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家蝇中常染色体与Y染色体决定雄性机制的演变之谜

The evolving puzzle of autosomal versus Y-linked male determination in Musca domestica.

作者信息

Hamm Ronda L, Meisel Richard P, Scott Jeffrey G

机构信息

Dow AgroSciences, Indianapolis, Indiana 46268.

Department of Biology and Biochemistry, University of Houston, Houston, Texas 77204.

出版信息

G3 (Bethesda). 2014 Dec 31;5(3):371-84. doi: 10.1534/g3.114.014795.

Abstract

Sex determination is one of the most rapidly evolving developmental pathways, but the factors responsible for this fast evolution are not well resolved. The house fly, Musca domestica, is an ideal model for studying sex determination because house fly sex determination is polygenic and varies considerably between populations. Male house flies possess a male-determining locus, the M factor, which can be located on the Y or X chromosome or any of the five autosomes. There can be a single M or multiple M factors present in an individual male, in heterozygous or homozygous condition. Males with multiple copies of M skew the sex ratio toward the production of males. Potentially in response to these male-biased sex ratios, an allele of the gene transformer, Md-tra(D), promotes female development in the presence of one or multiple M factors. There have been many studies to determine the linkage and frequency of these male determining factors and the frequency of Md-tra(D) chromosomes in populations from around the world. This review provides a summary of the information available to date regarding the patterns of distribution of autosomal, X-linked and Y-linked M factors, the relative frequencies of the linkage of M, the changes in frequencies found in field populations, and the fitness of males with autosomal M factors vs. Y-linked M. We evaluate this natural variation in the house fly sex determination pathway in light of models of the evolution of sex determination.

摘要

性别决定是进化最为迅速的发育途径之一,但导致这种快速进化的因素尚未完全明确。家蝇是研究性别决定的理想模式生物,因为家蝇的性别决定是多基因的,且不同种群之间差异很大。雄性家蝇拥有一个雄性决定位点,即M因子,它可以位于Y染色体、X染色体或五条常染色体中的任何一条上。单个雄性个体中可能存在一个或多个M因子,呈杂合或纯合状态。具有多个M因子拷贝的雄性会使性别比例偏向于产生雄性。可能是对这些雄性偏向的性别比例做出反应,基因transformer的一个等位基因Md-tra(D),在存在一个或多个M因子的情况下促进雌性发育。已经有许多研究来确定这些雄性决定因子的连锁关系和频率,以及世界各地种群中Md-tra(D)染色体的频率。这篇综述总结了迄今为止关于常染色体、X连锁和Y连锁M因子的分布模式、M连锁的相对频率、野外种群中发现的频率变化,以及具有常染色体M因子的雄性与Y连锁M因子的雄性的适应性等方面的可用信息。我们根据性别决定进化模型来评估家蝇性别决定途径中的这种自然变异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de45/4349091/eb1d451411d6/371f1.jpg

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