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Creation and Maintenance of Variation in Allorecognition Loci: Molecular Analysis in Various Model Systems

机译:建立和维持变位识别基因座中的变异:各种模型系统中的分子分析。

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摘要

Allorecognition is the ability of an organism to differentiate self or close relatives from unrelated conspecifics. Effective allorecognition systems are critical to the survival of organisms; they prevent inbreeding and facilitate fusions between close relatives. Where the loci governing allorecognition outcomes have been identified, the corresponding proteins often exhibit exceptional polymorphism. Two important questions about this polymorphism remain unresolved: how is it created, and how is it maintained. Because the genetic bases of several allorecognition systems have now been identified, including alr1 and alr2 in Hydractinia, fusion histocompatibility in Botryllus, the het (vic) loci in fungi, tgrB1 and tgrC1 in Dictyostelium, and self-incompatibility (SI) loci in several plant families, we are now poised to achieve a clearer understanding of how these loci evolve. In this review, we summarize what is currently known about the evolution of allorecognition loci, highlight open questions, and suggest future directions.
机译:同种异体认知是生物体将自身或近亲与无关物种分开的能力。有效的同种异体识别系统对生物的生存至关重要。它们可防止近亲繁殖并促进近亲之间的融合。在已确定控制同种异体认知结果的基因座的地方,相应的蛋白质通常表现出出众的多态性。关于此多态性的两个重要问题仍未解决:如何创建以及如何维护。因为现在已经鉴定了几种同种异体认知系统的遗传基础,包括在屈丝菌属中的alr1和alr2,在葡萄孢属中的融合组织相容性,在真菌中的het(vic)基因座,在小球藻中的tgrB1和tgrC1以及在几个中的自我不相容性(SI)基因座植物家族,我们现在准备对这些基因座如何进化有一个更清晰的了解。在这篇综述中,我们总结了关于同种异体认知基因座进化的当前已知信息,突出了未解决的问题,并提出了未来的方向。

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