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水稻中的一个幼苗条纹2表型是由叶绿体生物发生所需的叶绿体定位核苷二磷酸激酶2的突变引起的。

A Young Seedling Stripe2 phenotype in rice is caused by mutation of a chloroplast-localized nucleoside diphosphate kinase 2 required for chloroplast biogenesis.

作者信息

Zhou Kunneng, Xia Jiafa, Wang Yuanlei, Ma Tingchen, Li Zefu

机构信息

Key laboratory of Rice Genetics and Breeding, Rice Research Institute, Anhui Academy of Agricultural Sciences, Hefei, P.R. China.

出版信息

Genet Mol Biol. 2017 Jul-Sep;40(3):630-642. doi: 10.1590/1678-4685-GMB-2016-0267. Epub 2017 Aug 31.

Abstract

Chloroplast development and chlorophyll (Chl) biosynthesis in plants are regulated by many genes, but the underlying molecular mechanisms remain largely elusive. We isolated a rice mutant named yss2 (young seedling stripe2) with a striated seedling phenotype beginning from leaf 2 of delayed plant growth. The mutant developed normal green leaves from leaf 5, but reduced tillering and chlorotic leaves and panicles appeared later. Chlorotic yss2 seedlings have decreased pigment contents and impaired chloroplast development. Genetic analysis showed that the mutant phenotype was due to a single recessive gene. Positional cloning and sequence analysis identified a single nucleotide substitution in YSS2 gene causing an amino acid change from Gly to Asp. The YSS2 allele encodes a NDPK2 (nucleoside diphosphate kinase 2) protein showing high similarity to other types of NDPKs. Real-time RT-PCR analysis demonstrated that YSS2 transcripts accumulated highly in L4 sections at the early leaf development stage. Expression levels of genes associated with Chl biosynthesis and photosynthesis in yss2 were mostly decreased, but genes involved in chloroplast biogenesis were up-regulated compared to the wild type. The YSS2 protein was associated with punctate structures in the chloroplasts of rice protoplasts. Our overall data suggest that YSS2 has important roles in chloroplast biogenesis.

摘要

植物中叶绿体的发育和叶绿素(Chl)的生物合成受许多基因调控,但其潜在的分子机制仍大多未知。我们分离出一个名为yss2(幼嫩幼苗条纹2)的水稻突变体,其幼苗从第2片叶开始出现条纹状表型,植株生长延迟。该突变体从第5片叶开始发育出正常的绿叶,但分蘖减少,后期出现黄化叶和穗。黄化的yss2幼苗色素含量降低,叶绿体发育受损。遗传分析表明,该突变体表型由单个隐性基因所致。通过定位克隆和序列分析,在YSS2基因中鉴定出一个单核苷酸替换,导致氨基酸从甘氨酸变为天冬氨酸。YSS2等位基因编码一种NDPK2(核苷二磷酸激酶2)蛋白,与其他类型的NDPK具有高度相似性。实时RT-PCR分析表明,YSS2转录本在叶片发育早期的L4节段中高度积累。与野生型相比,yss2中与Chl生物合成和光合作用相关的基因表达水平大多下降,但参与叶绿体生物发生的基因上调。YSS2蛋白与水稻原生质体叶绿体中的点状结构相关。我们的总体数据表明,YSS2在叶绿体生物发生中具有重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbe3/5596372/48b68339f209/1415-4757-gmb-1678-4685-GMB-2016-0267-gf01.jpg

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