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油菜素内酯通过增强 Rubisco 的激活和促进光合基因的表达来促进黄瓜的光合作用和生长。

Brassinosteroids promote photosynthesis and growth by enhancing activation of Rubisco and expression of photosynthetic genes in Cucumis sativus.

机构信息

Department of Horticulture, Huajiachi Campus, Zhejiang University, Hangzhou, People's Republic of China.

出版信息

Planta. 2009 Nov;230(6):1185-96. doi: 10.1007/s00425-009-1016-1. Epub 2009 Sep 17.

Abstract

Brassinosteroids (BRs) are a new group of plant growth substances that promote plant growth and productivity. We showed in this study that improved growth of cucumber (Cucumis sativus) plants after treatment with 24-epibrassinolide (EBR), an active BR, was associated with increased CO(2) assimilation and quantum yield of PSII (Phi(PSII)). Treatment of brassinazole (Brz), a specific inhibitor for BR biosynthesis, reduced plant growth and at the same time decreased CO(2) assimilation and Phi(PSII). Thus, the growth-promoting activity of BRs can be, at least partly, attributed to enhanced plant photosynthesis. To understand how BRs enhance photosynthesis, we have analyzed the effects of EBR and Brz on a number of photosynthetic parameters and their affecting factors, including the contents and activity of ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco). Northern and Western blotting demonstrated that EBR upregulated, while Brz downregulated, the expressions of rbcL, rbcS and other photosynthetic genes. In addition, EBR had a positive effect on the activation of Rubisco based on increased maximum Rubisco carboxylation rates (V (c,max)), total Rubisco activity and, to a greater extent, initial Rubisco activity. The accumulation patterns of Rubisco activase (RCA) based on immunogold-labeling experiments suggested a role of RCA in BR-regulated activation state of Rubisco. Enhanced expression of genes encoding other Calvin cycle genes after EBR treatment may also play a positive role in RuBP regeneration (J (max)), thereby increasing maximum carboxylation rate of Rubisco (V (c,max)). Thus, BRs promote photosynthesis and growth by positively regulating synthesis and activation of a variety of photosynthetic enzymes including Rubisco in cucumber.

摘要

油菜素内酯(BRs)是一种新的植物生长物质,能促进植物生长和生产力。我们在这项研究中表明,用 24-表油菜素内酯(EBR)处理黄瓜(Cucumis sativus)后,植物生长得到改善,这与 CO2 同化和 PSII 的量子产量(Phi(PSII))增加有关。BR 生物合成的特异性抑制剂油菜素唑(Brz)的处理降低了植物的生长,同时降低了 CO2 同化和 Phi(PSII)。因此,BRs 的促生长活性至少部分归因于增强植物光合作用。为了了解 BRs 如何增强光合作用,我们分析了 EBR 和 Brz 对许多光合作用参数及其影响因素的影响,包括核酮糖-1,5-二磷酸羧化酶/加氧酶(Rubisco)的含量和活性。Northern 和 Western 印迹表明,EBR 上调,而 Brz 下调,rbcL、rbcS 和其他光合作用基因的表达。此外,EBR 对 Rubisco 的激活有积极影响,表现为最大 Rubisco 羧化速率(V(c,max))、总 Rubisco 活性增加,更重要的是初始 Rubisco 活性增加。基于免疫金标记实验的 Rubisco 激活酶(RCA)积累模式表明 RCA 在 BR 调节的 Rubisco 激活状态中起作用。EBR 处理后编码其他 Calvin 循环基因的基因表达增强,也可能在 RuBP 再生(J(max))中发挥积极作用,从而增加 Rubisco 的最大羧化速率(V(c,max))。因此,BRs 通过积极调节包括 Rubisco 在内的各种光合作用酶的合成和激活来促进黄瓜的光合作用和生长。

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