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Influence of plastids on light signalling and development

机译:质体对光信号传导和发育的影响

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摘要

In addition to their contribution to metabolism, chloroplasts emit signals that influence the expression of nuclear genes that contribute to numerous plastidic and extraplastidic processes. Plastid-to-nucleus signalling optimizes chloroplast function, regulates growth and development, and affects responses to environmental cues. An incomplete list of plastid signals is available and particular plastid-to-nucleus signalling mechanisms are partially understood. The plastid-to-nucleus signalling that depends on the GENOMES UNCOUPLED (GUN) genes couples the expression of nuclear genes to the functional state of the chloroplast. Analyses of gun mutants provided insight into the mechanisms and biological functions of plastid-to-nucleus signalling. GUN genes contribute to chloroplast biogenesis, the circadian rhythm, stress tolerance, light signalling and development. Some have criticized the gun mutant screen for employing inhibitors of chloroplast biogenesis and suggested that gun alleles do not disrupt significant plastid-to-nucleus signalling mechanisms. Here, I briefly review GUN-dependent plastid-to-nucleus signalling, explain the flaws in the major criticisms of the gun mutant screen and review the influence of plastids on light signalling and development.
机译:除了对代谢的贡献外,叶绿体还发出影响核基因表达的信号,而核基因的表达则影响了许多质体和质外过程。质体到核的信号传导可优化叶绿体功能,调节生长和发育,并影响对环境线索的反应。可获得质体信号的不完整列表,并且部分理解了质体至核的信号传导机制。依赖于GENOMES UNCOUPLED(GUN)基因的质体-核信号转导将核基因的表达与叶绿体的功能状态相结合。枪突变体的分析提供了对质体到核信号转导的机制和生物学功能的见解。 GUN基因有助于叶绿体生物发生,昼夜节律,压力耐受性,光信号传导和发育。一些人批评枪突变体筛选采用叶绿体生物发生抑制剂,并建议枪等位基因不会破坏重要的质体-核信号传导机制。在这里,我简要回顾了依赖GUN的质体-核信号转导,解释了对枪支突变体筛选的主要批评中的缺陷,并回顾了质体对光信号转导和发育的影响。

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