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第一类内含子对植物线粒体的爆发式入侵

Explosive invasion of plant mitochondria by a group I intron.

作者信息

Cho Y, Qiu Y L, Kuhlman P, Palmer J D

机构信息

Department of Biology, Indiana University, Bloomington, IN 47405, USA.

出版信息

Proc Natl Acad Sci U S A. 1998 Nov 24;95(24):14244-9. doi: 10.1073/pnas.95.24.14244.

Abstract

Group I introns are mobile, self-splicing genetic elements found principally in organellar genomes and nuclear rRNA genes. The only group I intron known from mitochondrial genomes of vascular plants is located in the cox1 gene of Peperomia, where it is thought to have been recently acquired by lateral transfer from a fungal donor. Southern-blot surveys of 335 diverse genera of land plants now show that this intron is in fact widespread among angiosperm cox1 genes, but with an exceptionally patchy phylogenetic distribution. Four lines of evidence-the intron's highly disjunct distribution, many incongruencies between intron and organismal phylogenies, and two sources of evidence from exonic coconversion tracts-lead us to conclude that the 48 angiosperm genera found to contain this cox1 intron acquired it by 32 separate horizontal transfer events. Extrapolating to the over 13,500 genera of angiosperms, we estimate that this intron has invaded cox1 genes by cross-species horizontal transfer over 1,000 times during angiosperm evolution. This massive wave of lateral transfers is of entirely recent occurrence, perhaps triggered by some key shift in the intron's invasiveness within angiosperms.

摘要

I 组内含子是一类可移动的、自我剪接的遗传元件,主要存在于细胞器基因组和核 rRNA 基因中。维管植物线粒体基因组中已知的唯一 I 组内含子位于豆瓣绿属植物的 cox1 基因中,据推测它是近期通过横向转移从真菌供体获得的。对 335 个不同陆生植物属的 Southern 杂交调查表明,实际上这个内含子在被子植物的 cox1 基因中广泛存在,但在系统发育分布上异常零散。四条证据线——内含子高度分散的分布、内含子与生物系统发育之间的许多不一致性,以及来自外显子共转换区域的两个证据来源——使我们得出结论,发现含有这个 cox1 内含子的 48 个被子植物属是通过 32 次独立的水平转移事件获得它的。推断到超过 13500 个被子植物属,我们估计在被子植物进化过程中,这个内含子通过跨物种水平转移侵入 cox1 基因超过 1000 次。这种大规模的横向转移浪潮是最近才发生的,可能是由该内含子在被子植物中的侵入性发生的一些关键转变引发的。

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Explosive invasion of plant mitochondria by a group I intron.第一类内含子对植物线粒体的爆发式入侵
Proc Natl Acad Sci U S A. 1998 Nov 24;95(24):14244-9. doi: 10.1073/pnas.95.24.14244.

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