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小仓萝卜雄性不育细胞质中的线粒体DNA重排与转录改变

Mitochondrial DNA rearrangements and transcriptional alterations in the male-sterile cytoplasm of Ogura radish.

作者信息

Makaroff C A, Palmer J D

机构信息

Department of Biology, University of Michigan, Ann Arbor 48109.

出版信息

Mol Cell Biol. 1988 Apr;8(4):1474-80. doi: 10.1128/mcb.8.4.1474-1480.1988.

Abstract

Maternally inherited mutations, such as cytoplasmic male sterility, provide useful systems in which to study the function of plant mitochondrial genomes and also their interaction with nuclear genes. We have studied the organization and expression of the organelle genomes of the male-sterile cytoplasm of Ogura radish and compared them with those of normal radish to identify alterations that might be involved in cytoplasmic male sterility. The chloroplast DNAs of Ogura and normal radish are virtually indistinguishable, whereas their mitochondrial DNAs are highly rearranged. Alignment of a restriction map constructed for the 257-kilobase Ogura mitochondrial genome with that published for the 242-kilobase genome of normal radish reveals that the two mitochondrial DNAs differ in arrangement by at least 10 inversions. The transcriptional patterns of several known mitochondrial genes and of rearranged mitochondrial sequences were examined in three nuclear backgrounds. Altered transcripts were observed for three mitochondrial genes, atpA, atp6, and coxI. Rearrangements map near each of these genes and therefore may be responsible for their transcriptional alterations. Radish nuclear genes that restore fertility to the Ogura cytoplasm have no effect on the atp6 and coxI transcripts, but do influence the atpA transcriptional pattern.

摘要

母系遗传突变,如细胞质雄性不育,为研究植物线粒体基因组的功能及其与核基因的相互作用提供了有用的系统。我们研究了小仓萝卜雄性不育细胞质中细胞器基因组的组织和表达,并将其与正常萝卜的进行比较,以确定可能与细胞质雄性不育有关的变化。小仓萝卜和正常萝卜的叶绿体DNA几乎无法区分,而它们的线粒体DNA则高度重排。为257千碱基的小仓线粒体基因组构建的限制性图谱与已发表的242千碱基正常萝卜基因组的图谱比对显示,这两个线粒体DNA在排列上至少有10次倒位差异。在三种核背景下研究了几个已知线粒体基因和重排线粒体序列的转录模式。观察到三个线粒体基因atpA、atp6和coxI的转录本发生了改变。重排在这些基因的每一个附近定位,因此可能是它们转录改变的原因。恢复小仓细胞质育性的萝卜核基因对atp6和coxI转录本没有影响,但确实影响atpA的转录模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/374a/363305/48526ae83312/molcellb00064-0103-a.jpg

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