Agriculture Reference
In-Depth Information
Vasil, V., A.M. Castillo, M.E. Fromm, and I.K. Vasil. 1992.
Herbicide resistant fertile transgenic wheat plants obtained
by microprojectile bombardment of regenerable embryo-
genic callus. Bio/Technology 10:667-674.
Vendruscolo, E.C.G., I. Schuster, M. Pileggi, C.A. Scapim,
H.B.C. Molinari, C.J. Marur, and L.G.E. Vieira. 2007.
Stress-induced synthesis of proline confers tolerance to
water defi cit in transgenic wheat. J. Plant Physiol.
164:1367-1376.
Vishnudasan, D., M.N. Tripathi, U. Rao, and P. Khurana.
2005. Assessment of nematode resistance in wheat trans-
genic plants expressing potato proteinase inhibitor ( PIN2 )
gene. Transgenic Res. 14:665-675.
Weeks, J.T., O.D. Anderson, and A.E. Blechl. 1993. Rapid
production of multiple independent lines of fertile trans-
genic
genic wheat produced by Agrobacterium -mediated trans-
formation. Mol. Breed. 18:195-208.
Xia, L., H. Geng, X. Chen, Z. He, M. Lillemo, and C.F.
Morris. 2008. Silencing of puroindoline a alters the
kernel texture in transgenic bread wheat. J. Cereal Sci.
47:331-338.
Xue, Z.Y., D.Y. Zhi, G.P. Xue, H. Zhang, Y.X. Zhao, and
G.M. Xia. 2004. Enhanced salt tolerance of transgenic
wheat ( Tritivum aestivum L.) expressing a vacuolar Na + /H +
antiporter gene with improved grain yields in saline soils
in the fi eld and a reduced level of leaf Na + . Plant Sci.
167:849-859.
Yan, L., D. Fu, C. Li, A. Blechl, G. Tranquilli, M. Bonafede,
A. Sanchez, M. Valarik, S. Yasuda, and J. Dubcovsky.
2006. The wheat and barley vernalization gene VRN3 is
an orthologue of FT . Proc. Natl. Acad. Sci. USA
103:19581-19586.
Yan, L., A. Loukoianov, A. Blechl, G. Tranquilli, W.
Ramakrishna, P. SanMiguel, J.L. Bennetzen, V. Eche-
nique, and J. Dubcovsky. 2004. The wheat VRN2 gene is
a fl owering repressor down-regulated by vernalization.
Science 303:1640-1644.
Yao, Q., L. Cong, J.L. Chang, K.X. Li, G.X. Yang, and G.Y.
He. 2006. Low copy number gene transfer and stable
expression in a commercial wheat cultivar via particle
bombardment. J. Exp. Bot. 57:3737-3746.
Yong, W.-D., Y.-Y. Xu, W.-Z. Xu, X. Wang, N. Li, J.-S.
Wu, T.-B. Liang, K. Chong, Z.-H. Xu, K.-H. Tan, and
Z.-Q. Zhu. 2003. Vernalization-induced fl owering in
wheat is mediated by a lectin-like gene VER2 . Planta
217:261-270.
Yue, S.J., H. Li, Y.W. Li, Y.F. Zhu, J.K. Guo, Y.J. Liu, Y.
Chen, and X. Jia. 2008. Generation of transgenic wheat
lines with altered expression levels of 1Dx5 high-molecular
weight glutenin subunit by RNA interference. J. Cereal
Sci. 47:453-161.
Zaharieva, M., and P. Monneveux. 2006. Spontaneous
hybridization between bread wheat ( Triticum aestivum
L.) and its wild relatives in Europe. Crop Sci.
46:512-527.
Zale, J.M., and C.M. Steber. 2006. In planta transformation
of wheat as a genomics tool. p. 275. In Abstracts, Plant and
Animal Genome Conf. XIV, San Diego, CA. 14-18 Jan.
2006. Scherago International, New York.
Zhang, L.Y., R. French, W.G. Langenberg, and A.
Mitra. 2001. Accumulation of barley stripe mosaic virus
is signifi cantly reduced in transgenic wheat plants
expressing a bacterial ribonuclease. Transgenic Res.
10:13-19.
Zhang, W.G., D. McElroy, and R. Wu. 1991. Analysis of rice
Act1 5' region activity in transgenic rice plants. Plant Cell
3:1155-1165.
Zhang, J.R., Q. Xiao, K.X. Li, M.J. Chen, J.L. Chang, L.T.
Luo, Y Li, Y. Liu, P.R. Shewry, and G.Y. He. 2006. An
optimal pooling strategy applied to high-throughput
screening for rare marker-free transformants. Biotechnol.
Lett. 28:1537-1544.
Zhao, T.J., S.Y. Zhao, H.M. Chen, Q.Z. Zhao, Z.M. Hu,
B.K. Hou, and G.M. Xia. 2006. Transgenic wheat progeny
wheat
( Triticum-aestivum ).
Plant
Physiol.
102:1077-1084.
Weeks, T., K.Y. Koshiyama, U. Maier-Greiner, T.
Schäeffner, and O.D. Anderson. 2000. Wheat transforma-
tion using cyanamide as a new selective agent. Crop Sci.
40:1749-1754.
Wegel, E., R.H. Vallejos, P. Christou, E. Stöger, and P.
Shaw, 2005. Large-scale chromatin decondensation
induced in a developmentally activated transgene locus.
J. Cell Sci. 118:1021-1031.
Weissmann, S., M. Feldman, and J. Gressel. 2005. Sequence
evidence for sporadic intergeneric DNA introgression
from wheat into a wild Aegilops species. Mol. Biol. Evol.
22:2055-2062.
Wiley, P., P. Tosi, A. Evrard, A. Lovegrove, H. Jones, and
P. Shewry. 2007. Promoter analysis and immunolocalisa-
tion show that puroindoline genes are exclusively expressed
in starchy endosperm cells of wheat grain. Plant Mol. Biol.
64:125-136.
Wilkinson, M., J. Lenton, and M. Holdsworth 2005. Tran-
scripts of Vp-1 homoeologues are alternatively spliced
within the Triticeae tribe. Euphytica 143:243-246.
Wilson, W.W., E.L. Janzen, and B.L. Dahl. 2003. Issues in
development and adoption of genetically modifi ed (GM)
wheats [Online]. AgBioForum 6:101-112. Available at
http://www.agbioforum.org/v6n3/index.htm (verifi ed 5
Mar. 2008).
Witrzens, B., R.I.S. Brettell, F.R. Murray, D. McElroy,
Z.Y. Li, and E.S. Dennis. 1998. Comparison of three
selectable marker genes for transformation of wheat by
microprojectile bombardment. Aust. J. Plant Physiol.
25:39-44.
Wright, M., J. Dawson, E. Dunder, J. Suttie, J. Reed, C.
Kramer, Y. Chang, R. Novitzky, H. Wang, and L. Artim-
Moore. 2001. Effi cient biolistic transformation of maize
( Zea mays L.) and wheat ( Triticum aestivum L.) using the
phosphomannose isomerase gene, pmi , as the selectable
marker. Plant Cell Rep. 20:429-436.
Wu, H., C. Sparks, B. Amoah, and H.D. Jones. 2003.
Factors infl uencing successful Agrobacterium -mediated
genetic transformation of wheat. Plant Cell Rep.
21:659-668.
Wu, H., C.A. Sparks, and H.D. Jones. 2006. Characterisation
of T-DNA loci and vector backbone sequences in trans-
Search WWH ::




Custom Search