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花粉选择系统将十字花科植物的自交不亲和性和种间不亲和性联系起来。

A pollen selection system links self and interspecific incompatibility in the Brassicaceae.

机构信息

State Key Laboratory of Nutrient Use and Management, Department of Ecology, College of Resources and Environmental Sciences, China Agricultural University, Beijing, China.

State Key Laboratory of Cotton Biology, School of Life Sciences, Henan University, Kaifeng, China.

出版信息

Nat Ecol Evol. 2024 Jun;8(6):1129-1139. doi: 10.1038/s41559-024-02399-4. Epub 2024 Apr 18.

Abstract

Self-incompatibility and recurrent transitions to self-compatibility have shaped the extant mating systems underlying the nonrandom mating critical for speciation in angiosperms. Linkage between self-incompatibility and speciation is illustrated by the shared pollen rejection pathway between self-incompatibility and interspecific unilateral incompatibility (UI) in the Brassicaceae. However, the pollen discrimination system that activates this shared pathway for heterospecific pollen rejection remains unknown. Here we show that Stigma UI3.1, the genetically identified stigma determinant of UI in Arabidopsis lyrata × Arabidopsis arenosa crosses, encodes the S-locus-related glycoprotein 1 (SLR1). Heterologous expression of A. lyrata or Capsella grandiflora SLR1 confers on some Arabidopsis thaliana accessions the ability to discriminate against heterospecific pollen. Acquisition of this ability also requires a functional S-locus receptor kinase (SRK), whose ligand-induced dimerization activates the self-pollen rejection pathway in the stigma. SLR1 interacts with SRK and interferes with SRK homomer formation. We propose a pollen discrimination system based on competition between basal or ligand-induced SLR1-SRK and SRK-SRK complex formation. The resulting SRK homomer levels would be sensed by the common pollen rejection pathway, allowing discrimination among conspecific self- and cross-pollen as well as heterospecific pollen. Our results establish a mechanistic link at the pollen recognition phase between self-incompatibility and interspecific incompatibility.

摘要

自交不亲和性和反复向自交亲和性的转变塑造了现存的交配系统,这些交配系统对有花植物的物种形成至关重要。自交不亲和性和物种形成之间的联系体现在十字花科植物的自交不亲和性和种间单向不亲和性(UI)之间共享的花粉排斥途径上。然而,激活这种用于异种种间花粉排斥的共享途径的花粉识别系统仍然未知。在这里,我们表明,拟南芥×拟南芥杂种中的 UI 柱头决定因素 Stigma UI3.1 编码 S 位点相关糖蛋白 1(SLR1)。拟南芥或雀舌草 SLR1 的异源表达赋予一些拟南芥品系识别异种种子花粉的能力。获得这种能力还需要功能性 S 位点受体激酶(SRK),其配体诱导的二聚化在柱头中激活自花粉排斥途径。SLR1 与 SRK 相互作用,并干扰 SRK 同型二聚体的形成。我们提出了一个基于 SLR1-SRK 和 SRK-SRK 复合物形成之间竞争的花粉识别系统。常见的花粉排斥途径将感知到由此产生的 SRK 同型二聚体水平,从而允许区分同种自交和杂交花粉以及异种种子花粉。我们的结果在花粉识别阶段建立了自交不亲和性和种间不亲和性之间的机制联系。

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