Institute of Plant Science and Resources, Okayama University, Kurashiki, Okayama, Japan.
Plant J. 2012 May;70(4):637-49. doi: 10.1111/j.1365-313X.2012.04904.x. Epub 2012 Feb 14.
Organellar DNAs in mitochondria and plastids are present in multiple copies and make up a substantial proportion of total cellular DNA despite their limited genetic capacity. We recently demonstrated that organellar DNA degradation occurs during pollen maturation, mediated by the Mg(2+) -dependent organelle exonuclease DPD1. To further understand organellar DNA degradation, we characterized a distinct mutant (dpd2). In contrast to the dpd1 mutant, which retains both plastid and mitochondrial DNAs, dpd2 showed specific accumulation of plastid DNAs. Multiple abnormalities in vegetative and reproductive tissues of dpd2 were also detected. DPD2 encodes the large subunit of ribonucleotide reductase, an enzyme that functions at the rate-limiting step of de novo nucleotide biosynthesis. We demonstrated that the defects in ribonucleotide reductase indirectly compromise the activity of DPD1 nuclease in plastids, thus supporting a different regulation of organellar DNA degradation in pollen. Several lines of evidence provided here reinforce our previous conclusion that the DPD1 exonuclease plays a central role in organellar DNA degradation, functioning in DNA salvage rather than maternal inheritance during pollen development.
线粒体和质体中的细胞器 DNA 以多个拷贝存在,尽管其遗传能力有限,但占细胞总 DNA 的很大一部分。我们最近证明,细胞器 DNA 降解发生在花粉成熟过程中,由 Mg2+依赖性细胞器外切核酸酶 DPD1 介导。为了进一步了解细胞器 DNA 降解,我们对一个不同的突变体(dpd2)进行了表征。与保留质体和线粒体 DNA 的 dpd1 突变体不同,dpd2 表现出质体 DNA 的特异性积累。还检测到 dpd2 营养和生殖组织中的多种异常。DPD2 编码核苷酸还原酶的大亚基,该酶在从头核苷酸生物合成的限速步骤中起作用。我们证明,核苷酸还原酶的缺陷间接损害了质体中 DPD1 核酸酶的活性,从而支持花粉中细胞器 DNA 降解的不同调控。这里提供的几条证据加强了我们之前的结论,即 DPD1 外切核酸酶在细胞器 DNA 降解中起核心作用,在花粉发育过程中,它在 DNA 挽救中起作用,而不是在母本遗传中起作用。