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花粉管在 S-RNase 型自交不亲和性中面临生死抉择。

'A life or death decision' for pollen tubes in S-RNase-based self-incompatibility.

机构信息

Institute of Genetics and Developmental Biology, Chinese Academy of Sciences and National Center for Plant Gene Research, Beijing 100101, China.

出版信息

J Exp Bot. 2010 Apr;61(7):2027-37. doi: 10.1093/jxb/erp381. Epub 2009 Dec 30.

Abstract

Mate choice is an essential process during sexual plant reproduction, in which self-incompatibility (SI) is widely adopted as an intraspecific reproductive barrier to inhibit self-fertilization by many flowering plants. Genetic studies show that a single polymorphic S-locus, encoding at least two components from both the pollen and pistil sides, controls the discrimination of self and non-self pollen. In the Solanaceae, Plantaginaceae, and Rosaceae, an S-RNase-based SI mechanism is involved in such a discrimination process. Recent studies have provided some important clues to how a decision is made to accept cross pollen or specifically to reject self pollen. In this review, the molecular features of the pistil and pollen S-specificity factors are briefly summarized and then our current knowledge of the molecular control of cross-pollen compatibility (CPC) and self-pollen incompatibility (SPI) responses, respectively, is presented. The possible biochemical mechanisms of the specificity determinant between the pistil and pollen S factors are discussed and a hypothetical S-RNase endosome sorting model is proposed to illustrate the distinct destinies of pollen tubes following compatible and incompatible pollination.

摘要

交配选择是有性植物繁殖过程中的一个重要环节,其中自交不亲和性(SI)被广泛用作一种种内生殖障碍,以抑制许多开花植物的自受精。遗传研究表明,单一的多态性 S 基因座,编码来自花粉和柱头两侧的至少两个成分,控制着自我和非自我花粉的区分。在茄科、车前科和蔷薇科中,基于 S-RNase 的 SI 机制参与了这种区分过程。最近的研究为如何做出接受异交花粉或特异性拒绝自交花粉的决定提供了一些重要线索。在这篇综述中,简要总结了柱头和花粉 S 特异性因子的分子特征,然后分别介绍了我们目前对异交花粉亲和性(CPC)和自交花粉不亲和性(SPI)反应的分子控制的认识。讨论了柱头和花粉 S 因子之间特异性决定因素的可能生化机制,并提出了一个假设的 S-RNase 内体分选模型,来说明亲和和不亲和授粉后花粉管的不同命运。

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