Registration of KS87UP9, A Winter Wheat Germplasm Segregating for a Dominant Male‐Sterility Gene

Crop Science ◽  
1991 ◽  
Vol 31 (1) ◽  
pp. 247-247 ◽  
Author(s):  
T. S. Cox ◽  
R. G. Sears ◽  
B. S. Gill
2009 ◽  
Vol 35 (8) ◽  
pp. 1458-1461
Author(s):  
Lai-Qiang SONG ◽  
Bin YI ◽  
Ming-Gui YANG ◽  
Lun-Lin CHEN ◽  
Ting-Dong FU

Genome ◽  
2005 ◽  
Vol 48 (5) ◽  
pp. 848-854 ◽  
Author(s):  
Xiaowu Wang ◽  
Ping Lou ◽  
Guusje Bonnema ◽  
Baojun Yang ◽  
Hangjun He ◽  
...  

The dominant male sterility gene Ms-cd1 (c, cabbage; d, dominant) was identified as a spontaneous mutation in the spring cabbage line 79-399-3. The Ms-cd1 gene is successfully applied in hybrid seed production of several Brassica oleracea cultivars in China. Amplified fragment length polymorphism (AFLP) technology was used to identify markers linked to the Ms-cd1 gene in bulks of male-sterile and male-fertile individuals of a segregating BC3 population and in a near-isogenic population of 25 male-sterile plants. Twelve markers within a 20-cM interval proximal to the Ms-cd1 gene were identified, 5 of which can be used to select homozygous male-sterile Ms-cd1/ Ms-cd1 plants. Three AFLP markers and 3 sequence characterized amplified region markers that were linked to MS-cd1 mapped onto linkage group O9, corresponding to chromosome 3 of B. oleracea. This region corresponds to the top of chromosome 5 in Arabidopsis thaliana.Key words: Brassica oleracea, dominant male-sterility gene, bulk segregant analysis, amplified fragment length polymorphism (AFLP), genetic mapping.


Plant Gene ◽  
2019 ◽  
Vol 19 ◽  
pp. 100186
Author(s):  
Sai Rekha Kadirimangalam ◽  
Rahman Hifzur ◽  
Saraswathi R ◽  
Kumar M ◽  
Raveendran M ◽  
...  

2020 ◽  
Vol 10 (4) ◽  
pp. 1309-1318
Author(s):  
Tzu-Kai Lin ◽  
Ya-Ping Lin ◽  
Shun-Fu Lin

Male sterility has been widely used in hybrid seed production in Brassica, but not in B. rapa ssp. chinensis, and genetic models of male sterility for this subspecies are unclear. We discovered a spontaneous mutant in B. rapa ssp. chinensis. A series of progeny tests indicated that male sterility in B. rapa ssp. chinensis follows a three-allele model with BrMsa, BrMsb, and BrMsc. The male sterility locus has been mapped to chromosome A07 in BC1 and F2 populations through genotyping by sequencing. Fine mapping in a total of 1,590 F2 plants narrowed the male sterility gene BrMs to a 400 kb region, with two SNP markers only 0.3 cM from the gene. Comparative gene mapping shows that the Ms gene in B. rapa ssp. pekinensis is different from the BrMs gene of B. rapa ssp. chinensis, despite that both genes are located on chromosome A07. Interestingly, the DNA sequence orthologous to a male sterile gene in Brassica napus, BnRf, is within 400 kb of the BrMs locus. The BnRf orthologs of B. rapa ssp. chinensis were sequenced, and one KASP marker (BrMs_indel) was developed for genotyping based on a 14 bp indel at intron 4. Cosegregation of male sterility and BrMs_indel genotypes in the F2 population indicated that BnRf from B. napus and BrMs from B. rapa are likely to be orthologs. The BrMs_indel marker developed in this study will be useful in marker-assisted selection for the male sterility trait.


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