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Induced Deactivation of Genes Encoding Chlorophyll Biosynthesis Enzymes Disentangles Tetrapyrrole-Mediated Retrograde Signaling

机译:诱导的编码叶绿素生物合成酶基因的失活解离四吡咯介导的逆行信号。

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In photosynthetic organisms, tetrapyrrole-mediated retrograde signals are proposed to contribute to a balanced nuclear gene expression (NGE) in response to metabolic activity in chloroplasts. We followed an experimental short-term approach that allowed the assessment of modified NGE during the first hours of specifically modified enzymatic steps of the Mg branch of tetrapyrrole biosynthesis, when pleiotropic effects of other signals can be avoided. In response to 24-h-induced silencing of CHLH, CHLM, and CHL27 encoding the CHLH subunit of Mg chelatase, the Mg protoporphyrin methyltransferase and Mg protoporphyrin monomethylester cyclase, respectively, deactivated gene expression rapidly led to reduced activity of the corresponding enzymes and altered Mg porphyrin levels. But NGE was not substantially altered. When these three genes were continuously inactivated for up to 4 d, changes of transcript levels of nuclear genes were determined. CHL27 silencing for more than 24 h results in necrotic leaf lesions and modulated transcript levels of oxidative stress-responsive and photosynthesis-associated nuclear genes (PhANGs). The prolonged deactivation of CHLH and CHLM results in slightly elevated transcript levels of PhANGs and tetrapyrrole-associated genes. These time-resolved studies indicate a complex scenario for the contribution of tetrapyrrole biosynthesis on NGE mediated by O-1(2)-induced signaling and feedback-regulated ALA synthesis.
机译:在光合生物中,提出了四吡咯介导的逆行信号,以响应叶绿体中的代谢活性而促进平衡的核基因表达(NGE)。我们遵循一种实验性的短期方法,该方法可以在避免其他信号的多效性的情况下,在四吡咯生物合成的Mg分支的特定修饰的酶促步骤的最初几个小时内评估修饰的NGE。响应于24小时诱导的CHLH,CHLM和CHL27编码Mg螯合酶CHLH亚基的沉默,Mg原卟啉甲基转移酶和Mg原卟啉单甲酯环化酶会失活的基因表达迅速导致相应酶的活性降低并改变镁卟啉水平。但是NGE并没有实质性的改变。当这三个基因连续失活长达4天时,就确定了核基因转录水平的变化。 CHL27沉默超过24小时会导致坏死的叶损伤和氧化应激反应和光合作用相关核基因(PhANGs)转录水平的调节。 CHLH和CHLM的长期失活导致PhANGs和四吡咯相关基因的转录水平略有升高。这些时间分辨的研究表明,四吡咯生物合成对由O-1(2)诱导的信号传导和反馈调节的ALA合成介导的NGE的贡献的复杂情况。

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