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线粒体nad7基因最后两个外显子的缺失导致野生烟草CMS突变体中缺乏NAD7多肽。

Deletion of the last two exons of the mitochondrial nad7 gene results in lack of the NAD7 polypeptide in a Nicotiana sylvestris CMS mutant.

作者信息

Pla M, Mathieu C, De Paepe R, Chétrit P, Vedel F

机构信息

Institut de Biotechnologie des Plantes, URA 1128 CNRS, Université Pais-sud, Orsay, France.

出版信息

Mol Gen Genet. 1995 Jul 22;248(1):79-88. doi: 10.1007/BF02456616.

Abstract

In Nicotiana sylvestris, two cytoplasmic male sterile (CMS) mutants obtained by protoplast culture show abnormal developmental features of both vegetative and reproductive organs, and mitochondrial gene reorganization following homologous recombination between 65 bp repeated sequences. A mitochondrial region of 16.2 kb deleted from both CMS mutants was found to contain the last two exons of the nad7 gene coding for a subunit of the mitochondrial respiratory chain complex I, which is encoded in the nucleus in fungi and animals but was recently found to be encoded by the mitochondrial genome in wheat. Although the N. sylvestris nad7 gene shows strong homology with its wheat counterpart, it contains only three introns instead of four. Polymerase chain reaction (PCR) experiments indicated that the parental gene organization, including the complete nad7 gene, is probably maintained at a substoichiometric level in the CMS mutants, but this proportion is too low to have a significant physiological role, as confirmed by expression studies showing the lack of detectable amounts of the NAD7 polypeptide. Consequently, absence of NAD7 is not lethal to plant cells but a deficiency of complex I could be involved in the abnormal CMS phenotype.

摘要

在野生烟草中,通过原生质体培养获得的两个细胞质雄性不育(CMS)突变体表现出营养器官和生殖器官的异常发育特征,以及65 bp重复序列之间同源重组后的线粒体基因重组。从两个CMS突变体中缺失的一个16.2 kb的线粒体区域被发现包含编码线粒体呼吸链复合体I一个亚基的nad7基因的最后两个外显子,该基因在真菌和动物中由细胞核编码,但最近发现它在小麦中由线粒体基因组编码。尽管野生烟草的nad7基因与其小麦对应基因具有很强的同源性,但它只包含三个内含子而非四个。聚合酶链反应(PCR)实验表明,包括完整nad7基因在内的亲本基因结构可能在CMS突变体中以亚化学计量水平维持,但这一比例过低,无法发挥显著的生理作用,表达研究显示缺乏可检测量的NAD7多肽也证实了这一点。因此,NAD7的缺失对植物细胞并非致命,但复合体I的缺陷可能与异常的CMS表型有关。

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