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首页> 外文期刊>Plant Molecular Biology >Chlorophyll antenna size adjustments by irradiance in Dunaliella salina involve coordinate regulation of chlorophyll a oxygenase (CAO) and Lhcb gene expression
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Chlorophyll antenna size adjustments by irradiance in Dunaliella salina involve coordinate regulation of chlorophyll a oxygenase (CAO) and Lhcb gene expression

机译:杜氏盐藻通过辐照调节叶绿素触角大小涉及叶绿素a加氧酶(CAO)和Lhcb基因表达的协调调节

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摘要

To elucidate the mechanism of irradiance-dependent adjustments in the chlorophyll antenna size of photosynthesis, we addressed the regulation of expression of genes encoding a variety of chlorophyll biosynthesis enzymes and that of the Lhcb genes in the model organism Dunaliella salina. Among the chlorophyll biosynthesis enzymes tested, only the chlorophyll a oxygenase (CAO) gene responded to changes in the level of irradiance with substantial mRNA level and kinetics of change that were similar to those of the Lhcb genes. Evidence is presented for the operation of a cytosolic signal transduction pathway for the rapid (order of minutes) regulation of both CAO and Lhcb gene expression by irradiance. Inhibitor studies and transient activation of Ca2+-dependent kinase suggested phopholipase-C activation to Ca2+ release, and activation of a specific Ca2+/CaM-dependent protein kinase in this cytosolic signal transduction pathway. The redox state of the plastoquinone pool also serves to regulate CAO and Lhcb gene expression on a slower time scale (hours) and probably serves as a plastidic-origin signal that acts coordinately with the cytosolic signal transduction pathway. It is proposed that irradiance-dependent adjustments in the chlorophyll antenna size occur by coordinate regulation of CAO and Lhcb gene expression via two distinct signal transduction pathways in photosynthetic organisms.
机译:为了阐明光合作用中叶绿素触角大小的辐照度依赖性调节机制,我们研究了模式生物杜氏藻中编码多种叶绿素生物合成酶和Lhcb基因编码基因的表达调控。在所测试的叶绿素生物合成酶中,只有叶绿素a加氧酶(CAO)基因对辐照度的变化具有实质性的mRNA水平和与Lhcb基因相似的变化动力学。提出了通过辐照来快速(分钟级)调节CAO和Lhcb基因表达的胞质信号转导途径的操作的证据。抑制剂的研究和Ca2 + 依赖性激酶的瞬时激活表明,磷脂酶C激活了Ca2 + 的释放,并激活了该胞质信号转导途径中特定的Ca2 + / CaM依赖性蛋白激酶。质体醌库的氧化还原状态还可以在较慢的时间范围(小时)上调节CAO和Lhcb基因的表达,并且可能是质体起源的信号,与胞质信号转导途径协同作用。建议通过光合生物中两个不同的信号转导途径协调CAO和Lhcb基因表达,调节叶绿素天线尺寸的辐照度依赖性。

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