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波动不对称性:一种应激的表观遗传指标。

Fluctuating asymmetry: an epigenetic measure of stress.

作者信息

Parsons P A

机构信息

Department of Zoology, University of Adelaide, Australia.

出版信息

Biol Rev Camb Philos Soc. 1990 May;65(2):131-45. doi: 10.1111/j.1469-185x.1990.tb01186.x.

Abstract

(1) Fluctuating asymmetry (FA) is a useful trait for monitoring stress in the laboratory and in natural environments. (2) Both genomic and environmental changes can increase FA which represents a deterioration in developmental homeostasis apparent in adult morphology. Genetic perturbations include intense directional selection and certain specific genes. Environmental perturbations include temperature extremes in particular, protein deprivation, audiogenic stress, and exposure to pollutants. (3) There is a negative association between FA and heterozygosity in a range of taxa especially fish, a result consistent with FA being a measure of fitness. (4) Scattered reports on non-experimental populations are consistent with experiments under controlled laboratory conditions. FA tends to increase as habitats become ecologically marginal; this includes exposure to environmental toxicants. (5) In our own species, FA of an increasing range of traits has been related to both environmental and genomic stress. (6) Domestication increases FA of the strength of homologous long bones of vertebrate species due to a relaxation of natural selection. (7) FA levels are paralleled by the incidence of skeletal abnormalities in stressful environments. (8) Increased FA is a reflection of poorer developmental homeostasis at the molecular, chromosomal and epigenetic levels.

摘要

(1) 波动不对称性(FA)是监测实验室和自然环境中压力的有用特征。(2) 基因组和环境变化都会增加FA,这代表着成年形态中明显的发育稳态恶化。基因干扰包括强烈的定向选择和某些特定基因。环境干扰尤其包括极端温度、蛋白质缺乏、听觉应激和接触污染物。(3) 在一系列分类群中,特别是鱼类,FA与杂合性之间存在负相关,这一结果与FA作为适应性度量的观点一致。(4) 关于非实验种群的零散报告与实验室控制条件下的实验结果一致。随着栖息地变得生态边缘化,FA往往会增加;这包括接触环境毒物。(5) 在我们人类自身中,越来越多性状的FA与环境和基因组压力都有关联。(6) 由于自然选择的放松,驯化会增加脊椎动物物种同源长骨强度的FA。(7) 在压力环境中,FA水平与骨骼异常的发生率平行。(8) FA增加反映了分子、染色体和表观遗传水平上较差的发育稳态。

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