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首页> 外文期刊>The Plant Cell >COPPER RESPONSE REGULATOR1-dependent and -independent responses of the Chlamydomonas reinhardtii transcriptome to dark anoxia.
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COPPER RESPONSE REGULATOR1-dependent and -independent responses of the Chlamydomonas reinhardtii transcriptome to dark anoxia.

机译:铜衣藻转录组对黑暗缺氧的铜依赖性反应调节剂的1依赖性和非依赖性反应。

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摘要

Anaerobiosis is a stress condition for aerobic organisms and requires extensive acclimation responses. We used RNA-Seq for a whole-genome view of the acclimation of Chlamydomonas reinhardtii to anoxic conditions imposed simultaneously with transfer to the dark. Nearly 1.4x103 genes were affected by hypoxia. Comparing transcript profiles from early (hypoxic) with those from late (anoxic) time points indicated that cells activate oxidative energy generation pathways before employing fermentation. Probable substrates include amino acids and fatty acids (FAs). Lipid profiling of the C. reinhardtii cells revealed that they degraded FAs but also accumulated triacylglycerols (TAGs). In contrast with N-deprived cells, the TAGs in hypoxic cells were enriched in desaturated FAs, suggesting a distinct pathway for TAG accumulation. To distinguish transcriptional responses dependent on COPPER RESPONSE REGULATOR1 (CRR1), which is also involved in hypoxic gene regulation, we compared the transcriptomes of crr1 mutants and complemented strains. In crr1 mutants, ~40 genes were aberrantly regulated, reaffirming the importance of CRR1 for the hypoxic response, but indicating also the contribution of additional signaling strategies to account for the remaining differentially regulated transcripts. Based on transcript patterns and previous results, we conclude that nitric oxide-dependent signaling cascades operate in anoxic C. reinhardtii cells.
机译:厌氧菌是有氧生物的应激条件,需要广泛的适应性反应。我们使用RNA-Seq对莱茵衣藻对适应转移到黑暗的同时施加的缺氧条件进行适应的全基因组视图。缺氧影响了近1.4x10 3 基因。比较来自早期(低氧)和晚期(缺氧)时间点的转录物谱,表明细胞在使用发酵之前会激活氧化能生成途径。可能的底物包括氨基酸和脂肪酸(FAs)。莱茵衣藻细胞的脂质谱分析显示它们降解了FAs,但也积累了三酰基甘油(TAGs)。与N剥夺的细胞相反,低氧细胞中的TAG富含去饱和FA,这表明TAG积累的独特途径。为了区分依赖于COPPER RESREGSE REGULATOR1(CRR1)的转录反应,该反应也参与了低氧基因的调控,我们比较了crr1突变体和互补菌株的转录组。在crr1突变体中,约40个基因被异常调节,重申了CRR1对于低氧反应的重要性,但也表明了其他信号转导策略对剩余的差异调节转录本的贡献。基于转录本模式和以前的结果,我们得出结论,一氧化氮依赖性信号传导级联在缺氧梭菌细胞中起作用。

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