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光下的管弦乐操作:调控衣藻碳浓缩机制需要串扰。

Orchestral manoeuvres in the light: crosstalk needed for regulation of the Chlamydomonas carbon concentration mechanism.

机构信息

Department of Plant Sciences, Downing Street, University of Cambridge, Cambridge, UK.

出版信息

J Exp Bot. 2021 Jun 22;72(13):4604-4624. doi: 10.1093/jxb/erab169.

Abstract

The inducible carbon concentration mechanism (CCM) in Chlamydomonas reinhardtii has been well defined from a molecular and ultrastructural perspective. Inorganic carbon transport proteins, and strategically located carbonic anhydrases deliver CO2 within the chloroplast pyrenoid matrix where Rubisco is packaged. However, there is little understanding of the fundamental signalling and sensing processes leading to CCM induction. While external CO2 limitation has been believed to be the primary cue, the coupling between energetic supply and inorganic carbon demand through regulatory feedback from light harvesting and photorespiration signals could provide the original CCM trigger. Key questions regarding the integration of these processes are addressed in this review. We consider how the chloroplast functions as a crucible for photosynthesis, importing and integrating nuclear-encoded components from the cytoplasm, and sending retrograde signals to the nucleus to regulate CCM induction. We hypothesize that induction of the CCM is associated with retrograde signals associated with photorespiration and/or light stress. We have also examined the significance of common evolutionary pressures for origins of two co-regulated processes, namely the CCM and photorespiration, in addition to identifying genes of interest involved in transcription, protein folding, and regulatory processes which are needed to fully understand the processes leading to CCM induction.

摘要

莱茵衣藻中的诱导型碳浓缩机制(CCM)在分子和超微结构层面已经得到了很好的定义。无机碳转运蛋白和位置巧妙的碳酸酐酶将 CO2 输送到叶绿体淀粉核基质中,Rubisco 就被包裹在那里。然而,对于导致 CCM 诱导的基本信号和感应过程,我们知之甚少。虽然外界 CO2 限制被认为是主要的信号,但通过来自光捕获和光呼吸信号的调节反馈,将能量供应与无机碳需求相偶联,可能提供了最初的 CCM 触发因素。本文综述讨论了这些过程整合的关键问题。我们考虑了叶绿体如何作为光合作用的坩埚,从细胞质中导入和整合核编码组件,并向细胞核发送逆行信号来调节 CCM 诱导。我们假设 CCM 的诱导与与光呼吸和/或光胁迫相关的逆行信号有关。我们还研究了共同进化压力对于两个共同调节过程(CCM 和光呼吸)起源的意义,除了鉴定参与转录、蛋白质折叠和调节过程的感兴趣基因,这些基因对于充分理解导致 CCM 诱导的过程是必要的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b567/8320531/7e00272c3841/erab169_fig1.jpg

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