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拟南芥叶绿体发育过程中类囊体半乳糖脂生物合成的转录调控与叶绿素生物合成的协调。

Transcriptional regulation of thylakoid galactolipid biosynthesis coordinated with chlorophyll biosynthesis during the development of chloroplasts in Arabidopsis.

机构信息

Graduate School of Arts and Sciences, The University of Tokyo Tokyo, Japan.

Center for Biological Resources and Informatics, Tokyo Institute of Technology Yokohama, Japan.

出版信息

Front Plant Sci. 2014 Jun 11;5:272. doi: 10.3389/fpls.2014.00272. eCollection 2014.

Abstract

Biogenesis of thylakoid membranes in chloroplasts requires the coordinated synthesis of chlorophyll and photosynthetic proteins with the galactolipids monogalactosyldiacylglycerol (MGDG) and digalactosyldiacylglycerol (DGDG), which constitute the bulk of the thylakoid lipid matrix. MGD1 and DGD1 are the key enzymes of MGDG and DGDG synthesis, respectively. We investigated the expression profiles of MGD1 and DGD1 in Arabidopsis to identify the transcriptional regulation that coordinates galactolipid synthesis with the synthesis of chlorophyll and photosynthetic proteins during chloroplast biogenesis. The expression of both MGD1 and DGD1 was repressed in response to defects in chlorophyll synthesis. Moreover, these genes were downregulated by norflurazon-induced chloroplast malfunction via the GENOMES-UNCOUPLED1-mediated plastid signaling pathway. Similar to other photosynthesis-associated nuclear genes, the expression of MGD1 and DGD1 was induced by light, in which both cytokinin signaling and LONG HYPOCOTYL5-mediated light signaling played crucial roles. The expression of these galactolipid-synthesis genes, and particularly that of DGD1 under continuous light, was strongly affected by the activities of the GOLDEN2-LIKE transcription factors, which are potent regulators of chlorophyll synthesis and chloroplast biogenesis. These results suggest tight transcriptional coordination of galactolipid synthesis with the formation of the photosynthetic chlorophyll-protein complexes during leaf development. Meanwhile, unlike the photosynthetic genes, the galactolipid synthesis genes were not upregulated during chloroplast biogenesis in the roots, even though the galactolipids accumulated with chlorophylls, indicating the importance of post-transcriptional regulation of galactolipid synthesis during root greening. Our data suggest that plants utilize complex regulatory mechanisms to modify galactolipid synthesis with chloroplast development during plant growth.

摘要

类囊体膜的生物发生需要协调合成叶绿素和光合蛋白与半乳糖基二酰基甘油(MGDG)和二半乳糖基二酰基甘油(DGDG)的协同作用,这构成了类囊体脂质基质的大部分。MGD1 和 DGD1 分别是 MGDG 和 DGDG 合成的关键酶。我们研究了拟南芥中 MGD1 和 DGD1 的表达谱,以确定在叶绿体生物发生过程中协调半乳糖脂合成与叶绿素和光合蛋白合成的转录调控。MGD1 和 DGD1 的表达均受到叶绿素合成缺陷的抑制。此外,这些基因通过 norflurazon 诱导的叶绿体功能障碍通过 GENOMES-UNCOUPLED1 介导的质体信号通路下调。与其他光合作用相关的核基因相似,MGD1 和 DGD1 的表达受光诱导,其中细胞分裂素信号和 LONG HYPOCOTYL5 介导的光信号都起着关键作用。这些半乳糖脂合成基因的表达,特别是在连续光照下 DGD1 的表达,受到 GOLDEN2-LIKE 转录因子的强烈影响,这些转录因子是叶绿素合成和叶绿体生物发生的有效调节剂。这些结果表明,在叶片发育过程中,半乳糖脂合成与光合叶绿素蛋白复合物的形成之间存在紧密的转录协调。同时,与光合作用基因不同,即使在根中与叶绿素一起积累,半乳糖脂合成基因在叶绿体生物发生过程中也不会上调,这表明在根变绿过程中半乳糖脂合成的转录后调控很重要。我们的数据表明,植物利用复杂的调控机制在植物生长过程中随着叶绿体发育来修饰半乳糖脂合成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c1ac/4052731/0e7ebb05f899/fpls-05-00272-g001.jpg

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