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拟南芥叶绿体中中链长度聚异戊二烯(C45-C55)的形成依赖于油菜素内酯。

Medium-chain-length polyprenol (C45-C55) formation in chloroplasts of Arabidopsis is brassinosteroid-dependent.

机构信息

Institute of Biology, Warsaw University of Life Sciences, ul. Nowoursynowska 159, bldg. 37, 02-776, Warsaw, Poland.

Institute of Biochemistry and Biophysics, Polish Academy of Sciences, ul. Pawińskiego 5a, 02-106, Warsaw, Poland.

出版信息

J Plant Physiol. 2023 Dec;291:154126. doi: 10.1016/j.jplph.2023.154126. Epub 2023 Nov 1.

Abstract

Brassinosteroids are important plant hormones influencing, among other processes, chloroplast development, the electron transport chain during light reactions of photosynthesis, and the Calvin-Benson cycle. Medium-chain-length polyprenols built of 9-11 isoprenoid units (C45-C55 carbons) are a class of isoprenoid compounds present in abundance in thylakoid membranes. They are synthetized in chloroplast by CPT7 gene from Calvin cycle derived precursors on MEP (methylerythritol 4-phosphate) isoprenoid biosynthesis pathway. C45-C55 polyprenols affect thylakoid membrane ultra-structure and hence influence photosynthetic apparatus performance in plants such as Arabidopsis and tomato. So far nothing is known about the hormonal or environmental regulation of CPT7 gene expression. The aim of our study was to find out if medium-chain-length polyprenol biosynthesis in plants may be regulated by hormonal cues.We found that the CPT7 gene in Arabidopsis has a BZR1 binding element (brassinosteroid dependent) in its promoter. Brassinosteroid signaling mutants in Arabidopsis accumulate a lower amount of medium-chain-length C45-C55 polyprenols than control plants. At the same time carotenoid and chlorophyll content is increased, and the amount of PsbD1A protein coming from photosystem II does not undergo a significant change. On contrary, treatment of WT plants with epi-brassinolide increases C45-C55 polyprenols content. We also report decreased transcription of MEP enzymes (besides C45-C55 polyprenols, precursors of numerous isoprenoids, e.g. phytol, carotenoids are derived from this pathway) and genes encoding biosynthesis of medium-chain-length polyprenol enzymes in brassinosteroid perception mutant bri1-116. Taken together, we document that brassinosteroids affect biosynthetic pathway of C45-C55 polyprenols.

摘要

油菜素内酯是一种重要的植物激素,除其他过程外,还影响叶绿体发育、光合作用光反应中的电子传递链和卡尔文-本森循环。由 9-11 个异戊二烯单元(C45-C55 碳原子)组成的中链长聚异戊二烯是一种类异戊二烯化合物,在类囊体膜中大量存在。它们由叶绿体中的 CPT7 基因在 MEP(甲基赤藓醇 4-磷酸)异戊二烯生物合成途径中由卡尔文循环衍生的前体合成。C45-C55 聚异戊二烯影响类囊体膜的超结构,从而影响拟南芥和番茄等植物的光合作用装置性能。到目前为止,还不知道 CPT7 基因表达是否受到激素或环境的调节。我们研究的目的是确定植物中中链长聚异戊二烯的生物合成是否可能受到激素信号的调节。我们发现,拟南芥中的 CPT7 基因启动子中存在一个 BZR1 结合元件(依赖油菜素内酯)。与对照植物相比,拟南芥油菜素内酯信号突变体积累的中链长 C45-C55 聚异戊二烯量较低。同时类胡萝卜素和叶绿素含量增加,来自光系统 II 的 PsbD1A 蛋白的量没有发生显著变化。相反,用表油菜素内酯处理 WT 植物会增加 C45-C55 聚异戊二烯的含量。我们还报告了 MEP 酶(除 C45-C55 聚异戊二烯外,许多异戊二烯的前体,例如植醇,类胡萝卜素也来自这条途径)和编码中链长聚异戊二烯酶生物合成的基因转录减少在油菜素内酯感知突变体 bri1-116 中。总之,我们证明油菜素内酯影响 C45-C55 聚异戊二烯的生物合成途径。

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