Department of Biology, University of Virginia, Charlottesville, VA, 22904, USA.
Institute of Experimental Botany, Academy of Sciences of the Czech Republic, Prague, Lysolaje, 16502, Czech Republic.
New Phytol. 2012 Dec;196(4):1228-1239. doi: 10.1111/j.1469-8137.2012.04340.x. Epub 2012 Sep 26.
In angiosperms, mitochondrial-encoded genes can cause cytoplasmic male sterility (CMS), resulting in the coexistence of female and hermaphroditic individuals (gynodioecy). We compared four complete mitochondrial genomes from the gynodioecious species Silene vulgaris and found unprecedented amounts of intraspecific diversity for plant mitochondrial DNA (mtDNA). Remarkably, only about half of overall sequence content is shared between any pair of genomes. The four mtDNAs range in size from 361 to 429 kb and differ in gene complement, with rpl5 and rps13 being intact in some genomes but absent or pseudogenized in others. The genomes exhibit essentially no conservation of synteny and are highly repetitive, with evidence of reciprocal recombination occurring even across short repeats (< 250 bp). Some mitochondrial genes exhibit atypically high degrees of nucleotide polymorphism, while others are invariant. The genomes also contain a variable number of small autonomously mapping chromosomes, which have only recently been identified in angiosperm mtDNA. Southern blot analysis of one of these chromosomes indicated a complex in vivo structure consisting of both monomeric circles and multimeric forms. We conclude that S. vulgaris harbors an unusually large degree of variation in mtDNA sequence and structure and discuss the extent to which this variation might be related to CMS.
在被子植物中,线粒体编码基因可导致细胞质雄性不育(CMS),从而导致雌性和雌雄同体个体共存(雌雄异株)。我们比较了雌雄异株物种普通矢车菊的四个完整线粒体基因组,发现植物线粒体 DNA(mtDNA)的种内多样性前所未有。值得注意的是,任何两个基因组之间只有大约一半的总序列内容是共享的。这四个 mtDNA 的大小从 361 到 429 kb 不等,在基因组成上有所不同,一些基因组中 rpl5 和 rps13 完整,而另一些基因组中则缺失或假基因化。基因组几乎没有表现出同线性的保守性,高度重复,甚至在短重复(<250 bp)之间也有证据表明发生了相互重组。一些线粒体基因表现出异常高的核苷酸多态性,而另一些则不变。基因组还包含数量可变的小自主映射染色体,这些染色体最近才在被子植物 mtDNA 中被发现。对其中一条染色体的 Southern 印迹分析表明,它具有单体环和多聚体形式的复杂体内结构。我们得出结论,普通矢车菊的 mtDNA 序列和结构存在异常大的变异程度,并讨论了这种变异与 CMS 的关系。