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植物自交不亲和系统:分子进化视角

Plant self-incompatibility systems: a molecular evolutionary perspective.

作者信息

Charlesworth Deborah, Vekemans Xavier, Castric Vincent, Glémin Sylvain

机构信息

Institute of Evolutionary Biology, School of Biological Sciences, University of Edinburgh, Ashworth Laboratory, King's Buildings, Edinburgh EH9 3JT, UK.

出版信息

New Phytol. 2005 Oct;168(1):61-9. doi: 10.1111/j.1469-8137.2005.01443.x.

Abstract

Incompatibility recognition systems preventing self-fertilization have evolved several times in independent lineages of Angiosperm plants, and three main model systems are well characterized at the molecular level [the gametophytic self-incompatibility (SI) systems of Solanaceae, Rosaceae and Anthirrhinum, the very different system of poppy, and the system in Brassicaceae with sporophytic control of pollen SI reactions]. In two of these systems, the genes encoding both components of pollen-pistil recognition are now known, showing clearly that these two proteins are distinct, that is, SI is a lock-and-key mechanism. Here, we review recent findings in the three well-studied systems in the light of these results and analyse their implications for understanding polymorphism and coevolution of the two SI genes, in the context of a tightly linked genome region.

摘要

防止自花授粉的不亲和识别系统在被子植物的独立谱系中已经进化了好几次,并且在分子水平上有三个主要的模型系统得到了很好的表征[茄科、蔷薇科和金鱼草的配子体自交不亲和(SI)系统,罂粟的非常不同的系统,以及十字花科中对花粉SI反应进行孢子体控制的系统]。在其中两个系统中,现在已经知道编码花粉-雌蕊识别两个成分的基因,清楚地表明这两种蛋白质是不同的,也就是说,SI是一种锁钥机制。在这里,我们根据这些结果回顾了这三个经过充分研究的系统中的最新发现,并分析了它们在紧密连锁的基因组区域背景下对于理解两个SI基因的多态性和共同进化的意义。

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