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Multi‐generational responses of a marine polychaete to a rapid change in seawater pCO2

机译:海洋多毛鱼类对海水p快速变化的多代反应一氧化碳2

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摘要

Little is known of the capacity that marine metazoans have to evolve under rapid p CO 2 changes. Consequently, we reared a marine polychaete, Ophryotrocha labronica, previously cultured for approximately 33 generations under a low/variable pH regime, under elevated and low p CO 2 for six generations. The strain used was found to be tolerant to elevated p CO 2 conditions. In generations F1 and F2 females’ fecundity was significantly lower in the low p CO 2 treatment. However, from generation F3 onwards there were no differences between p CO 2 treatments, indicating that trans‐generational effects enabled the restoration and maintenance of reproductive output. Whilst the initial fitness recovery was likely driven by trans‐generational plasticity (TGP), the results from reciprocal transplant assays, performed using F7 individuals, made it difficult to disentangle between whether TGP had persisted across multiple generations, or if evolutionary adaptation had occurred. Nonetheless, both are important mechanisms for persistence under climate change. Overall, our study highlights the importance of multi‐generational experiments in more accurately determining marine metazoans’ responses to changes in p CO 2, and strengthens the case for exploring their use in conservation, by creating specific p CO 2 tolerant strains of keystone ecosystem species.
机译:鲜为人知的是海洋后生动物在p CO 2快速变化下必须具备的进化能力。因此,我们饲养了一种海洋多毛cha,Ophryotrocha labronica,以前在低/可变pH值条件下培养了约33代,在升高的p CO 2和低的p CO 2下培养了六代。发现所使用的菌株可耐受升高的p CO 2条件。在低p CO 2处理中,F1代和F2代女性的生殖力显着降低。但是,从F3代开始,p CO 2处理之间没有差异,这表明跨代效应使恢复和维持生殖输出成为可能。尽管最初的适应性恢复可能是由跨世代可塑性(TGP)驱动的,但使用F7个体进行的相互移植试验的结果使得难以区分TGP是否持续了多个世代或是否发生了进化适应。尽管如此,这两者都是在气候变化下保持持久性的重要机制。总体而言,我们的研究强调了多代实验在更准确地确定海洋后生动物对p CO 2变化的响应中的重要性,并通过创建关键的生态系统物种的特定p CO 2耐性菌株,加强了探索其在保护中用途的案例。 。

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