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Trans-specific S-RNase and SFB alleles in Prunus self-incompatibility haplotypes

机译:李自交不亲和单倍型中的反式S-RNase和SFB等位基因

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摘要

Self-incompatibility in the genus Prunus is controlled by two genes at the S-locus, S-RNase and SFB. Both genes exhibit the high polymorphism and high sequence diversity characteristic of plant self-incompatibility systems. Deduced polypeptide sequences of three myrobalan and three domestic plum S-RNases showed over 97% identity with S-RNases from other Prunus species, including almond, sweet cherry, Japanese apricot and Japanese plum. The second intron, which is generally highly polymorphic between alleles was also remarkably well conserved within these S-allele pairs. Degenerate consensus primers were developed and used to amplify and sequence the co-adapted polymorphic SFB alleles. Sequence comparisons also indicated high degrees of polypeptide sequence identity between three myrobalan and the three domestic plum SFB alleles and the corresponding Prunus SFB alleles. We discuss these trans-specific allele identities in terms of S-allele function, evolution of new allele specificities and Prunus taxonomy and speciation.
机译:李属中的自交不亲和性受S基因座的两个基因S-RNase和SFB控制。这两个基因都具有植物自交不亲和系统的高多态性和高序列多样性的特征。推论出的三个myrobalan和三个家用李子S-RNase的多肽序列与来自其他李属(包括杏仁,甜樱桃,日本杏和日本李子)的S-RNase的同源性超过97%。在这些S-等位基因对中,通常在等位基因之间通常高度多态的第二内含子也非常保守。开发了简并共有引物,并将其用于扩增和测序共同适应的多态性SFB等位基因。序列比较还表明在三个myrobalan和三个家李李SFB等位基因以及相应的李子SFB等位基因之间高度的多肽序列同一性。我们从S-等位基因功能,新等位基因特异性的进化以及李属分类和物种形成等方面讨论了这些反式特异性等位基因身份。

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