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Copy number variation of B1 controls awn length in wheat
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作者 Jinlong Li Xin Xin +11 位作者 fangyao sun Zhenzhen Zhu Xiangru Xu Jiatian Yang Xiaoming Xie Jiazheng Yu Xiaobo Wang Sen Li Shilin Tian Baoyun Li Chaojie Xie Jun Ma 《The Crop Journal》 SCIE CSCD 2023年第3期817-824,共8页
Wheat awns contribute to photosynthesis and grain production.In this study,an F2population and F2:3families from a cross between the awned line 7D12 and the Chinese awnless variety Shiyou 20(SY20)were used to identify... Wheat awns contribute to photosynthesis and grain production.In this study,an F2population and F2:3families from a cross between the awned line 7D12 and the Chinese awnless variety Shiyou 20(SY20)were used to identify loci associated with awn length.Bulked-segregant RNA sequencing and linkage mapping identified a single dominant locus in a 0.3 cM interval on chromosome 5AL.Five genes were in the interval,including the recently cloned awn inhibitor B1.Although a single copy of the B1 gene was detected in 7D12,SY20 carried five copies of the gene.Increased copy number of B1 in SY20enhanced gene expression.Based on sequence variation among the promoter regions of five B1 gene copies in SY20,two dominant markers were developed and found to cosegregate with B1 in a population of 931 wheat accessions.All 77 awnless accessions harbored sequence variations in the B1 promoter regions similar to those of SY20 and thus carried multiple copies of the gene,whereas 15 randomly selected awned wheats carried only one copy.These results suggest that an increase in copy number of the B1 gene is associated with inhibition of awn length. 展开更多
关键词 WHEAT Awn Awnless B1 gene Copy number variation
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