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首页> 外文期刊>BMC Plant Biology >A rice mTERF protein V14 sustains photosynthesis establishment and temperature acclimation in early seedling leaves
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A rice mTERF protein V14 sustains photosynthesis establishment and temperature acclimation in early seedling leaves

机译:水稻MTERF蛋白V14在早期幼苗叶片中维持光合作用建立和温度适应

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摘要

Plant mitochondrial transcription termination factor (mTERF) family members play important roles in development and stress tolerance through regulation of organellar gene expression. However, their molecular functions have yet to be clearly defined. Here an mTERF gene V14 was identified by fine mapping using a conditional albino mutant v14 that displayed albinism only in the first two true leaves, which was confirmed by transgenic complementation tests. Subcellular localization and real-time PCR analyses indicated that V14 encodes a chloroplastic protein ubiquitously expressed in leaves while spiking in the second true leaf. Chloroplastic gene expression profiling in the pale leaves of v14 through real-time PCR and Northern blotting analyses showed abnormal accumulation of the unprocessed transcripts covering the rpoB-rpoC1 and/or rpoC1-rpoC2 intercistronic regions accompanied by reduced abundance of the mature rpoC1 and rpoC2 transcripts, which encode two core subunits of the plastid-encoded plastid RNA polymerase (PEP). Subsequent immunoblotting analyses confirmed the reduced accumulation of RpoC1 and RpoC2. A light-inducible photosynthetic gene psbD was also found down-regulated at both the mRNA and protein levels. Interestingly, such stage-specific aberrant posttranscriptional regulation and psbD expression can be reversed by high temperatures (30?~?35?°C), although V14 expression lacks thermo-sensitivity. Meanwhile, three V14 homologous genes were found heat-inducible with similar temporal expression patterns, implicating their possible functional redundancy to V14. These data revealed a critical role of V14 in chloroplast development, which impacts, in a stage-specific and thermo-sensitive way, the appropriate processing of rpoB-rpoC1-rpoC2 precursors and the expression of certain photosynthetic proteins. Our findings thus expand the knowledge of the molecular functions of rice mTERFs and suggest the contributions of plant mTERFs to photosynthesis establishment and temperature acclimation.
机译:植物线粒体转录终止因子(MTERF)家族成员通过调节细胞细胞基因表达来发挥重要作用和应力耐受性。但是,它们的分子功能尚未明确定义。这里,使用仅在前两个真实叶片中展示白化病症的条件白化突变体V14,通过细微映射来鉴定MTERF基因V14。亚细胞定位和实时PCR分析表明V14编码普遍地以叶子表达的氯塑料蛋白,同时在第二真叶中尖峰。通过实时PCR和Northern印迹分析在V14的浅叶中叶片基因表达分析显示出覆盖RPOB-RPOC1和/或RPOC1-RPOC2校长区域的未加工转录物的异常积累,伴随着成熟RPOC1和RPOC2转录物的丰度降低,编码体积编码的塑性RNA聚合酶(PEP)的两种核心亚基。随后的免疫印迹分析证实了RPOC1和RPOC2的减少。在mRNA和蛋白质水平的情况下也发现光诱导的光合基因PSBD。有趣的是,这种特异性特异性的异常前术治疗和PSBD表达可以通过高温(30?〜35℃)反转,尽管V14表达缺乏热敏性。同时,发现三个V14同源基因具有相似的时间表达模式,暗示其可能的功能冗余至V14。这些数据揭示了V14在叶绿体的发展中的关键作用,以阶段特异性和热敏的方式影响RPOB-RPOC1-RPOC2前体的适当加工和某些光合蛋白的表达。我们的研究结果拓展了水稻MTERFS分子功能的知识,并提出了植物MTERF对光合作用建立和温度适应的贡献。

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