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主要组织相容性复合体多样性的进化。

Evolution of diversity at the major histocompatibility complex.

机构信息

Wayne Potts and Edward Wakeland are at the Dept of Pathology, University of Florida, Gainesville, FL 32610, USA.

出版信息

Trends Ecol Evol. 1990 Jun;5(6):181-7. doi: 10.1016/0169-5347(90)90207-T.

Abstract

Recent evidence from both population data and DNA sequence analyses indicates that the unprecedented genetic diversity found at MHC loci is selectively maintained in contemporary natural populations, although the strength and nature of this selection are currently unclear. Due to the critical role played by MHC molecules in immune recognition, it is generally assumed that some form of parasite-driven selection is operating. However, the general failure to implicate MHC in the susceptibility to specific infectious diseases has been troubling, and may indicate that selection is too weak to detect directly. Alternatively, strong selection can be reconciled by a variety of factors including the amplification of minor (disease-based) vigor differences into large fitness differences by intraspecific competition, or non-disease-based selection such as mating preferences and selective abortion.

摘要

最近来自群体数据和 DNA 序列分析的证据表明,MHC 基因座中前所未有的遗传多样性在当代自然群体中得到了选择性的维持,尽管这种选择的强度和性质目前尚不清楚。由于 MHC 分子在免疫识别中起着关键作用,人们普遍认为某种形式的寄生虫驱动选择正在起作用。然而,MHC 与特定传染病易感性之间的关联一直没有得到明确,这令人困扰,可能表明选择太弱以至于无法直接检测到。或者,通过种内竞争将次要(基于疾病的)活力差异放大为大的适应度差异,或者通过非疾病选择(如交配偏好和选择性流产)等各种因素,也可以协调强烈的选择。

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