Agriculture Reference
In-Depth Information
signals from the fl oral pathway integrator FT at the shoot
apex. Science 309:1052-1056.
Adam, H., F. Ouellet, N.A. Kane, Z. Agharbaoui, G. Major,
Y. Tominaga, and F. Sarhan. 2007. Overexpression of
TaVRN-1 in Arabidopsis promotes early fl owering and
alters development. Plant Cell Physiol. 48:1192-1206.
Amasino, R. 2004. Vernalization, competence, and the epi-
genetic memory of winter. Plant Cell 16:2553-2559.
Amasino, R.M. 2005. Vernalization and fl owering time. Curr.
Opin. Biotechnol. 16:154-158.
Baloch, D.M., R.S. Karow, E. Marx, J.G. Kling, and M.D.
Witt. 2003. Vernalization studies with Pacifi c Northwest
wheat. Agron. J. 95:1201-1208.
Baurle, I., and C. Dean. 2006. The timing of developmental
transitions in plants. Cell 125:655-664.
Beales, J., A. Turner, S. Griffi ths, J. Snape, and D. Laurie.
2007. A pseudo-response regulator is misexpressed in the
photoperiod insensitive Ppd-D1a mutant of wheat ( Triti-
cum aestivum L.). Theor. Appl. Genet. 115:721-733.
Berry, G.J., P.A. Salisbury, and G.M. Halloran. 1980.
Expression of vernalization genes in near-isogenic wheat
lines: Duration of vernalization period. Ann. Bot.
46:235-241.
Bonnin, I., M. Rousset, D. Madur, P. Sourdille, C. Dupuits,
D. Brunel, and I. Goldringer. 2008. FT genome A and D
polymorphisms are associated with the variation of earli-
ness components in hexaploid wheat. Theor. Appl. Genet.
116:383-394.
Bullrich, L., M.L. Appendino, G. Tranquilli, S. Lewis, and
J. Dubcovsky. 2002. Mapping of a thermo-sensitive earli-
ness per se gene on Triticum monococcum chromosome 1A m .
Theor. Appl. Genet. 105:585-593.
Chailakhyan, M.K. 1936. New facts in support of the hor-
monal theory of plant development. C. R. Acad. Sci.
URSS 13:79-83.
Chouard, P. 1960. Vernalization and its relation to dormancy.
Annu. Rev. Plant Physiol. 11:191-238.
Cockram, J., H. Jones, F.J. Leigh, D. O'Sullivan, W. Powell,
D.A. Laurie, and A.J. Greenland. 2007. Control of
fl owering time in temperate cereals: Genes, domestica-
tion, and sustainable productivity. J. Exp. Bot. 58:1231-
1244.
Corbesier, L., and G. Coupland. 2006. The quest for fl origen:
A review of recent progress. J. Exp. Bot. 57:3395-3403.
Crofts, H.J. 1989. On defi ning a winter wheat. Euphytica
44:225-234.
Danyluk, J., N.A. Kane, G. Breton, A.E. Limin, D.B. Fowler,
and F. Sarhan. 2003. TaVRT-1, a putative transcription
factor associated with vegetative to reproductive transition
in cereals. Plant Physiol. 132:1849-1860.
Decousset, L., S. Griffi ths, R.P. Dunford, N. Pratchett, and
D.A. Laurie. 2000. Development of STS markers closely
linked to the Ppd-H1 photoperiod response gene of
barley ( Hordeum vulgare L.). Theor. Appl. Genet.
101:1202-1206.
Dubcovsky, J., and J. Dvorak. 2007. Genome plasticity a key
factor in the success of polyploid wheat under domestica-
tion. Science 316:1862-1866.
Dubcovsky, J., D. Lijavetzky, L. Appendino, and G.
Tranquilli. 1998. Comparative RFLP mapping of Triticum
monococcum genes controlling vernalization requirement.
Theor. Appl. Genet. 97:968-975.
Dubcovsky, J., A. Loukoianov, D. Fu, M. Valarik, A.
Sanchez, and L. Yan. 2006. Effect of photoperiod on the
regulation of wheat vernalization genes VRN-1 and VRN-
2 . Plant Mol. Biol. 60:469-480.
Edwards, J.T., B.F. Carver, and M.E. Payton. 2007. Rela-
tionship of fi rst hollow stem and heading in winter wheat.
Crop Sci. 47:2074-2077.
Evans, L.T. 1987. Short day induction of infl orescence initia-
tion in some winter wheat varieties. Aust. J. Plant Physiol.
14:277-286.
Flood, R.G., and G.M. Halloran. 1986. Genetics and physi-
ology of vernalization response in wheat. Adv. Agron.
39:87-125.
Fowler, D.B., G. Breton, A.E. Limin, S. Mahfoozi, and F.
Sarhan. 2001. Photoperiod and temperature interactions
regulate low-temperature-induced gene expression in
barley. Plant Physiol. 127:1676-1681.
Fu, D., M. Dunbar, and J. Dubcovsky. 2007. Wheat VIN3-
like PHD fi nger genes are up-regulated by vernalization.
Mol. Genet. Genomics 277:301-313.
Fu, D.L., P. Szucs, L.L. Yan, M. Helguera, J.S. Skinner, J.
von Zitzewitz, P.M. Hayes, and J. Dubcovsky. 2005. Large
deletions within the fi rst intron in VRN-1 are associated
with spring growth habit in barley and wheat. Mol. Genet.
Genomics 273:54-65.
Gassner, G. 1918. Beiträge zur physiologischen Charakteri-
stik sommer- und winter-anneller Gewächse, insbesondere
der Getreidepfl anzen. Z. Bot. 10:419-430.
Gazzani, S., A.R. Gendall, C. Lister, and C. Dean.
2003. Analysis of the molecular basis of fl owering time
variation in Arabidopsis accessions. Plant Physiol.
132:1107-1114.
Goncharov, N.P. 2003. Genetics of growth habit (spring
vs. winter) in common wheat: Confi rmation of the
existence of dominant gene Vrn4 . Theor. Appl. Genet.
107:768-772.
Gonzalez, F.G., G.A. Slafer, and D.J. Miralles. 2002. Vernal-
ization and photoperiod responses in wheat pre-fl owering
reproductive phases. Field Crops Res. 74:183-195.
Gonzalez, F.G., G.A. Slafer, and D.J. Miralles. 2003. Grain
and fl oret number in response to photoperiod during stem
elongation in fully and slightly vernalized wheats. Field
Crops Res. 81:17-27.
Griffi ths, S., R.P. Dunford, G. Coupland, and D.A. Laurie.
2003. The evolution of CONSTANS -like gene families in
barley, rice, and Arabidopsis. Plant Physiol. 131:1855-
1867.
Haun, J.R. 1973. Visual quantifi cation of wheat development.
Agron. J. 65:116-119.
Hay, R.K.M., and R.P. Ellis. 1998. The control of fl owering
in wheat and barley: What recent advances in molecular
genetics can reveal. Ann. Bot. 82:541-554.
Hay, R.K.M., and E.J.M. Kirby. 1991. Convergence and
synchrony: A review of the coordination of development
in wheat. Aust. J. Agric. Res. 42:661-700.
Hayama, R., and G. Coupland. 2004. The molecular basis of
diversity in the photoperiodic fl owering responses of Ara-
bidopsis and rice. Plant Physiol. 135:677-684.
Search WWH ::




Custom Search