Yang Jing-Hua, Huai Yan, Zhang Ming-Fang
Laboratory of Genetic Resources & Functional Improvement for Horticultural Plants, Department of Horticulture, Zhejiang University, Hangzhou 310029, P.R. China.
Mol Biol Rep. 2009 Feb;36(2):273-80. doi: 10.1007/s11033-007-9176-1. Epub 2007 Nov 17.
The purpose of this research is to identify the probable mitochondrial factor associated with cytoplasmic male sterility (cms) by comparative analysis of cms and its isogenic maintainer lines in stem mustards. Dramatic variations in the morphology of floral organs were observed in cms stem mustard. Mitochondrial atpA gene was shown to be altered in cms compared with that in its maintainer line, of which mitochondrial atpA gene from its maintainer line was sequenced to encode 507 amino acids. It was indicative of high homology with mitochondrial atpA genes from other species, even as high as 94% in similarity with Oryza sativa in terms of amino acid constituents. However, only 429 amino acids were deduced in cms showing 83% similarity with atpA gene from its maintainer line. Two copies were observed in its maintainer line, but only one was found in cms. Such numerous differences of mitochondrial atpA gene between cms and its maintainer lines may not be the results of evolutionary divergence but the rearrangements of mitochondria. Expression of mitochondrial atpA gene was shown to be down-regulated in cms by using Northern blot. Consequently, mitochondrial ATP synthesis was severely decreased more than one fold in cms stem mustard indicating deficiency in mitochondrial ATP synthesis in this type of cms. Therefore, we deduced that mitochondrial atpA gene altered in cms could be associated with male-sterility in this type of cms.
本研究的目的是通过对茎用芥菜细胞质雄性不育系(cms)及其同核保持系进行比较分析,确定与细胞质雄性不育相关的可能的线粒体因子。在cms茎用芥菜中观察到花器官形态的显著变化。与保持系相比,cms中线粒体atpA基因发生了改变,对其保持系的线粒体atpA基因进行测序,编码507个氨基酸。它与其他物种的线粒体atpA基因具有高度同源性,就氨基酸组成而言,与水稻的相似性高达94%。然而,cms中仅推导得出429个氨基酸,与保持系的atpA基因相似性为83%。在其保持系中观察到两个拷贝,但在cms中仅发现一个。cms与其保持系之间线粒体atpA基因的如此多差异可能不是进化分歧的结果,而是线粒体重排的结果。通过Northern杂交表明,cms中线粒体atpA基因的表达下调。因此,cms茎用芥菜中线粒体ATP合成严重降低了一倍以上,表明这种类型的cms中线粒体ATP合成存在缺陷。因此,我们推断cms中发生改变的线粒体atpA基因可能与这种类型的cms中的雄性不育有关。