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A De Novo Case of Floating Chromosomal Polymorphisms by Translocation in Quasipaa boulengeri (Anura Dicroglossidae)

机译:浮动染色体多态性从头案例易位在棘腹蛙(无尾目Dicroglossidae)

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摘要

Very few natural polymorphisms involving interchromosomal reciprocal translocations are known in amphibians even in vertebrates. In this study, thirty three populations, including 471 individuals of the spiny frog Quasipaa boulengeri, were karyotypically examined using Giemsa stain or FISH. Five different karyomorphs were observed. The observed heteromorphism was autosomal but not sex-related, as the same heteromorphic chromosomes were found both in males and females. Our results indicated that the variant karyotypes resulted from a mutual interchange occurring between chromosomes 1 and 6. The occurrence of a nearly whole-arm translocation between chromosome no. 1 and no. 6 gave rise to a high frequency of alternate segregation and probably resulted in the maintenance of the translocation polymorphisms in a few populations. The translocation polymorphism is explained by different frequencies of segregation modes of the translocation heterozygote during meiosis. Theoretically, nine karyomorphs should be investigated, however, four expected karyotypes were not found. The absent karyomorphs may result from recessive lethal mutations, position effects, duplications and deficiencies. The phylogenetic inference proved that all populations of Q. boulengeri grouped into a monophyletic clade. The mutual translocation likely evolved just once in this species and the dispersal of the one karyomorph (type IV) can explain the chromosomal variations among populations.
机译:即使在脊椎动物中,在两栖动物中也很少涉及染色体间的相互易位的自然多态性。在这项研究中,使用Giemsa染色或FISH对33个种群(包括471个刺蛙Quasipaa boulengeri)进行了核型分析。观察到五种不同的核型。观察到的异型是常染色体的,但与性别无关,因为在男性和女性中都发现了相同的异型染色体。我们的结果表明,变异核型是由1号和6号染色体之间的相互交换产生的。 1,没有。 6引起高频率的交替隔离,并可能导致少数种群中维持易位多态性。通过减数分裂过程中易位杂合子的分离模式的不同频率来解释易位多态性。从理论上讲,应该研究九种核型,但是,没有发现四种预期的核型。缺乏核型可能是由隐性致死突变,位置效应,重复和缺陷引起的。系统进化论推论证明,所有Q. boulengeri种群都归类为单系统进化枝。相互易位可能在该物种中只进化了一次,一个核型(IV型)的扩散可以解释种群之间的染色体变异。

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