Results 221 to 230 of about 2,811 (252)
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Euphytica, 2000
The male sterile plants that segregated in a BC5F2 of `C. sericeus × C. cajan var. TT-5' population were maintained by sib mating. The male sterile plants were crossed with ICPL-85012.Approximately 50% of the F1 plants were sterile. F2 plants derived from the fertile F1 plants did not segregate for male sterility. The reciprocal hybrid i.e. ICPL-85012 ×
K.B. Wanjari +3 more
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The male sterile plants that segregated in a BC5F2 of `C. sericeus × C. cajan var. TT-5' population were maintained by sib mating. The male sterile plants were crossed with ICPL-85012.Approximately 50% of the F1 plants were sterile. F2 plants derived from the fertile F1 plants did not segregate for male sterility. The reciprocal hybrid i.e. ICPL-85012 ×
K.B. Wanjari +3 more
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Euphytica, 2006
Fertility alternation normally occurs in a novel type of thermo-photo-sensitive genic male sterile (TGMS) wheat whose recessive genes in the nucleus are expressed as virtually complete sterility under lower temperature and shorter daylight conditions, but as normal fertility under higher temperature and longer daylight conditions during the ...
Jian-Kui Zhang +4 more
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Fertility alternation normally occurs in a novel type of thermo-photo-sensitive genic male sterile (TGMS) wheat whose recessive genes in the nucleus are expressed as virtually complete sterility under lower temperature and shorter daylight conditions, but as normal fertility under higher temperature and longer daylight conditions during the ...
Jian-Kui Zhang +4 more
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Environment-sensitive genic male sterility (EGMS) in crops
2001Publisher Summary This chapter discusses environment-sensitive genic male sterility (EGMS) and its use in crops; particular emphasize is given on rice, but the principles and practices reported are applicable to other crops as well. The chapter also discusses the current status of and future outlook for the use of EGMS to develop and use two-line ...
S.S. Virmani, M. Ilyas-Ahmed
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Genic male sterility in tomato and its manipulation in breeding
1994Male sterility in plants is widely recognized as a useful trait in breeding programs and in the commercial production of F1 hybrid seed. Male sterile plants have been reported in a large number of families and genera, and in almost all of the major crop plants (Kaul 1988). Although most known male sterile lines are of natural occurrence, male sterility
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A plan for the development of Cytoplasmic-genic Male-sterility in Sorghum
Madras Agricultural Journal, 1963Intensivo hybrid production programme in Sorghum requires development of cytoplasmic genie male-storility in many suitable agronomic bases. As most such typos happen to be fertility restorers, the straight transforence of storility genos through simple backcrossos is impossible.
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GENIC MALE STERILITY IN PETUNIA
Acta Horticulturae, 1990R.T. Perkins III, L.C. Ewart
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GENIC MALE STERILITY IN BRASSICA CAMPESTRIS L.
Acta Horticulturae, 1996Y. Takahata +3 more
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[ATPase distribution in fertile and sterile anther of a genic male sterile Chinese cabbage].
Fen zi xi bao sheng wu xue bao = Journal of molecular cell biology, 2009Lead precipitation technique was used to locate Adenosine Triphosphatase (ATPase) in the fertile and sterile anthers of a genic male sterile Chinese cabbage (Brassica campestris L. ssp. Chinensis Makino var. communis Tsen et Lee),which would help us to understand the relationship between ATPase and sterility of anthers of the cabbage.
Chao Tian, Xie +4 more
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[Calcium distribution in fertile and sterile anthers of a genic male sterile Chinese cabbage].
Zhi wu sheng li yu fen zi sheng wu xue xue bao = Journal of plant physiology and molecular biology, 2009Potassium antimonite was used to locate calcium in the fertile and sterile anthers of a genic male sterile Chinese cabbage (Brassica campestris L. ssp. chinensis Makino) to probe the relation between Ca(2+) and fertility and sterility of anthers of the cabbage.
Chao-Tian, Xie +4 more
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