Inheritance of male sterility and fertility restoration of the A1 system of cytoplasmic- nuclear male sterility in pearl millet was investigated using 12 crosses among three diverse male sterile lines (A-lines) and four diverse restorers (R-lines). Individual plants from R- lines were used to make crosses on A-lines. The segregation pattern of male sterile (S) and male fertile (F) plants observed in F2 and BC1 in two seasons at ICRISAT, Patancheru was suggestive more likely of a single-gene control of male sterility and fertility restoration. However, a 3-gene model of male sterility/fertility restoration where dominant alleles at any two of the three duplicate complimentary loci will lead to male fertility could not be ruled out, no...
Abstract Background Pearl millet (Pennisetum glaucum (L.) R. Br., syn. Cenchrus americanus (L.) R. B...
Commercial viability of three cytoplasmic-nuclear male sterility (CMS) systems (A4, A5 and Av) as po...
A4 and A5 cytoplasmic male sterility (CMS) systems provide access to more diverse germplasm and offe...
Inheritance of fertility restoration of the A4 system of cytoplasmic-nuclear male sterility in pearl...
Inheritance of male sterility and fertility restoration of the A 1 system of cytoplasmic-nuclear...
The A5 cytoplasmic-nuclear male sterility (CMS), the most stable cytoplasm available in pearl mille...
In 1994, a male-fertile Pennisetum glaucum hybrid from crosses between 81A4 and 834B, with excellent...
Effects of environment and parental nuclear genotype may cause considerable difficulties in the iden...
Genetic background has a significant effect on the expression of cytoplasmic-nuclear male sterility ...
Hybrids in each cytoplasmic background were fertile during the postrainy season, while all 95 hybrid...
Background Pearl millet (Pennisetum glaucum (L.) R. Br., syn. Cenchrus americanus (L.) R. Br) is an...
Effects of environment and parental nuclear genotype may cause considerable difficulties in the iden...
Among the cytoplasmic-nuclear male sterility (CMS) systems reported in pearl millet, Pennisetum glau...
To determine the distribution and geographic specificity of sterility maintainers in pearl millet, P...
Understanding the allelic complementation of restoration among the stable restorer lines will contri...
Abstract Background Pearl millet (Pennisetum glaucum (L.) R. Br., syn. Cenchrus americanus (L.) R. B...
Commercial viability of three cytoplasmic-nuclear male sterility (CMS) systems (A4, A5 and Av) as po...
A4 and A5 cytoplasmic male sterility (CMS) systems provide access to more diverse germplasm and offe...
Inheritance of fertility restoration of the A4 system of cytoplasmic-nuclear male sterility in pearl...
Inheritance of male sterility and fertility restoration of the A 1 system of cytoplasmic-nuclear...
The A5 cytoplasmic-nuclear male sterility (CMS), the most stable cytoplasm available in pearl mille...
In 1994, a male-fertile Pennisetum glaucum hybrid from crosses between 81A4 and 834B, with excellent...
Effects of environment and parental nuclear genotype may cause considerable difficulties in the iden...
Genetic background has a significant effect on the expression of cytoplasmic-nuclear male sterility ...
Hybrids in each cytoplasmic background were fertile during the postrainy season, while all 95 hybrid...
Background Pearl millet (Pennisetum glaucum (L.) R. Br., syn. Cenchrus americanus (L.) R. Br) is an...
Effects of environment and parental nuclear genotype may cause considerable difficulties in the iden...
Among the cytoplasmic-nuclear male sterility (CMS) systems reported in pearl millet, Pennisetum glau...
To determine the distribution and geographic specificity of sterility maintainers in pearl millet, P...
Understanding the allelic complementation of restoration among the stable restorer lines will contri...
Abstract Background Pearl millet (Pennisetum glaucum (L.) R. Br., syn. Cenchrus americanus (L.) R. B...
Commercial viability of three cytoplasmic-nuclear male sterility (CMS) systems (A4, A5 and Av) as po...
A4 and A5 cytoplasmic male sterility (CMS) systems provide access to more diverse germplasm and offe...