Agriculture Reference
In-Depth Information
important genes. It provides a wealth of resources
on marker-assisted selection.
http://www.planttreaty.org/index_en.htm—
International treaty on plant genetic resources
for food and agriculture. It contains a wealth of
information on the ethical and legal exchange of
germplasm.
http://www.upov.int/index_en.html—Main
website for discussion of plant breeders' rights
(intellectual property rights) and the protection of
new varieties, and home page for the Interna-
tional Union for the Protection of New Varieties
of Plants (UPOV).
Baenziger, P.S., D.M. Wesenberg, V.M. Smail, W.L.
Alexander, and G.W. Schaeffer. 1989. Agronomic perfor-
mance of wheat doubled haploid lines derived from cultivars
by anther culture. J. Plant Breed. 103:101-109.
Baker, R.J. 1988. Tests for crossover genotype-environmental
interactions. Can. J. Plant Sci. 68:405-410.
Basford, K.E., and M. Cooper. 1998. Genotype
environ-
ment interactions and some considerations of their impli-
cations for wheat breeding in Australia. Aust. J. Agric. Res.
49:153-174.
Berke, T.G., P.S. Baenziger, and R. Morris. 1992. Location of
wheat quantitative trait loci affecting agronomic perfor-
mance of seven traits using reciprocal chromosome substitu-
tions. Crop Sci. 32:621-627.
Bernardo, R., and J. Yu. 2007. Prospects for genomewide
selection for quantitative traits in maize. Crop Sci.
47:1082-1090.
Bonjeau, A.P., and W.J. Angus (ed.) 2001. The world wheat
topic: A history of wheat breeding. Lavoisier Publishing,
Paris, France.
Borojevic K., and K. Borojevic. 2005. Historic role of
the wheat variety Akakomugi in Southern and Central
European wheat breeding programs. Breed. Sci.
55:253-256.
Bos, I. 1983. The optimum number of replications when
testing lines or families on a fi xed number of plots. Euphyt-
ica 32:311-318.
Bregitzer, P., A.E. Blechl, D. Fiedler, J. Lin, P. Sebesta, J.
Fernandez De Soto, O. Chicaiza, and J. Dubcovsky. 2006.
Changes in high molecular weight glutenin subunit com-
position can be genetically engineered without affecting
wheat agronomic performance. Crop Sci. 46:1553-1563.
Briggs, F.N. 1938. The use of the backcross in crop improve-
ment. Am. Nat. 72:285-292.
Briggs, K.G., and L.H. Shebeski. 1971. Early generation
selection for yield and breadmaking quality of hard red
spring wheat. Euphytica 20:453-463.
Brim, C.A. 1966. A modifi ed pedigree method of selection in
soybeans. Crop Sci. 6:220.
Busch, R.H., J.C. Janke, and R.C. Frohberg. 1974. Evalua-
tion of crosses among high and low yielding parents of
spring wheat (Triticum aestivum L.) and bulk prediction
of line performance. Crop Sci. 14:47-50.
Caligari, P.D., S.W. Powell, and J.L. Jinks. 1985. The use of
doubled haploids in barley breeding: 2. An assessment
of univariate cross prediction methods. Heredity
54:353-358.
Campbell, A.B. 1970. Neepawa hard red spring wheat. Can.
J. Plant Sci. 50:752-753.
Campbell, A.B., R.G. Anderson, G.J. Green, D.J. Sambor-
ski, and K.R. Johnson. 1967. Note on Manitou hard red
spring wheat. Can. J. Plant Sci. 47:330.
Campbell, B.T., P.S. Baenziger, K.M. Eskridge, H. Budak,
N.A. Streck, A. Weiss, K.S. Gill, and M. Erayman. 2004.
Using environmental covariates to explain genotype
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REFERENCES
Acquaah, G. 2007. Principles of plant breeding and genetics.
Blackwell Publishing Ltd., Malden, MA.
Allard, R.W. 1960. Principles of plant breeding. Wiley, New
York, NY.
Ashikari, M., H. Sakakibara, S. Lin, T. Yamamoto, T.
Takashi, A. Nishimura, E.R. Angeles, Q. Qian, H. Kitano,
and M. Matsuoka. 2005. Cytokinin oxidase regulates rice
grain production. Science 309:741-745.
Avivi, L. 1978. High protein concentration in wild tretraploid
Triticum dicoccoides Korn. p. 372-380. In S. Ramanujam
(ed.) Proc. Int. Wheat Genet. Symp., New Delhi, India.
23-28 Feb. 1978. Kapoor Art Press, New Delhi, India.
Baenziger, P.S. 1996. Refl ections on doubled haploids in
plant breeding. p.35-48. In S.M. Jain, S.K. Sopory, and
R.E. Veileux (ed.) In vitro haploid production in higher
plants: Vol. 1. Fundamental aspects and methods. Kluwer
Academic Publishers, Norwell, MA.
Baenziger, P.S. 2006. Plant breeding training in the U.S.
HortScience 41:40-44.
Baenziger, P.S., B. Beecher, R.A. Graybosch, D.D. Baltens-
perger, L.A. Nelson, J.M. Krall, Y. Jin, J.E. Watkins,
D.J. Lyon, A.R. Martin, M-S. Chen, and G-H. Bai.
2006a. Registration of 'Infi nity CL' wheat. Crop Sci.
46:975-977.
Baenziger, S., K.M. Kim, and K. Haliloglu. 2001. Wheat in
vitro breeding. p. 979-1000. In A.P. Bonjeau and W.J.
Angus (ed.) The world wheat topic: A history of wheat
breeding. Lavoisier Publishing, Paris, France.
Baenziger, P.S., G.S. McMaster, W.W. Wilhelm, A. Weiss,
and C.J. Hays. 2004. Putting genes into genetic coeffi -
cients. Field Crops Res. 90:133-143.
Baenziger, P.S., and C.J. Peterson. 1992. Genetic variation: Its
origin and use for breeding self-pollinated species. p. 69-92.
In T.M. Stalker and J.P. Murphy (ed.) Plant breeding in the
1990s. CAB Int., Wallingford, UK.
Baenziger, P.S., W.K. Russell, G.L. Graef, and B.T. Camp-
bell. 2006b. Improving lives: 50 years of crop breeding,
genetics and cytology (C-1). Crop Sci. 46:2230-2244.
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environment and QTL × environment interactions for
agronomic traits on chromosome 3A of wheat. Crop Sci.
44:20-627.
Campbell, B.T., P.S. Baenziger, K.S. Gill, K.M. Eskridge,
H. Budak, M. Erayman, I. Dweikat, and Y. Yen. 2003.
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