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Natural selection of a GSK3 determines rice mesocotyl domestication by coordinating strigolactone and brassinosteroid signaling

机译:GSK3的自然选择通过协调strigolactone和brasinosteroid信号传导确定水稻中胚轴的驯化

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Mesocotyl is the crucial organ for pushing buds out of deep water or soil after germination in monocots. Deep direct seeding or mechanized dry seeding cultivation practice requires rice cultivars having long mesocotyl. However, the mechanisms of mesocotyl elongation and domestication remain unknown. Here, our genome-wide association study (GWAS) reveals that natural variations of OsGSK2, a conserved GSK3-like kinase involved in brassinosteroid signaling, determine rice mesocotyl length variation. Variations in the coding region of OsGSK2 alter its kinase activity. It is selected for mesocotyl length variation during domestication. Molecular analyses show that brassinosteroid-promoted mesocotyl elongation functions by suppressing the phosphorylation of an U-type cyclin, CYC U2, by OsGSK2. Importantly, the F-box protein D3, a major positive component in strigolactone signaling, can degrade the OsGSK2-phosphorylated CYC U2 to inhibit mesocotyl elongation. Together, these results suggest that OsGSK2 is selected to regulate mesocotyl length by coordinating strigolactone and brassinosteroid signaling during domestication.
机译:中胚轴是单子叶植物发芽后将芽从深水或土壤中推出的关键器官。深度直接播种或机械化干播种植实践要求中胚轴长的水稻品种。但是,中胚轴伸长和驯化的机制仍然未知。在这里,我们的全基因组关联研究(GWAS)显示OsGSK2(一种参与油菜素甾体信号传导的保守GSK3样激酶)的自然变异决定了水稻中胚轴长度变异。 OsGSK2编码区的变化会改变其激酶活性。选择它是为了驯化期间中胚轴长度的变化。分子分析表明,油菜素甾体促进的中胚轴伸长通过抑制OsGSK2抑制U型细胞周期蛋白CYC U2的磷酸化而起作用。重要的是,F-box蛋白D3是strigolactone信号转导中的主要阳性成分,可以降解OsGSK2-磷酸化的CYC U2以抑制中胚轴伸长。总之,这些结果表明选择OsGSK2通过在驯化过程中协调松果内酯和油菜素甾类信号传导来调节中胚轴长度。

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