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Rice TSV3 Encoding Obg-Like GTPase Protein Is Essential for Chloroplast Development During the Early Leaf Stage Under Cold Stress

机译:水稻TSV3编码Obg样GTP酶蛋白对冷胁迫下叶片早期叶绿体发育至关重要

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摘要

The Spo0B-associated GTP-binding (Obg) proteins are essential for the viability of nearly all bacteria. However, the detailed roles of Obg proteins in higher plants have not yet been elucidated. In this study, we identified a novel rice (Oryza sativa L.) thermo-sensitive virescent mutant (tsv3) that displayed an albino phenotype at 20° before the three-leaf stage while being a normal green at 32° or even at 20° after the four-leaf stage. The mutant phenotype was consistent with altered chlorophyll content and chloroplast structure in leaves. Map-based cloning and complementation experiments showed that TSV3 encoded a small GTP-binding protein. Subcellular localization studies revealed that TSV3 was localized to the chloroplasts. Expression of TSV3 was high in leaves and weak or undetectable in other tissues, suggesting a tissue-specific expression of TSV3. In the tsv3 mutant, expression levels of genes associated with the biogenesis of the chloroplast ribosome 50S subunit were severely decreased at the three-leaf stage under cold stress (20°), but could be recovered to normal levels at a higher temperature (32°). These observations suggest that the rice nuclear-encoded TSV3 plays important roles in chloroplast development at the early leaf stage under cold stress.
机译:与Spo0B相关的GTP结合(Obg)蛋白对于几乎所有细菌的生存能力都是必不可少的。但是,Obg蛋白在高等植物中的详细作用尚未阐明。在这项研究中,我们确定了一种新型水稻(Oryza sativa L.)热敏绿色突变体(tsv3),该突变体在三叶期之前的20°处显示出白化病表型,而在32°甚至20°时为正常绿色。在四叶阶段之后。突变表型与叶片中叶绿素含量和叶绿体结构的改变一致。基于图的克隆和互补实验表明,TSV3编码一个小的GTP结合蛋白。亚细胞定位研究表明,TSV3位于叶绿体中。 TSV3在叶片中的表达较高,在其他组织中则较弱或无法检测到,表明TSV3的组织特异性表达。在tsv3突变体中,与叶绿体核糖体50S亚基的生物发生有关的基因的表达水平在三叶阶段在冷胁迫(20°)下严重降低,但在较高温度(32°C)下可以恢复到正常水平。 )。这些观察结果表明,在寒冷胁迫下,水稻核编码的TSV3在叶片早期叶绿体发育中起重要作用。

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