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在正向信号转导和光形态建成过程中,依赖光敏色素的协调控制核和质体基因表达的不同方面。

Phytochrome-dependent coordinate control of distinct aspects of nuclear and plastid gene expression during anterograde signaling and photomorphogenesis.

机构信息

Department of Energy-Plant Research Laboratory, Michigan State University East Lansing, MI, USA.

Department of Energy-Plant Research Laboratory, Michigan State University East Lansing, MI, USA ; Department of Biochemistry and Molecular Biology, Michigan State University East Lansing, MI, USA.

出版信息

Front Plant Sci. 2014 Apr 30;5:171. doi: 10.3389/fpls.2014.00171. eCollection 2014.

Abstract

Light perception by photoreceptors impacts plastid transcription, development, and differentiation. This photoreceptor-dependent activity suggests a mechanism for photoregulation of gene expression in the nucleus and plastid that serves to coordinate expression of critical genes of these two organelles. This coordinate expression is required for proper stoichiometric accumulation of components needed for assembly of plastids, photosynthetic light-harvesting complexes and components such as phytochromes. Chloroplast-targeted sigma factors, which function together with the plastid-encoded RNA polymerase to regulate expression of plastid-encoded genes, and nuclear-encoded plastid development factors, such as GLK1 and GLK2, are targets of phytochrome regulation. Such phytochrome-dependent functions are hypothesized to allow light-dependent regulation, and feasibly tuning, of plastid components and function in response to changes in the external environment, which directly affects photosynthesis and the potential for light-induced damage. When the size and protein composition of the light-harvesting complexes are not tuned to the external environment, imbalances in electron transport can impact the cellular redox state and cause cellular damage. We show that phytochromes specifically regulate the expression of multiple factors that function to modulate plastid transcription and, thus, provide a paradigm for coordinate expression of the nuclear and plastid genomes in response to changes in external light conditions. As phytochromes respond to changes in the prevalent wavelengths of light and light intensity, we propose that specific phytochrome-dependent molecular mechanisms are used during light-dependent signaling between the nucleus and chloroplast during photomorphogenesis to coordinate chloroplast development with plant developmental stage and the external environment.

摘要

光感受器对光的感知会影响质体的转录、发育和分化。这种光感受器依赖性的活动表明,在细胞核和质体中存在一种基因表达的光调控机制,用于协调这两个细胞器中关键基因的表达。这种协调表达对于质体组件的正确化学计量积累是必需的,这些组件是质体组装、光合作用光捕获复合物和诸如光敏色素等组件所必需的。质体靶向的 σ 因子与质体编码的 RNA 聚合酶一起作用,以调节质体编码基因的表达,而核编码的质体发育因子,如 GLK1 和 GLK2,则是光敏色素调节的靶标。这种依赖于光敏色素的功能假设允许对质体组件和功能进行光依赖性调节,并且可以根据外部环境的变化进行灵活调整,这直接影响光合作用和潜在的光诱导损伤。当光捕获复合物的大小和蛋白质组成不能适应外部环境时,电子传递的不平衡会影响细胞的氧化还原状态并导致细胞损伤。我们表明,光敏色素特异性调节多种因子的表达,这些因子的功能是调节质体转录,从而为核质体基因组在响应外部光照条件变化时的协调表达提供了一个范例。由于光敏色素对主要光波长和光强度的变化作出反应,我们提出在光形态发生过程中,细胞核和叶绿体之间的光依赖性信号传递中使用特定的光敏色素依赖性分子机制,以协调质体发育与植物发育阶段和外部环境。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f1e/4012200/dd5bb041c1df/fpls-05-00171-g0001.jpg

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