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苔藓虫表型进化的数量遗传学。III. 表型可塑性与遗传变异的维持

QUANTITATIVE GENETICS OF BRYOZOAN PHENOTYPIC EVOLUTION. III. PHENOTYPIC PLASTICITY AND THE MAINTENANCE OF GENETIC VARIATION.

作者信息

Cheetham Alan H, Jackson Jeremy B C, Hayek Lee-Ann C

机构信息

Department of Paleobiology, National Museum of Natural History, Smithsonian Institution, Washington, D.C., 20560.

Center for Tropical Paleoecology and Archaeology, Smithsonian Tropical Research Institute, Apartado 2072, Balboa, Republic of Panama.

出版信息

Evolution. 1995 Apr;49(2):290-296. doi: 10.1111/j.1558-5646.1995.tb02241.x.

Abstract

Cheilostome bryozoan species show long-term morphologic stasis, implying stabilizing selection sustained for millions of years, but nevertheless retain significant heritable variation in traits of skeletal morphology. The possible role of within-genotype (within-colony) phenotypic variability in preserving genetic diversity was analyzed using breeding data for two species of Stylopoma from sites along 110 km of the Caribbean coast of Panama. Variation among zooids within colonies accounts for nearly two-thirds of the phenotypic variance on average, increases with environmental heterogeneity, and includes significant genotype-environment interaction. Thus, within-colony variability apparently represents phenotypic plasticity, at least some of which is heritable, rather than random "developmental noise." Almost all of the among-colonies component of phenotypic variance is accounted for by additive genetic differences in trait means, suggesting that within-colony plasticity includes virtually all of the environmental component of phenotypic variance in these populations of Stylopoma. Thus, heritable within-colony plasticity could play a significant part in maintaining genetic diversity in cheilostomes, but it is also possible that rates of polygenic mutation alone are sufficient to balance the effects of selection.

摘要

唇口目苔藓虫物种表现出长期的形态停滞,这意味着稳定选择持续了数百万年,但它们在骨骼形态特征上仍保留着显著的可遗传变异。利用来自巴拿马加勒比海岸110公里沿线地点的两种Stylopoma物种的繁殖数据,分析了基因型内(群体内)表型变异性在保存遗传多样性方面的可能作用。群体内个虫体之间的变异平均占表型方差的近三分之二,随环境异质性增加,并且包括显著的基因型 - 环境相互作用。因此,群体内变异性显然代表表型可塑性,其中至少一些是可遗传的,而不是随机的“发育噪声”。表型方差的几乎所有群体间成分都由性状均值的加性遗传差异所解释,这表明群体内可塑性实际上包括了Stylopoma这些种群中表型方差的几乎所有环境成分。因此,可遗传的群体内可塑性可能在维持唇口目动物的遗传多样性方面发挥重要作用,但仅多基因突变率也有可能足以平衡选择的影响。

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