Nuclear encoded elongation factor EF-Tu is required for chloroplast development in rice grown under low-temperature conditions

粳稻 生物 非同义代换 温带气候 粳稻 禾本科 稻属 植物 基因 水稻 遗传学 基因组
作者
Liang Cai,Zong-Kai Liu,Long Cai,Xiaofeng Yan,Yuan Hu,Benyuan Hao,Zhuang Xu,Yunlu Tian,Xi Liu,Linglong Liu,Ling Jiang,Shirong Zhou,Jianmin Wan
出处
期刊:Journal of Genetics and Genomics [Elsevier BV]
卷期号:49 (5): 502-505 被引量:11
标识
DOI:10.1016/j.jgg.2021.12.001
摘要

Chloroplasts are the organelles responsible for photosynthesis and regulate normal plant growth. Although translation elongation factors play important roles in chloroplast development, functional studies of chloroplast translation elongation factors in higher plants remain very sparse. Here, we obtained a rice mutant exhibiting seedling-lethal albino phenotype and named it albino and lethal seedling 1 (als1). Consistently, low content of photosynthetic pigments, malformed chloroplasts and defective photosynthesis were observed in als1 mutant leaves. Map-based cloning experiment showed that als1 mutant had a T base insertion in Os02g0595700, causing a frame shift and premature stop codon. ALS1 encoded a GTP-binding protein EF-Tu, which acts as a translation elongation factor in chloroplast protein translation. ALS1 was found to be expressed throughout plant with highest expression level in young leaves. Moreover, ALS1 was located in chloroplast, whereas the truncated als1 could not normally be located in chloroplast. Additionally, the ALS1 mutation significantly influenced the expression of downstream genes, such as genes relevant to chlorophyll biosynthesis, photosynthesis as well as chloroplast development. These results show that ALS1 acts as a key regulator of chloroplast development and plant growth.

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