Agriculture Reference
In-Depth Information
Simmonds, J., P. Stewart, and D. Simmonds. 1992.
Regeneration of Triticum-aestivum apical explants after
microinjection of germ line progenitor cells with DNA.
Physiol. Plant. 85:197-206.
Simons, K.J., J.P. Fellers, H.N. Trick, Z. Zhang, Y.-S. Tai,
B.S. Gill, and J.D. Faris. 2006. Molecular characterization
of the major wheat domestication gene Q . Genetics
172:547-555.
Singh, N., and H.S. Chawla. 1999. Use of silicon carbide
fi bers for Agrobacterium -mediated transformation in wheat.
Curr. Sci. 76:1483-1485.
Sivamani, E., A. Bahieldin, J.M. Wraith, T. Al-Niemi, W.E.
Dyer, T.H.D. Ho, and R. Qu. 2000a. Improved biomass
productivity and water use effi ciency under water defi cit
conditions in transgenic wheat constitutively expressing
the barley HVA1 gene. Plant Sci. 155:1-9.
Sivamani, E., C.W. Brey, W.E. Dyer, L.E. Talbert, and R.
D. Qu. 2000b. Resistance to wheat streak mosaic virus in
transgenic wheat expressing the viral replicase ( NIb ) gene.
Mol. Breed. 6:469-477.
Sivamani, E., C.W. Brey, L.E. Talbert, M.A. Young, W.E.
Dyer, W.K. Kaniewski, and R.D. Qu. 2002. Resistance to
wheat streak mosaic virus in transgenic wheat engineered
with the viral coat protein gene. Transgenic Res.
11:31-41.
Skostad, E. 2004. Monsanto pulls the plug on genetically
modifi ed wheat. Science 304:1088-1089.
Slade, A.J., S.I. Fuerstenberg, D. Loeffl er, M.N. Steine, and
D. Facciotti. 2005. A reverse genetic, nontransgenic
approach to wheat crop improvement by TILLING.
Nature Biotechnol. 23:75-81.
Smidansky, E.D., M. Clancy, F.D. Meyer, S.P. Lanning,
N.K. Blake, L.E. Talbert, and M.J. Giroux. 2002.
Enhanced ADP-glucose pyrophosphorylase activity in
wheat endosperm increases seed yield. Proc. Natl. Acad.
Sci. USA 99:1724-1729.
Smidansky, E.D., F.D. Meyer, B. Blakeslee, T.E. Weglarz,
T.W. Greene, and M.J. Giroux. 2007. Expression of a
modifi ed ADP-glucose pyrophosphorylase large subunit
in wheat seeds stimulates photosynthesis and carbon
metabolism. Planta 225:965-976.
Sorokin, A.P., X.Y. Ke, D.F. Chen, and M.C. Elliott. 2000.
Production of fertile transgenic wheat plants via tissue
electroporation. Plant Sci. 156:227-233.
Sparks, C.A., C.K. Castleden, J. West, D.Z. Habash, P.J.
Madgwick, M.J. Paul, G. Noctor, J. Harrison, R. Wu, J.
Wilkinson, W.P. Quick, M.A.J. Parry, C.H. Foyer, and
B.J. Mifl in. 2001. Potential for manipulating carbon
metabolism in wheat. Ann. Appl. Biol. 138:33-45.
Srivastava, V., O.D. Anderson, and D.W. Ow. 1999. Single-
copy transgenic wheat generated through the resolution of
complex integration patterns. Proc. Natl. Acad. Sci. USA
96:11117-11121.
Srivastava, V., V. Vasil, and I.K. Vasil. 1996. Molecular
characterization of the fate of transgenes in transformed
wheat ( Triticum aestivum L). Theor. Appl. Genet.
92:1031-1037.
Sticklen, M.B., and H.F. Oraby. 2005. Shoot apical meri-
stem: A sustainable explant for genetic transformation of
cereal crops. In Vitro Cell. Dev. Biol. Plant 41:187-200.
Stöger, E., C. Vaquero, E. Torres, M. Sack, L. Nicholson, J.
Drossard, S. Williams, D. Keen, Y. Perrin, P. Christou,
and R. Fischer. 2000. Cereal crops as viable production
and storage systems for pharmaceutical scFv antibodies.
Plant Mol. Biol. 42:583-590.
Stoger, E., S. Williams, P. Christou, R.E. Down, and J.A.
Gatehouse. 1999a. Expression of the insecticidal lectin
from snowdrop ( Galanthus nivalis agglutinin; GNA) in
transgenic wheat plants: Effects on predation by the grain
aphid Sitobion avenae . Mol. Breed. 5:65-73.
Stoger, E., S. Williams, D. Keen, and P. Christou. 1998.
Molecular characteristics of transgenic wheat and the
effect on transgene expression. Transgenic Res.
7:463-471.
Stoger, E., S. Williams, D. Keen, and P. Christou. 1999b.
Constitutive versus seed specifi c expression in transgenic
wheat: Temporal and spatial control. Transgenic Res.
8:73-82.
Supartana, P., T. Shimizu, M. Nogawa, H. Shioiri, T.
Nakajima, N. Haramoto, M. Nozue, and M. Kojima.
2006. Development of simple and effi cient in planta
transformation method for wheat ( Triticum aestivum L.)
using Agrobacterium tumefaciens . J. Biosci. Bioeng.
102:162-170.
Takumi, S., and T. Shimada. 1997. Variation in transforma-
tion frequencies among six common wheat cultivars
through particle bombardment of scutellar tissues. Genes
Genet. Syst. 72:63-69.
Thompson, C.J., N.R. Movva, R. Tizard, R. Crameri, J.E.
Davies, M. Lauwereys, and J. Botterman. 1987. Charac-
terization of the herbicide-resistance gene bar from Strep-
tomyces hygroscopicus . EMBO J. 6:2519-2523.
Travella, S., T.E. Klimm, and B. Keller. 2006. RNA interfer-
ence-based gene silencing as an effi cient tool for functional
genomics in hexaploid bread wheat. Plant Physiol.
142:6-20.
Uauy, C., A. Distelfeld, T. Fahima, A. Blechl, and J.
Dubcovsky. 2006. A NAC gene regulating senescence
improves grain protein, zinc, and iron content in wheat.
Science 314:1298-1301.
Uthayakumaran, S., O.M. Lukow, M.C. Jordan, and S.
Cloutier. 2003. Development of genetically modifi ed wheat
to assess its dough functional properties. Mol. Breed.
11:249-258.
Uze, M., I. Potrykus, and C. Sautter. 1999. Single-stranded
DNA in the genetic transformation of wheat ( Triticum
aestivum L.): Transformation frequency and integration
pattern. Theor. Appl. Genet. 99:487-495.
Varshney, A., and F. Altpeter. 2001. Stable transformation
and tissue culture response in current European winter
wheats ( Triticum aestivum L.). Mol. Breed. 8:295-309.
Vasil, I.K. 2007. Molecular genetic improvement of cereals:
Transgenic wheat ( Triticum aestivum L.). Plant Cell Rep.
26:1133-1154.
Vasil, I.K., S. Bean, J.M. Zhao, P. McCluskey, G. Lookhart,
H.P. Zhao, F. Altpeter, and V. Vasil. 2001. Evaluation of
baking properties and gluten protein composition of
fi eld grown transgenic wheat lines expressing high
molecular weight glutenin gene 1Ax1. J. Plant Physiol.
158:521-528.
Search WWH ::




Custom Search