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斯氏强棱蜥复合体(蜥蜴亚目,角蜥科)两个染色体族杂交带染色体中间体的细胞遗传学分析

CYTOGENETIC ANALYSIS OF CHROMOSOMAL INTERMEDIATES FROM A HYBRID ZONE BETWEEN TWO CHROMOSOME RACES OF THE SCELOPORUS GRAMMICUS COMPLEX (SAURIA, PHRYNOSOMATIDAE).

作者信息

Reed Kent M, Greenbaum Ira F, Sites Jack W

机构信息

Department of Biology, Texas A & M University, College Station, Texas, 77843.

Department of Zoology, Brigham Young University, Provo, Utah, 84602.

出版信息

Evolution. 1995 Feb;49(1):37-47. doi: 10.1111/j.1558-5646.1995.tb05956.x.

Abstract

Underdominance for chromosomal rearrangements is the central assumption of several models of chromosomally based speciation including the cascade model, proposed for the Sceloporus grammicus complex. Several cytotypes of the S. grammicus complex hybridize at localities in central México. A hybrid zone between two of the most chromosomally divergent races (= cytotypes) of S. grammicus (F5, 2n = 34 and FM2, 2n = 44-46) was examined to assess the meiotic effects of heterozygosity at multiple chromosomes. Meiosis was examined in males heterozygous for "simple" Robertsonian fissions at chromosomes 1, 3, 4, and 6 and/or a pericentric inversion at chromosome 4. Analysis of synaptonemal complexes and chromosomal configurations at diakinesis showed trivalent formation in fission heterozygotes and heterosynapsis (lack of reverse-loop formation) in an inversion heterozygote. Analysis of metaphase II configurations revealed primarily balanced segregation and low levels of nondisjunction regardless of chromosomal background. The lack of underdominance associated with "simple" fission heterozygosity in this narrow hybrid zone contradicts the key premise of most chromosomally based models of speciation.

摘要

染色体重排的隐性上位是包括为斯氏强棱蜥复合体提出的级联模型在内的几种基于染色体的物种形成模型的核心假设。斯氏强棱蜥复合体的几种细胞型在墨西哥中部的一些地方杂交。对斯氏强棱蜥两个染色体差异最大的种群(=细胞型)(F5,2n = 34和FM2,2n = 44 - 46)之间的一个杂交带进行了研究,以评估多条染色体杂合性的减数分裂效应。对在染色体1、3、4和6上具有“简单”罗伯逊断裂和/或在染色体4上具有臂间倒位的雄性杂合子的减数分裂进行了研究。对联会复合体和终变期染色体构型的分析表明,断裂杂合子中形成三价体,倒位杂合子中出现异源联会(缺乏反向环形成)。对中期II构型的分析表明,无论染色体背景如何,主要是平衡分离且不分离水平较低。在这个狭窄的杂交带中,与“简单”断裂杂合性相关的隐性上位的缺乏与大多数基于染色体的物种形成模型的关键前提相矛盾。

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