellulose assembly at the atomic
scale. Biopolymers 82: 59–73.
helenius, g., backdahl, h., bodin, a., nannmark, u., gatenholm, p. and risberg, b.
2006. In vivo biocompatibility of bacterial cellulose. J. Biomed. Mater. Res. Part A
76A: 431–438.
henriksson, m., berglund, l. a., isaksson, p., lindstrom, t. and nishino, t. 2008.
Cellulose nanopaper structures of high toughness. Biomacromolecules 9: 1579–
1585.
hoffman, m., jia, z. h., peña, m. j., cash, m., harper, a., blackburn, a. r., darvill, a.
and york, w. s. 2005. Structural analysis of xyloglucans in the primary cell walls
of plants in the subclass Asteridae. Carbohydr. Res. 340: 1826–1840.
ibatullin, f. m., baumann, m. j., greffe, l. and brumer, h. 2008. Kinetic analyses of
retaining endo-(xylo)glucanases from plant and microbial sources using new
chromogenic xylogluco-oligosaccharide aryl glycosides. Biochemistry 47: 7762–
7769.
iwamoto, s., nakagaito, a. n., yano, h. and nogi, m. 2005. Optically transparent
composites reinforced with plant fi ber-based nanofi bers. Appl. Phys. A – Mater.
Sci. Process. 81: 1109–1112.
johansson, p., brumer, h., baumann, m. j., kallas, å. m., henriksson, h., denman, s.
e., teeri, t. t. and jones, t. a. 2004. Crystal structures of a poplar xyloglucan endo-
transglycosylase reveal details of transglycosylation acceptor binding. Plant Cell
16: 874–886.
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