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Genome-wide association studies reveal that members of bHLH subfamily 16 share a conserved function in regulating flag leaf angle in rice (Oryza sativa)

机译:全基因组关联研究表明bHLH亚家族16的成员在调节稻米(Oryza sativa)的旗叶角方面具有保守的功能。

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摘要

As a major component of ideal plant architecture, leaf angle especially flag leaf angle (FLA) makes a large contribution to grain yield in rice. We utilized a worldwide germplasm collection to elucidate the genetic basis of FLA that would be helpful for molecular design breeding in rice. Genome-wide association studies (GWAS) identified a total of 40 and 32 QTLs for FLA in Wuhan and Hainan, respectively. Eight QTLs were commonly detected in both conditions. Of these, 2 and 3 QTLs were identified in the indica and japonica subpopulations, respectively. In addition, the candidates of 5 FLA QTLs were verified by haplotype-level association analysis. These results indicate diverse genetic bases for FLA between the indica and japonica subpopulations. Three candidates, OsbHLH153, OsbHLH173 and OsbHLH174, quickly responded to BR and IAA involved in plant architecture except for OsbHLH173, whose expression level was too low to be detected; their overexpression in plants increased rice leaf angle. Together with previous studies, it was concluded that all 6 members in bHLH subfamily 16 had the conserved function in regulating FLA in rice. A comparison with our previous GWAS for tiller angle (TA) showed only one QTL had pleiotropic effects on FLA and TA, which explained low similarity of the genetic basis between FLA and TA. An ideal plant architecture is expected to be efficiently developed by combining favorable alleles for FLA from indica with favorable alleles for TA from japonica by inter-subspecies hybridization.
机译:作为理想植物结构的主要组成部分,叶角,尤其是旗叶角(FLA)对水稻的籽粒产量有很大贡献。我们利用世界范围的种质资源来阐明FLA的遗传基础,这将有助于水稻分子设计育种。全基因组关联研究(GWAS)在武汉和海南分别确定了40个和32个FLA QTL。在这两种情况下,通常检测到八个QTL。其中,分别在the和粳稻亚群中鉴定出2个和3个QTL。此外,通过单倍型水平关联分析验证了5个FLA QTL的候选者。这些结果表明,and稻和粳稻亚群之间的FLA具有多种遗传基础。 OsbHLH153,OsbHLH173和OsbHLH174这三个候选基因快速响应了与植物结构有关的BR和IAA,但OsbHLH173的表达水平太低,无法检测到。它们在植物中的过表达增加了水稻叶片的角度。与以前的研究一起得出的结论是,bHLH亚家族16中的所有6个成员在调节水稻FLA中均具有保守功能。与我们以前的GWAS分angle角(TA)的比较显示,只有一个QTL对FLA和TA具有多效性,这解释了FLA和TA的遗传基础相似性低。通过亚种间杂交,通过结合来自by的FLA的有利等位基因和来自粳稻的TA的有利等位基因,有望有效地开发理想的植物结构。

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