Page 186 - Advances in Textile Biotechnology
P. 186
Engineering of plants for improved fi bre qualities 167
martin b, ramiro m, martinez-zapater jm and alonso-blanco c. 2009. A high-
density collection of EMS-induced mutations for TILLING in Landsberg errecta
genetic background of Arabidopsis. BMC Plant Biol. 9: 147.
mcdougall gj, morrison im, stewart d, weyers jdb and hillman jr. 1993. Plant
fibres: botany, chemistry and processing for industrial use. J. Sci. Food. Agric. 62:
1–20.
mellerowicz ej and sundberg b. 2008. Wood cell walls: biosynthesis, developmental
dynamics and their implications for wood properties. Cur. Opin. Plant Biol. 11:
293–300.
mendelsohn m, kough j, vaituzis z and matthews k. 2003. Are Bt crops safe?
Nature Biotech. 21(9): 1003–1009.
mlynarova l, bauer m, nap jp and petrova a. 1994. High effi ciency Agrobacterium-
mediated gene transfer to fl ax. Plant Cell Rep. 13: 282–285.
moose sp and mumm rh. 2008. Molecular plant breeding as the foundation for 21st
century crop improvement. Plant Physiol. 147: 969–977.
morinaka y, sakamoto t, inukai y, agetsuma m, kitano h, ashikari m and matsuoka
m. 2006. Morphological alteration caused by brassinosteroid insensitivity increases
the biomass and grain production or rice. Plant Physiol. 141: 924–931.
muller b, bourdais g, reidy b, bencivenni c, massonneau a, condamine p, rolland
g, conéjéro g, rogowsky p and tardieu f. 2007. Association of specifi c expansins
with growth in maize leaves is maintained under environmental, genetic, and
developmental sources of variation. Plant Physiol. 143: 278–290.
musialak m, wróbel-kwiatkowska m, kulma a, starzycka e and szopa j. 2008.
Improving retting of fibre through genetic modification of flax to express pecti-
nases. Transgen. Res. 17: 133–147.
naqvi s, farré g, sanahuja g, capell t, zhu c and christou p. 2009. When more is
better: multigene engineering in plants. Trends Plant Sci. 15: 48–56.
nida dl, kolacz kh, buehler re, deaton wr, shuler wr, armstrong ta, taylor ml,
ebert cc, rogan gj, padgette sr and fuchs rl. 1996. Glyphosate-tolerant cotton:
Genetic characterization and protein expression. J. Agric. Food Chem. 44: 1960–
1966.
nilsson j, karlberg a, antti h, lopez-vernaza m, mellerowicz e, perrot-
rechenmann c, sandberg g and bhalerao rp. 2008. Dissecting the molecular basis
of the regulation of wood formation by auxin in hybrid aspen. Plant Cell 20:
843–855.
pelloux j, rustérucci c and mellerowicz ej. 2007. New insights into pectin meth-
ylesterase structure and function. Trends Plant Sci. 12(6): 267–277.
peng j, richards de, hartley nm, murphy gp, devos km, fl intham je, beales j, fi sh
lj, worland aj, pelica f, sudhakar d, christou p, snape jw, gale md and harberd
np. 1999. ‘Green revolution’ genes encode mutant gibberellin response modula-
tors. Nature 400: 256–261.
perry t, brachmann a, welham t, binder a, charpentier m, groth m, haage k,
markmann k, wang tl and parniske m. 2009. TILLING in Lotus japonicus iden-
tified large allelic series for symbiosis genes and revealed a bias in functionally
defective ethyl methanesulfonate alleles towards glycine replacements. Plant
Physiol. 151: 1281–1291.
qin ym, hu cy, pang y, kastaniotis aj, hiltunen jk and zhu yx. 2007. Saturated
very-long-chain fatty acids promote cotton fi bre and Arabidospsis cell elongation
by activating ethylene biosynthesis. Plant Cell 19: 3692–3704.
© Woodhead Publishing Limited, 2010