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转录的着丝粒基因 OsMRPL15 对水稻花粉发育是必需的。

The transcribed centromeric gene OsMRPL15 is essential for pollen development in rice.

机构信息

College of Agriculture, South China Agricultural University, Guangzhou 510642, China.

State Key Laboratory of Plant Genomics, Institute of Genetics and Developmental Biology, Innovation Academy for Seed Design, Chinese Academy of Sciences, Beijing 100101, China.

出版信息

Plant Physiol. 2023 May 31;192(2):1063-1079. doi: 10.1093/plphys/kiad153.

Abstract

Centromeres consist of highly repetitive sequences that are challenging to map, clone, and sequence. Active genes exist in centromeric regions, but their biological functions are difficult to explore owing to extreme suppression of recombination in these regions. In this study, we used the CRISPR/Cas9 system to knock out the transcribed gene Mitochondrial Ribosomal Protein L15 (OsMRPL15), located in the centromeric region of rice (Oryza sativa) chromosome 8, resulting in gametophyte sterility. Osmrpl15 pollen was completely sterile, with abnormalities appearing at the tricellular stage including the absence of starch granules and disrupted mitochondrial structure. Loss of OsMRPL15 caused abnormal accumulation of mitoribosomal proteins and large subunit rRNA in pollen mitochondria. Moreover, the biosynthesis of several proteins in mitochondria was defective, and expression of mitochondrial genes was upregulated at the mRNA level. Osmrpl15 pollen contained smaller amounts of intermediates related to starch metabolism than wild-type pollen, while biosynthesis of several amino acids was upregulated, possibly to compensate for defective mitochondrial protein biosynthesis and initiate consumption of carbohydrates necessary for starch biosynthesis. These results provide further insight into how defects in mitoribosome development cause gametophyte male sterility.

摘要

着丝粒由高度重复的序列组成,这些序列难以进行定位、克隆和测序。活性基因存在于着丝粒区域,但由于这些区域重组受到极端抑制,其生物学功能难以探究。在这项研究中,我们使用 CRISPR/Cas9 系统敲除了位于水稻(Oryza sativa)第 8 号染色体着丝粒区域的转录基因 Mitochondrial Ribosomal Protein L15(OsMRPL15),导致配子体不育。Osmrpl15 花粉完全不育,在三细胞阶段出现异常,包括缺乏淀粉粒和线粒体结构破坏。OsMRPL15 的缺失导致花粉线粒体中 mitoribosomal 蛋白和大亚基 rRNA 异常积累。此外,线粒体中几种蛋白质的生物合成存在缺陷,线粒体基因的表达在 mRNA 水平上调。Osmrpl15 花粉中与淀粉代谢相关的中间产物含量低于野生型花粉,而几种氨基酸的生物合成上调,可能是为了补偿线粒体蛋白生物合成的缺陷,并启动对淀粉生物合成所需碳水化合物的消耗。这些结果进一步阐明了 mitoribosome 发育缺陷如何导致配子体雄性不育。

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