跨代表观遗传增加了性状变异,但不具有适应性。

IF 3.1 2区 环境科学与生态学 Q2 ECOLOGY
Evolution Pub Date : 2025-03-11 DOI:10.1093/evolut/qpaf050
René S Shahmohamadloo, John M Fryxell, Seth M Rudman
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引用次数: 0

摘要

了解生物体对环境变化的反应是生物学的中心目标,对生物多样性的保护具有深远的意义。广泛的证据表明,表观遗传修饰是对环境压力的反应,包括那些跨代遗传的,这导致了对它们在生物体对环境变化的反应中所起作用的大量猜测。然而,在母系遗传之外携带的表观遗传标记的大小和适应性后果在很大程度上是未知的。在这里,我们测试了跨代表观遗传(TEI)如何塑造水蚤无性系对环境应激源微囊藻的表型反应。我们将8个基因型中的每个个体分成暴露处理和对照处理(P0代),并跟踪其后代到F3代的适应度。我们发现,微囊藻的跨代表观遗传暴露导致存活率和生长率降低,对后代生产没有一致的影响。TEI与性状方差增加有关,表明TEI可能驱动遗传对冲。综上所述,我们的研究结果表明,TEI导致了实质性的(但不是适应性的)特征变化,这表明跨代适应性可塑性可能很少见。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transgenerational epigenetic inheritance increases trait variation but is not adaptive.

Understanding organismal responses to environmental change is a central goal of biology with profound implications for the conservation of biodiversity. Widespread evidence of epigenetic modifications in response to environmental stress, including those inherited across generations, has led to considerable speculation about their role in organismal responses to environmental change. Yet, the magnitude and fitness consequences of epigenetic marks carried beyond maternal inheritance are largely unknown. Here, we tested how transgenerational epigenetic inheritance (TEI) shapes the phenotypic response of Daphnia clones to the environmental stressor Microcystis. We split individuals from each of eight genotypes into exposure and control treatments (P0 generation) and tracked the fitness of their descendants to the F3 generation. We found transgenerational epigenetic exposure to Microcystis led to reduced survival and growth rates and no consistent effect on offspring production. TEI was associated with increases in trait variance, suggesting the potential for heritable bet hedging driven by TEI. Taken together, our results demonstrate that TEI causes substantial-but not adaptive-trait shifts, suggesting transgenerational adaptive plasticity may be rare.

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来源期刊
Evolution
Evolution 环境科学-进化生物学
CiteScore
5.00
自引率
9.10%
发文量
0
审稿时长
3-6 weeks
期刊介绍: Evolution, published for the Society for the Study of Evolution, is the premier publication devoted to the study of organic evolution and the integration of the various fields of science concerned with evolution. The journal presents significant and original results that extend our understanding of evolutionary phenomena and processes.
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