Graduate School of Agricultural Science, Tohoku University , 1-1 Tsutsumidori-Amamiyamachi, Aoba, Sendai, Miyagi 981-8555 , Japan.
Department of Plant Biology, Cornell University , Ithaca, NY 14853 , USA.
Breed Sci. 2014 May;64(1):23-37. doi: 10.1270/jsbbs.64.23.
Most wild plants and some crops of the Brassicaceae express self-incompatibility, which is a mechanism that allows stigmas to recognize and discriminate against "self" pollen, thus preventing self-fertilization and inbreeding. Self-incompatibility in this family is controlled by a single S locus containing two multiallelic genes that encode the stigma-expressed S-locus receptor kinase and its pollen coat-localized ligand, the S-locus cysteine-rich protein. Physical interaction between receptor and ligand encoded in the same S locus activates the receptor and triggers a signaling cascade that results in inhibition of "self" pollen. Sequence information for many S-locus haplotypes in Brassica species has spurred studies of dominance relationships between S haplotypes and of S-locus structure, as well as the development of methods for S genotyping. Furthermore, molecular genetic studies have begun to identify genes that encode putative components of the self-incompatibility signaling pathway. In parallel, standard genetic analysis and QTL analysis of the poorly understood interspecific incompatibility phenomenon have been initiated to identify genes responsible for the inhibition of pollen from other species by the stigma. Herewith, we review recent studies of self-incompatibility and interspecific incompatibility, and we propose a model in which a universal pollen-inhibition pathway is shared by these two incompatibility systems.
大多数野生植物和一些十字花科作物表现出自交不亲和性,这是一种允许柱头识别和区分“自身”花粉的机制,从而防止自交和近亲繁殖。该家族中的自交不亲和性由单个 S 座控制,该座包含两个多等位基因,分别编码柱头表达的 S 座受体激酶及其花粉被膜定位的配体 S 座富含半胱氨酸的蛋白。在同一 S 座中编码的受体和配体的物理相互作用激活受体,并触发信号级联反应,导致“自身”花粉的抑制。许多 Brassica 物种 S 座单倍型的序列信息激发了对 S 座单倍型的显性关系以及 S 座结构的研究,以及 S 座基因型分析方法的发展。此外,分子遗传学研究已经开始识别编码自交不亲和信号通路假定成分的基因。与此同时,对理解较差的种间不亲和现象的标准遗传分析和 QTL 分析已经启动,以鉴定负责柱头抑制来自其他物种花粉的基因。在此,我们回顾了自交不亲和性和种间不亲和性的最新研究,并提出了一个模型,即这两个不亲和系统共享一个通用的花粉抑制途径。