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Role of the G-box element in regulation of chlorophyll biosynthesis in Arabidopsis roots

机译:G-box元素在拟南芥根中调节叶绿素生物合成中的作用

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摘要

Regulation of chlorophyll metabolism comprises strong transcriptional control together with a range of post-translational mechanisms during chloroplast biogenesis. Recently we reported that chlorophyll biosynthesis in Arabidopsis thaliana roots is regulated by auxin/cytokinin signaling via the combination of two transcription factors, LONG-HYPOCOTYL5 (HY5) and GOLDEN2-LIKE2 (GLK2). In this study, we examined the involvement of cis-elements in the expression of chlorophyll biosynthesis genes. Searches for predicted cis-elements in key chlorophyll biosynthesis genes and their co-expressed genes revealed coexistence of the G-box motif and the CCAATC motif, which may be targeted by HY5 and GLK factors, respectively, in their promoter regions. Deletion of the G-box from the promoter of the CHLH gene encoding the H subunit of Mg-chelatase resulted in the absence of its expression in roots but not in shoots, showing a differing involvement of the G-box in CHLH expression between shoots and roots. Our data suggest that transcription factors and cis-elements participating chlorophyll biosynthesis are substantially changed during organ differentiation, which may be linked to the differentiation of plastids.
机译:叶绿素代谢的调控包括强大的转录控制以及叶绿体生物发生过程中的一系列翻译后机制。最近,我们报道了拟南芥根中叶绿素的生物合成受生长素/细胞分裂素信号传导的调控,这是通过两个转录因子LONG-HYPOCOTYL5(HY5)和GOLDEN2-LIKE2(GLK2)的组合来实现的。在这项研究中,我们检查了顺式元素在叶绿素生物合成基因表达中的参与。在关键的叶绿素生物合成基因及其共表达的基因中搜索预测的顺式元素揭示了G-box基序和CCAATC基序的共存,它们的启动子区域可能分别被HY5和GLK因子靶向。从编码Mg-螯合酶H亚基的CHLH基因的启动子中删除G-box,导致其在根中不表达,但在芽中不表达,这表明G-box在芽和芽之间的CHLH表达有不同的参与。根。我们的数据表明,参与器官分化过程中参与叶绿素生物合成的转录因子和顺式元素发生了实质性变化,这可能与质体的分化有关。

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