Chromosome evolution in the Salmonidae (Pisces): an update.

R. Phillips, P. Ráb
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引用次数: 86

Abstract

The karyotypes of salmonid fishes including taxa in the three subfamilies Coregoninae, Thymallinae and Salmoninae are described. This review is an update of the (Hartley, 1987) review of the chromosomes of salmonid fishes. As described in the previous review, the karyotypes of salmonid fishes fall into two main categories based on chromosome numbers: the type A karyotypes have diploid numbers close to 80 with approximately 100 chromosome arms (2n = 80, NF = 100), and the type B karyotypes have diploid numbers close to 60 with approximately 100 chromosome arms (2n = 60, NF = 100). In this paper we have proposed additional sub categories based on variation in the number of chromosome arms: the A' type with NF = 110-120, the A" type with NF greater than 140, and the B' type with NF less than 80. Two modes of chromosome evolution are found in the salmonids: in the Coregoninae and the Salmoninae the chromosomes have evolved by centric fusions of the Robertsonian type decreasing chromosome numbers (2n) while retaining chromosome arm numbers (NF) close to that found in the hypothetical tetraploid ancestor so that most extant taxa have either type A or type B karyotypes. In the Thymallinae, the chromosomes have evolved by inversions so that chromosome arm numbers (NF) have increased but chromosome numbers (2n) close to the karyotype of the hypothetical tetraploid ancestor have been retained and all taxa have type A' karyotypes. Most of the taxa with type B karyotypes in the Coregoninae and Salmoninae are members of the genus Oncorhynchus, although at least one example of type B karyotypes is found in all of the other genera. These taxa either have an anadromous life history or are found in specialized lacustrine environments. Selection for increases or decreases in genetic recombination as proposed by Qumsiyeh, 1994 could have been involved in the evolution of chromosome number in salmonid fishes.
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鲑鱼科(双鱼科)的染色体进化:最新进展。
描述了鲑科鱼类的核型,包括鲑科、胸腺科和鲑科三个亚科的分类群。这篇综述是对(Hartley, 1987)关于鲑科鱼类染色体的综述的更新。如前所述,鲑科鱼类的核型根据染色体数目分为两大类:A型核型的二倍体数目接近80,约有100条染色体臂(2n = 80, NF = 100); B型核型的二倍体数目接近60,约有100条染色体臂(2n = 60, NF = 100)。在本文中,我们根据染色体臂数的变化提出了额外的子类别:NF = 110-120的A'型,NF大于140的A'型和NF小于80的B'型。在鲑科中发现了两种染色体进化模式:在鲑科和鲑科中,染色体通过罗伯逊型的中心融合进化,染色体数目减少(2n),同时保留染色体臂数(NF),接近于假设的四倍体祖先,因此大多数现存的分类群具有A型或B型核型。在胸腺科中,染色体通过倒位进化,使染色体臂数(NF)增加,但染色体数(2n)接近假设的四倍体祖先的核型被保留,所有分类群都具有A型核型。尽管在所有其他属中至少发现了一个B型核型的例子,但在Coregoninae和Salmoninae中大多数具有B型核型的分类群都是Oncorhynchus属的成员。这些分类群要么有溯河生活史,要么是在特殊的湖泊环境中发现的。Qumsiyeh(1994)提出的基因重组增加或减少的选择可能与鲑科鱼类染色体数目的进化有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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