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珊瑚礁鱼类对海洋变暖的可塑性受到跨代、生殖和发育暴露的影响。

Plasticity to ocean warming is influenced by transgenerational, reproductive, and developmental exposure in a coral reef fish.

作者信息

Bernal Moisés A, Ravasi Timothy, Rodgers Giverny G, Munday Philip L, Donelson Jennifer M

机构信息

Department of Biological Sciences Auburn University Auburn Alabama USA.

Marine Climate Change Unit Okinawa Institute of Science and Technology Graduate University Onna-son, Okinawa Japan.

出版信息

Evol Appl. 2022 Jan 18;15(2):249-261. doi: 10.1111/eva.13337. eCollection 2022 Feb.

Abstract

Global warming is expected to drive some ectothermic species beyond their thermal tolerance in upcoming decades. Phenotypic plasticity, via developmental or transgenerational acclimation, is a critical mechanism for compensation in the face of environmental change. Yet, it remains to be determined if the activation of beneficial phenotypes requires direct exposure throughout development, or if compensation can be obtained just through the experience of previous generations. In this study, we exposed three generations of a tropical damselfish to combinations of current-day (Control) and projected future (+1.5°C) water temperatures. Acclimation was evaluated with phenotypic (oxygen consumption, hepatosomatic index, physical condition) and molecular (liver gene expression) measurements of third-generation juveniles. Exposure of grandparents/parents to warm conditions improved the aerobic capacity of fish regardless of thermal conditions experienced afterwards, representing a true transgenerational effect. This coincided with patterns of gene expression related to inflammation and immunity seen in the third generation. Parental effects due to reproductive temperature significantly affected the physical condition and routine metabolic rate (oxygen consumption) of offspring, but had little impact on gene expression of the F3. Developmental temperature of juveniles, and whether they matched conditions during parental reproduction, had the largest influence on the liver transcriptional program. Using a combination of both phenotypic and molecular approaches, this study highlights how the conditions experienced by both previous and current generations can influence plasticity to global warming in upcoming decades.

摘要

预计在未来几十年里,全球变暖将使一些变温物种超出其热耐受范围。表型可塑性,通过发育适应或跨代适应,是面对环境变化时进行补偿的关键机制。然而,有益表型的激活是否需要在整个发育过程中直接暴露,或者补偿是否仅通过前代的经历就能实现,仍有待确定。在本研究中,我们让三代热带雀鲷暴露于当前(对照)和预计未来(+1.5°C)水温的组合条件下。通过对第三代幼鱼的表型(耗氧量、肝体指数、身体状况)和分子(肝脏基因表达)测量来评估适应情况。祖父母/父母暴露于温暖条件下可提高鱼类的有氧能力,无论其后经历何种热条件,这代表了一种真正的跨代效应。这与第三代中与炎症和免疫相关的基因表达模式相吻合。生殖温度引起的亲代效应显著影响后代的身体状况和常规代谢率(耗氧量),但对F3的基因表达影响较小。幼鱼的发育温度以及它们是否与亲代繁殖期间的条件相匹配,对肝脏转录程序影响最大。本研究结合表型和分子方法,突出了前代和当代所经历的条件如何在未来几十年影响对全球变暖的可塑性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6066/8867710/f14d877fd318/EVA-15-249-g003.jpg

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