Agriculture Reference
In-Depth Information
material for transformation. Plant Cell Tissue Organ Cult.
57:153-156.
He, G.Y., H.D. Jones, R. D'Ovidio, S. Masci, M. Chen, J.
West, B. Butow, O.D. Anderson, P. Lazzeri, R. Fido, and
P.R. Shewry. 2005. Expression of an extended HMW
subunit in transgenic wheat and the effect on dough mixing
properties. J. Cereal Sci. 42:225-231.
He, G.Y., and P.A. Lazzeri. 1998. Analysis and optimisation
of DNA delivery into wheat scutellum and tritordeum
infl orescence explants by tissue electroporation. Plant Cell
Rep. 18:64-70.
He, D.G., A. Mouradov, Y.M. Yang, E. Mouradova, and
K.J. Scott. 1994. Transformation of wheat ( Triticum-
aestivum L.) through electroporation of protoplasts. Plant
Cell Rep. 14:192-196.
He, G.Y., L. Rooke, S. Steele, F. Békés, P. Gras, A.S.
Tatham, R. Fido, P. Barcelo, P.R. Shewry, and P.A.
Lazzeri. 1999. Transformation of pasta wheat ( Triticum
turgidum L. var. durum ) with high-molecular-weight glu-
tenin subunit genes and modifi cation of dough functional-
ity. Mol. Breed. 5:377-386.
Hegde, S.G., and J.G. Waines. 2004. Hybridization
and introgression between bread wheat and wild and
weedy relatives in North America. Crop Sci. 44:1145-
1155.
Hesler, L.S., Z. Li, T.M. Cheesbrough, and W.E. Riedell.
2005. Nymphiposition and population growth of Rhoaplo-
siphum padi L. (Homoptera : Aphididae) on conventional
wheat cultivars and transgenic wheat isolines. J. Entomol.
Sci. 40:186-196.
Hogg, A.C., B. Beecher, J.M. Martin, F. Meyer, L. Talbert,
S. Lanning, and M.J. Giroux. 2005. Hard wheat milling
and bread baking traits affected by the seed-specifi c over-
expression of puroindolines. Crop Sci. 45:871-878.
Hogg, A.C., T. Sripo, B. Beecher, J.M. Martin, and M.J.
Giroux. 2004. Wheat puroindolines interact to form
friabilin and control wheat grain hardness. Theor. Appl.
Genet. 108:1089-1097.
Hong, B., R. Barg, and T.-H.D. Ho. 1992. Developmental
and organ-specifi c expression of an ABA- and stress-
induced protein in barley. Plant Mol. Biol. 18:663-
674.
Horváth-Szanics, E., Z. Szabó, T. Janáky, J. Pauk, and
G. Hajás. 2006. Proteomics as an emergent tool for iden-
tifi cation of stress-induced proteins in control and geneti-
cally modifi ed wheat lines. Chromatographia 63:S143-
S147.
Howarth, J.R., J.N. Jacquet, A. Doherty, H.D. Jones, and
M.E. Cannell. 2005. Molecular genetic analysis of silenc-
ing in two lines of Triticum aestivum transformed with
the reporter gene construct pAHC25. Ann. Appl. Biol.
146:311-320.
Howdle, P.D. 2006. Gliadin, glutenin or both? The search
for the Holy Grail in coeliac disease. Eur. J. Gastroenterol.
Hepatol. 18:703-706.
Hu, T., S. Metz, C. Chay, H.P. Zhou, N. Biest, G. Chen,
M. Cheng, X. Feng, M. Radionenko, F. Lu, and J. Fry.
2003. Agrobacterium -mediated large-scale transformation
of wheat ( Triticum aestivum L.) using glyphosate selection.
Plant Cell Rep. 21:1010-1019.
Huang, L., S.A. Brooks, W. Li, J.P. Fellers, H.N. Trick, and
B.S. Gill. 2003. Map-based cloning of leaf rust resistance
gene Lr21 from the large and polyploid genome of bread
wheat. Genetics 164:655-664.
Huber, M., R. Hahn, and D. Hess. 2002. High transforma-
tion frequencies obtained from a commercial wheat ( Triti-
cum aestivum L. cv. 'Combi') by microbombardment of
immature embryos followed by GFP screening combined
with PPT selection. Mol. Breed. 10:19-30.
Iser, M., S. Fettig, F. Scheyhing, K. Viertel, and D. Hess.
1999. Genotype-dependent stable genetic transformation
in German spring wheat varieties selected for high regen-
eration potential. J. Plant Physiol. 154:509-516.
Ivanov, P., Z. Atanassov, V. Milkova, and L. Nikolova. 1998.
Culture selected somaclonal variation in fi ve Triticum
aestivum L. genotypes. Euphytica 104:167-172.
Jackson, S.A., P. Zhang, W.P. Chen, R.L. Phillips, B.
Friebe, S. Muthukrishnan, and B.S. Gill. 2001. High-
resolution structural analysis of biolistic transgene integra-
tion into the genome of wheat. Theor. Appl. Genet.
103:56-62.
Jefferson, R., S. Burgess, and D. Hirsh. 1987. β-Glucuroni-
dase from Escherichia coli as a gene-fusion marker. Proc.
Natl. Acad. Sci. USA 83:8447-8451.
Jiménez-Martínez, E.S., and N.A. Bosque-Pérez. 2004. Vari-
ation in barley yellow dwarf virus transmission effi ciency
by Rhopalosiphum padi (Homoptera: Aphididae) after
acquisition from transgenic and nontransformed wheat
genotypes. J. Econom. Entomol. 97:1790-1796.
Jiménez-Martínez, E.S., N.A. Bosque-Pérez, P.H. Berger,
and R.S. Zemetra. 2004a. Life history of the bird cherry-
oat aphid, Rhopalosiphum padi (Homoptera: Aphididae),
on transgenic and untransformed wheat challenged with
barley yellow dwarf virus. J. Econ. Entomol. 97:203-
212.
Jiménez-Martínez, E.S., N.A. Bosque-Pérez, P.H. Berger,
R.S. Zemetra, H. Ding, and S.D. Eigenbrode. 2004b.
Volatile cues infl uence the response of Rhopalosiphum padi
(Homoptera: Aphididae) to barley yellow dwarf virus-
infected transgenic and untransformed wheat. Environ.
Entomol. 33:1207-1216.
Johnson, D.D., W. Lin, and G. Vocke. 2005. Economic and
welfare impacts of commercializing a herbicide-tolerant,
biotech wheat. Food Policy 30:162-184.
Jones, H.D. 2005. Wheat transformation: Current technology
and applications to grain development and composition.
J. Cereal Sci. 41:137-147.
Jones, H.D., A. Doherty, and H. Wu. 2005. Review of meth-
odologies and a protocol for the Agrobacterium -mediated
transformation of wheat. Plant Methods 1:5.
Jordan, M.C. 2000. Green fl uorescent protein as a visual
marker for wheat transformation. Plant Cell Rep.
19:1069-1075.
Jorgensen, R.A. 1995. Cosupression, fl ower color patterns,
and metastable gene expression states. Science 268:686-
691.
Kan, C.A., and G.F. Hartnell. 2004. Evaluation of broiler
performance when fed Roundup-Ready wheat (Event
MON 71800), control, and commercial wheat varieties.
Poultry Sci. 83:1325-1334.
Search WWH ::




Custom Search