Center for Marine Environmental Chemistry and Toxicology, College of the Environment & Ecology, Xiamen University, Xiamen, 361102, China.
Key Laboratory of the Ministry of Education for Coastal and Wetland Ecosystems, Xiamen University, Xiamen, 361102, China.
Sci Rep. 2017 Mar 23;7(1):324. doi: 10.1038/s41598-017-00423-1.
Ocean acidification (OA) may potentially modify the responses of aquatic organisms to other environmental stressors including metals. In this study, we investigated the effects of near-future OA (pCO 1000 μatm) and mercury (Hg) on the development and reproduction of marine copepod Tigriopus japonicus under multigenerational life-cycle exposure. Metal accumulation as well as seven life history traits (survival rate, sex ratio, developmental time from nauplius to copepodite, developmental time from nauplius to adult, number of clutches, number of nauplii/clutch and fecundity) was quantified for each generation. Hg exposure alone evidently suppressed the number of nauplii/clutch, whereas single OA exposure negligibly affected the seven traits of copepods. However, OA exposure significantly alleviated the Hg inhibitory effects on number of nauplii/clutch and fecundity, which could be explained by the reduced Hg accumulation under OA. Such combined exposure also significantly shortened the development time. Thus, in contrast to earlier findings for other toxic metals, this study demonstrated that OA potentially mitigated the Hg toxicity to some important life traits in marine copepods during multigenerational exposure.
海洋酸化(OA)可能会改变水生生物对其他环境胁迫因素(包括金属)的反应。在这项研究中,我们研究了近未来 OA(pCO2 为 1000 μatm)和汞(Hg)对海洋桡足类动物 T. japonicus 在多代生命周期暴露下的发育和繁殖的影响。金属积累以及 7 个生活史特征(存活率、性别比、从无节幼体到桡足幼体的发育时间、从无节幼体到成体的发育时间、产卵次数、每卵囊的无节幼体数和产卵量)都被量化了。Hg 单独暴露显然会抑制每卵囊的无节幼体数量,而单一 OA 暴露对桡足类动物的 7 个特征几乎没有影响。然而,OA 暴露显著缓解了 Hg 对产卵量和产卵量的抑制作用,这可以通过 OA 下 Hg 积累减少来解释。这种联合暴露还显著缩短了发育时间。因此,与其他有毒金属的早期研究结果相比,本研究表明,在多代暴露期间,OA 可能减轻了 Hg 对海洋桡足类动物某些重要生活特征的毒性。