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CEF1/OsMYB103L is involved in GA-mediated regulation of secondary wall biosynthesis in rice

机译:CEF1 / OsMYB103L参与GA介导的水稻次生壁生物合成的调控

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Although the main genes in rice involved in the biosynthesis of secondary wall components have been characterized, the molecular mechanism underlying coordinated regulation of genes expression is not clear. In this study, we reported a new rice variety, cef1, showed the culm easily fragile (CEF) without other concomitant phenotypes. The CEF1 gene encodes a MYB family transcription factor OsMYB103L, was cloned based on map-based approach. Bioinformatics analyses indicated that CEF1 belongs to the R2R3-MYB subfamily and highly similar to Arabidopsis AtMYB103. Expression pattern analysis indicated that CEF1 is mainly expressed in internodes and panicles. Biochemical assays demonstrated that OsMYB103L is a nuclear protein and shows high transcriptional activation activity at C-terminus. OsMYB103L mediates cellulose biosynthesis and secondary walls formation mainly through directly binding the CESA4, CESA7, CESA9 and BC1 promoters and regulating their expression. OsMYB103L may also function as a master switch to regulate the expression of several downstream TFs, which involved in secondary cell wall biosynthesis. Furthermore, OsMYB103L physically interacts with SLENDER RICE1 (SLR1), a DELLA repressor of GA signaling, and involved in GA-mediated regulation of cellulose synthesis pathway. Our findings revealed that OsMYB103L plays an important role in GA-regulating secondary cell wall synthesis, and the manipulation of this gene provide a new strategy to help the straw decay in soil.
机译:尽管已鉴定了参与次生壁成分生物合成的水稻主要基因,但尚不清楚协调调控基因表达的分子机制。在这项研究中,我们报道了一个新的水稻品种cef1,表明该茎秆易碎(CEF),而没有其他伴随的表型。基于基于图的方法克隆了CEF1基因编码的MYB家族转录因子OsMYB103L。生物信息学分析表明,CEF1属于R2R3-MYB亚科,与拟南芥AtMYB103高度相似。表达模式分析表明,CEF1主要在节间和穗中表达。生化分析表明,OsMYB103L是一种核蛋白,并在C端显示出高转录激活活性。 OsMYB103L主要通过直接结合CESA4,CESA7,CESA9和BC1启动子并调节其表达来介导纤维素的生物合成和次生壁的形成。 OsMYB103L还可以充当主开关,以调节与次级细胞壁生物合成有关的几个下游TF的表达。此外,OsMYB103L与GA信号的DELLA阻遏物SLENDER RICE1(SLR1)发生物理相互作用,并参与GA介导的纤维素合成途径调控。我们的发现表明,OsMYB103L在GA调控次生细胞壁合成中起着重要作用,并且对该基因的操作提供了一种新的策略来帮助秸秆在土壤中腐烂。

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