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短文变长:雌雄异位花柱现象分子基础的最新研究进展。

A short story gets longer: recent insights into the molecular basis of heterostyly.

机构信息

Institute for Biochemistry and Biology, University of Potsdam, Germany.

出版信息

J Exp Bot. 2017 Dec 16;68(21-22):5719-5730. doi: 10.1093/jxb/erx387.

Abstract

Heterostyly is a fascinating adaptation to promote outbreeding and a classical paradigm of botany. In the most common type of heterostyly, plants either form flowers with long styles and short stamens, or short styles and long stamens. This reciprocal organ positioning reduces pollen wastage and promotes cross-pollination, thus increasing male fitness. In addition, in many heterostylous species selfing and the generation of unfit progeny due to inbreeding depression is limited by a self-incompatibility system, thus promoting female fitness. The two floral forms are genetically determined by the S locus as a complex supergene, namely a chromosomal region containing several individual genes that control the different traits, such as style or stamen length, and are held together by very tight linkage due to suppressed recombination. Recent molecular-genetic studies in several systems, including Turnera, Fagopyrum, Linum, and Primula have begun to identify and characterize the causal heterostyly genes residing at the S locus. An emerging theme from several families is that the dominant S haplotype represents a hemizygous region not present on the recessive s haplotype. This provides an explanation for the suppressed recombination and suggests a scenario for the chromosomal evolution of the S locus. In this review, we discuss the results from recent molecular-genetic analyses in light of the classical models on the genetics and evolution of heterostyly.

摘要

异型花柱是一种促进异交和植物学经典范例的迷人适应。在最常见的异型花柱类型中,植物要么形成长花柱和短雄蕊的花,要么形成短花柱和长雄蕊的花。这种相互的器官定位减少了花粉浪费,促进了异花授粉,从而提高了雄性适合度。此外,在许多异型花柱物种中,自交和由于近交衰退而产生的不适后代受到自交不亲和系统的限制,从而促进了雌性适合度。两种花型是由 S 基因座作为复杂的超基因决定的,即一个包含控制不同性状(如花柱或雄蕊长度)的几个个体基因的染色体区域,由于抑制重组而紧密连锁在一起。Turnera、Fagopyrum、Linum 和 Primula 等几个系统的最近分子遗传学研究已经开始鉴定和描述位于 S 基因座的因果异型花柱基因。几个家族的一个新兴主题是,显性 S 单倍型代表一个半合区域,不存在于隐性 s 单倍型上。这为抑制重组提供了一个解释,并为 S 基因座的染色体进化提供了一个情景。在这篇综述中,我们根据异型花柱遗传和进化的经典模型,讨论了最近分子遗传学分析的结果。

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