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影响基因调控网络隐式变异的遗传和环境因素。

Genetic and environmental factors affecting cryptic variations in gene regulatory networks.

机构信息

Department of Ecology and Evolution, Graduate School of Life Sciences, Tohoku University, Sendai 980-8578, Japan.

出版信息

BMC Evol Biol. 2013 Apr 26;13:91. doi: 10.1186/1471-2148-13-91.

Abstract

BACKGROUND

Cryptic genetic variation (CGV) is considered to facilitate phenotypic evolution by producing visible variations in response to changes in the internal and/or external environment. Several mechanisms enabling the accumulation and release of CGVs have been proposed. In this study, we focused on gene regulatory networks (GRNs) as an important mechanism for producing CGVs, and examined how interactions between GRNs and the environment influence the number of CGVs by using individual-based simulations.

RESULTS

Populations of GRNs were allowed to evolve under various stabilizing selections, and we then measured the number of genetic and phenotypic variations that had arisen. Our results showed that CGVs were not depleted irrespective of the strength of the stabilizing selection for each phenotype, whereas the visible fraction of genetic variation in a population decreased with increasing strength of selection. On the other hand, increasing the number of different environments that individuals encountered within their lifetime (i.e., entailing plastic responses to multiple environments) suppressed the accumulation of CGVs, whereas the GRNs with more genes and interactions were favored in such heterogeneous environments.

CONCLUSIONS

Given the findings that the number of CGVs in a population was largely determined by the size (order) of GRNs, we propose that expansion of GRNs and adaptation to novel environments are mutually facilitating and sustainable sources of evolvability and hence the origins of biological diversity and complexity.

摘要

背景

隐式遗传变异 (CGV) 被认为通过在内部和/或外部环境发生变化时产生可见的变异来促进表型进化。已经提出了几种能够积累和释放 CGV 的机制。在这项研究中,我们将重点放在基因调控网络 (GRN) 作为产生 CGV 的重要机制上,并通过基于个体的模拟研究了 GRN 与环境之间的相互作用如何影响 CGV 的数量。

结果

允许 GRN 群体在各种稳定选择下进化,然后测量已经出现的遗传和表型变异数量。我们的结果表明,无论每个表型的稳定选择强度如何,CGV 都不会耗尽,而群体中遗传变异的可见部分随着选择强度的增加而减少。另一方面,增加个体一生中遇到的不同环境的数量(即对多种环境产生可塑性反应)会抑制 CGV 的积累,而具有更多基因和相互作用的 GRN 在这种异质环境中更受青睐。

结论

鉴于群体中 CGV 的数量主要由 GRN 的大小(阶)决定的发现,我们提出 GRN 的扩展和对新环境的适应是相互促进和可持续的可进化性来源,因此是生物多样性和复杂性的起源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4cee/3679780/5faf14159b4f/1471-2148-13-91-1.jpg

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