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Extensive and widespread homologies between mitochondrial DNA and chloroplast DNA in plants

机译:植物线粒体DNA与叶绿体DNA之间广泛广泛的同源性

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摘要

We used hybridization techniques to demonstrate that numerous sequence homologies exist between cloned mung bean and spinach chloroplast DNA (ctDNA) restriction fragments and mtDNAs from corn, mung bean, spinach, and pea. The strongest cross-homologies are between clones derived from the ctDNA inverted repeat and mtDNA from corn and pea, although all the ctDNA clones tested hybridized to at least one mtDNA restriction fragment. Known chloroplast genes showing strong mtDNA homologies include those for the large subunit of ribulosebisphosphate carboxylase, which hybridizes to corn mtDNA, and the β subunit of the chloroplast ATPase, which hybridizes to mung bean mtDNA. Certain of these homologies were confirmed by using cloned spinach mtDNA restriction fragments as probes in reciprocal hybridizations to ctDNA. Several of these ctDNA-homologous mtDNA sequences were shown to be much more closely related to ctDNA from the same species than to that of a distantly related species. We interpret these differential homologies as evidence for relatively recent DNA sequence transfer events, suggesting that transpostion between the two genomes is an ongoing evolutionary process.
机译:我们使用杂交技术证明克隆的绿豆和菠菜叶绿体DNA(ctDNA)限制片段与玉米,绿豆,菠菜和豌豆的mtDNA之间存在许多序列同源性。尽管所有测试的ctDNA克隆都与至少一个mtDNA限制性片段杂交,但最强的交叉同源性是在ctDNA反向重复序列的克隆与玉米和豌豆的mtDNA之间。表现出强mtDNA同源性的已知叶绿体基因包括与玉米mtDNA杂交的核糖二磷酸羧化酶大亚基的基因,以及与绿豆mtDNA杂交的叶绿体ATPase的β亚基的基因。通过使用克隆的菠菜mtDNA限制性片段作为与ctDNA相互杂交的探针,证实了其中的某些同源性。已显示这些ctDNA同源mtDNA序列中的几个与同一物种的ctDNA的关系远比远缘物种的ctDNA紧密。我们将这些不同的同源性解释为相对较新的DNA序列转移事件的证据,表明两个基因组之间的转位是一个持续的进化过程。

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