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Natural Variation of Dt2 Determines Branching in Soybean
Qianjin Liang, Liyu Chen, Xia Yang, Hui Yang, Shulin Liu, Kun Kou,Lei Fan, Zhifang Zhang, Zongbiao Duan, Yaqin Yuan, Shan Liang, Yucheng Liu, Xingtong Lu, Guoan Zhou, Min Zhang, Fanjiang Kong & Zhixi Tian
Nature Communications
Abstract
Shoot branching is fundamentally important in determining soybean yield. Here, through genome-wide association study, we identify one predominant association locus on chromosome 18 that confers soybean branch number in the natural population. Further analyses determine that Dt2 is the corresponding gene and the natural variations in Dt2 result in significant differential transcriptional levels between the two major haplotypes. Functional characterization reveals that Dt2 interacts with GmAgl22 and GmSoc1a to physically bind to the promoters of GmAp1a and GmAp1d and to activate their transcription. Population genetic investigation show that the genetic differentiation of Dt2 display significant geographic structure. Our study provides a predominant gene for soybean branch number and may facilitate the breeding of high-yield soybean varieties.
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DOI:10.1038/s41467-022-34153-4 |
论文题目: |
Natural Variation of Dt2 Determines Branching in Soybean |
英文论文题目: |
Natural Variation of Dt2 Determines Branching in Soybean |
第一作者: |
Qianjin Liang, Liyu Chen, Xia Yang, Hui Yang, Shulin Liu, Kun Kou,Lei Fan, Zhifang Zhang, Zongbiao Duan, Yaqin Yuan, Shan Liang, Yucheng Liu, Xingtong Lu, Guoan Zhou, Min Zhang, Fanjiang Kong & Zhixi Tian |
英文第一作者: |
Qianjin Liang, Liyu Chen, Xia Yang, Hui Yang, Shulin Liu, Kun Kou,Lei Fan, Zhifang Zhang, Zongbiao Duan, Yaqin Yuan, Shan Liang, Yucheng Liu, Xingtong Lu, Guoan Zhou, Min Zhang, Fanjiang Kong & Zhixi Tian |
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2022-10-31 |
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Shoot branching is fundamentally important in determining soybean yield. Here, through genome-wide association study, we identify one predominant association locus on chromosome 18 that confers soybean branch number in the natural population. Further analyses determine that Dt2 is the corresponding gene and the natural variations in Dt2 result in significant differential transcriptional levels between the two major haplotypes. Functional characterization reveals that Dt2 interacts with GmAgl22 and GmSoc1a to physically bind to the promoters of GmAp1a and GmAp1d and to activate their transcription. Population genetic investigation show that the genetic differentiation of Dt2 display significant geographic structure. Our study provides a predominant gene for soybean branch number and may facilitate the breeding of high-yield soybean varieties. |
英文摘要: |
Shoot branching is fundamentally important in determining soybean yield. Here, through genome-wide association study, we identify one predominant association locus on chromosome 18 that confers soybean branch number in the natural population. Further analyses determine that Dt2 is the corresponding gene and the natural variations in Dt2 result in significant differential transcriptional levels between the two major haplotypes. Functional characterization reveals that Dt2 interacts with GmAgl22 and GmSoc1a to physically bind to the promoters of GmAp1a and GmAp1d and to activate their transcription. Population genetic investigation show that the genetic differentiation of Dt2 display significant geographic structure. Our study provides a predominant gene for soybean branch number and may facilitate the breeding of high-yield soybean varieties. |
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Nature Communications |
英文刊物名称: |
Nature Communications |
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