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缺乏基因型-环境互作表明,东牡蛎(Crassostrea virginica)可塑性的进化变化潜力有限。

Lack of genotype-by-environment interaction suggests limited potential for evolutionary changes in plasticity in the eastern oyster, Crassostrea virginica.

机构信息

Department of Biological Sciences, Louisiana State University, Baton Rouge, Louisiana, USA.

School of Animal Sciences, Louisiana State University Agricultural Center, Baton Rouge, Louisiana, USA.

出版信息

Mol Ecol. 2021 Nov;30(22):5721-5734. doi: 10.1111/mec.16156. Epub 2021 Sep 12.

DOI:10.1111/mec.16156
PMID:34462983
Abstract

Eastern oysters in the northern Gulf of Mexico are facing rapid environmental changes and can respond to this change via plasticity or evolution. Plasticity can act as an immediate buffer against environmental change, but this buffering could impact the organism's ability to evolve in subsequent generations. While plasticity and evolution are not mutually exclusive, the relative contribution and interaction between them remains unclear. In this study, we investigate the roles of plastic and evolved responses to environmental variation and Perkinsus marinus infection in Crassostrea virginica by using a common garden experiment with 80 oysters from six families outplanted at two field sites naturally differing in salinity. We use growth data, P. marinus infection intensities, 3' RNA sequencing (TagSeq) and low-coverage whole-genome sequencing to identify the effect of genotype, environment and genotype-by-environment interaction on the oyster's response to site. As one of first studies to characterize the joint effects of genotype and environment on transcriptomic and morphological profiles in a natural setting, we demonstrate that C. virginica has a highly plastic response to environment and that this response is parallel among genotypes. We also find that genes responding to genotype have distinct and opposing profiles compared to genes responding to environment with regard to expression levels, Ka/Ks ratios and nucleotide diversity. Our findings suggest that C. virginica may be able to buffer the immediate impacts of future environmental changes by altering gene expression and physiology, but the lack of genetic variation in plasticity suggests limited capacity for evolved responses.

摘要

墨西哥湾北部的东方牡蛎正面临着快速的环境变化,它们可以通过可塑性或进化来应对这种变化。可塑性可以作为对环境变化的即时缓冲,但这种缓冲可能会影响生物体在后代中进化的能力。虽然可塑性和进化不是相互排斥的,但它们之间的相对贡献和相互作用仍不清楚。在这项研究中,我们通过 80 个来自六个家系的牡蛎的共同花园实验来研究环境变化和海生肾形虫感染对 Virginica 牡蛎的可塑性和进化反应的作用,这些牡蛎在两个野外地点种植,其自然盐度不同。我们使用生长数据、海生肾形虫感染强度、3' RNA 测序(TagSeq)和低覆盖率全基因组测序来确定基因型、环境和基因型-环境互作对牡蛎对地点的反应的影响。作为第一个在自然环境中描述基因型和环境对转录组和形态特征联合影响的研究之一,我们证明了 Virginica 牡蛎对环境具有高度的可塑性反应,而且这种反应在基因型之间是平行的。我们还发现,与环境响应基因相比,响应基因型的基因在表达水平、Ka/Ks 比值和核苷酸多样性方面具有截然不同的、相反的特征。我们的研究结果表明,Virginica 牡蛎可能能够通过改变基因表达和生理机能来缓冲未来环境变化的直接影响,但可塑性缺乏遗传变异表明进化反应的能力有限。

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Plasticity across levels: Relating epigenomic, transcriptomic, and phenotypic responses to osmotic stress in a halotolerant microalga.
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Mol Ecol. 2022 Sep;31(18):4672-4687. doi: 10.1111/mec.16542. Epub 2022 Jun 9.