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低pH值意味着更多雌性后代:海洋双壳贝类性别比例的多代可塑性

Low pH Means More Female Offspring: A Multigenerational Plasticity in the Sex Ratio of Marine Bivalves.

作者信息

Dang Xin, Zhang Yang, Dupont Sam, Gaitán-Espitia Juan Diego, He Yuan-Qiu, Wang Hui-Hui, Ellis Robert P, Guo Ximing, Parker Laura, Zhang Rong-Chao, Chung Shiu C, Yu Ziniu, Thiyagarajan Vengatesen

机构信息

The Swire Institute of Marine Science and School of Biological Sciences, The University of Hong Kong, Hong Kong SAR, Hong Kong, China.

Hong Kong Oyster Hatchery & Innovation Research Unit, The University of Hong Kong, Hong Kong SAR, Hong Kong, China.

出版信息

Environ Sci Technol. 2025 Jan 21;59(2):1308-1321. doi: 10.1021/acs.est.4c07808. Epub 2024 Dec 26.

Abstract

Global changes can profoundly affect the sex determination and reproductive output of marine organisms, disrupting the population structure and ecosystems. High COdriven low pH in the context of ocean acidification (OA) has been shown to severely affect various calcifiers, but less is known about the extent to which low pH influences sex determination and reproduction of marine organisms, particularly mollusks. This study is the first to report a biased sex ratio over multiple generations toward females, driven by exposure to high CO-induced low pH environments, using the ecologically and economically important Portuguese oyster () as a model. This phenomenon, which we term pH-mediated sex determination (PSD), has no consequences for fecundity, gonadal development, or reproductive function in the offspring. Moreover, PSD persisted into a second year of reproduction and was inherited across multiple generations. Transcriptomic analysis indicates PSD is associated with the activation of the Wnt signaling pathway in females and inhibition of spermiogenesis-related functions in males. This work expands our understanding of environmental sex determination and highlights the possible impact of global changes on reproduction and population dynamics of mollusks and other marine organisms.

摘要

全球变化会深刻影响海洋生物的性别决定和繁殖产出,扰乱种群结构和生态系统。在海洋酸化(OA)背景下,高二氧化碳导致的低pH值已被证明会严重影响各种钙化生物,但对于低pH值影响海洋生物,尤其是软体动物的性别决定和繁殖的程度,人们了解较少。本研究首次以具有生态和经济重要性的葡萄牙牡蛎()为模型,报告了在多代中受高二氧化碳诱导的低pH环境影响导致雌性偏向的性别比例。我们将这种现象称为pH介导的性别决定(PSD),它对后代的繁殖力、性腺发育或生殖功能没有影响。此外,PSD持续到繁殖的第二年,并在多代中遗传。转录组分析表明,PSD与雌性中Wnt信号通路的激活以及雄性中精子发生相关功能的抑制有关。这项工作扩展了我们对环境性别决定的理解,并突出了全球变化对软体动物和其他海洋生物的繁殖和种群动态可能产生的影响。

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