首页> 美国卫生研究院文献>G3: GenesGenomesGenetics >Self-Incompatibility in Brassicaceae: Identification and Characterization of SRK-Like Sequences Linked to the S-Locus in the Tribe Biscutelleae
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Self-Incompatibility in Brassicaceae: Identification and Characterization of SRK-Like Sequences Linked to the S-Locus in the Tribe Biscutelleae

机译:十字花科的自交不亲和性:鉴定和Ss连锁的部落双文科的SRK样序列的表征。

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摘要

Self-incompatibility (SI) is a genetic system that prevents self-fertilization in many Angiosperms. Although plants from the Brassicaceae family present an apparently unique SI system that is ancestral to the family, investigations at the S-locus responsible for SI have been mostly limited to two distinct lineages (Brassica and Arabidopsis-Capsella, respectively). Here, we investigated SI in a third deep-branching lineage of Brassicaceae: the tribe Biscutelleae. By coupling sequencing of the SI gene responsible for pollen recognition (SRK) with phenotypic analyses based on controlled pollinations, we identified 20 SRK-like sequences functionally linked to 13 S-haplotypes in 21 individuals of Biscutella neustriaca and 220 seedlings. We found two genetic and phylogenetic features of SI in Biscutelleae that depart from patterns observed in the reference Arabidopsis clade: (1) SRK-like sequences cluster into two main phylogenetic lineages interspersed within the many SRK lineages of Arabidopsis; and (2) some SRK-like sequences are transmitted by linked pairs, suggesting local duplication within the S-locus. Strikingly, these features also were observed in the Brassica clade but probably evolved independently, as the two main SRK clusters in Biscutella are distinct from those in Brassica. In the light of our results and of what has been previously observed in other Brassicaceae, we discuss the ecological and evolutionary implications on SI plant populations of the high diversity and the complex dominance relationships we found at the S-locus in Biscutelleae.
机译:自交不亲和性(SI)是一种遗传系统,可阻止许多被子植物的自体受精。尽管来自十字花科的植物呈现出一个明显的独特的SI系统,该系统是该家族的祖先,但负责SI的S-基因座的研究主要限于两个不同的谱系(分别为芸苔属和拟南芥属-Capsella)。在这里,我们调查了十字花科的第三个深支谱系:双角ae科。通过基于可控授粉的表型分析,将负责花粉识别(SRK)的SI基因的测序结合起来,我们在21个中型Biscutella neustriaca和220株幼苗中鉴定了与13个S-单倍型功能连接的20个SRK样序列。我们在Biscutelleae中发现了SI的两个遗传和系统发育特征,这些特征与参考拟南芥进化枝中观察到的模式不同:(1)SRK样序列聚集成散布在许多拟南芥SRK谱系中的两个主要系统发育谱系; (2)一些类似SRK的序列是通过链接对传输的,这表明S-基因座内有局部重复。令人惊讶的是,在芸苔属进化枝中也观察到了这些特征,但可能是独立进化的,因为Biscutella中的两个主要SRK簇与芸苔属中的两个SRK簇不同。根据我们的研究结果以及先前在其他十字花科中观察到的结果,我们讨论了在Biscutelleae的S-locus发现的高多样性和复杂优势关系对SI植物种群的生态和进化意义。

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