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首页> 外文期刊>Water >Effects of Ocean Acidification and Warming on Sperm Activity and Early Life Stages of the Mediterranean Mussel (Mytilus galloprovincialis)
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Effects of Ocean Acidification and Warming on Sperm Activity and Early Life Stages of the Mediterranean Mussel (Mytilus galloprovincialis)

机译:海洋酸化和变暖对地中海贻贝(Mytilus galloprovincialis)精子活性和早期生命阶段的影响。

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Larval stages are among those most vulnerable to ocean acidification (OA). Projected atmospheric CO2 levels for the end of this century may lead to negative impacts on communities dominated by calcifying taxa with planktonic life stages. We exposed Mediterranean mussel (Mytilus galloprovincialis) sperm and early life stages to pHT levels of 8.0 (current pH) and 7.6 (2100 level) by manipulating pCO2 level (380 and 1000 ppm). Sperm activity was examined at ambient temperatures (16–17 °C) using individual males as replicates. We also assessed the effects of temperature (ambient and ≈20 °C) and pH on larval size, survival, respiration and calcification of late trochophore/early D-veliger stages using a cross-factorial design. Increased pCO2 had a negative effect on the percentage of motile sperm (mean response ratio R ¯ = 71%) and sperm swimming speed ( R ¯ = 74%), possibly indicating reduced fertilization capacity of sperm in low concentrations. Increased temperature had a more prominent effect on larval stages than pCO2, reducing performance ( R ¯ Size = 90% and R ¯ Survival = 70%) and increasing energy demand ( R ¯ Respiration = 429%). We observed no significant interactions between pCO2 and temperature. Our results suggest that increasing temperature might have a larger impact on very early larval stages of M. galloprovincialis than OA at levels predicted for the end of the century.
机译:幼虫阶段是最容易受到海洋酸化(OA)影响的阶段。预计到本世纪末,大气中的CO 2 水平可能会对以浮游生物阶段钙化的生物分类为主导的社区产生负面影响。通过控制pCO 2 水平(380),将地中海贻贝(Mytilus galloprovincialis)精子和生命早期暴露于pH T 水平8.0(当前pH)和7.6(2100水平)。和1000 ppm)。在环境温度(16–17°C)下使用单个雄性作为复制品检查精子活性。我们还使用跨因子设计评估了温度(环境温度和约20°C)和pH值对次营养体/早期D-veliger阶段幼体大小,存活,呼吸和钙化的影响。 pCO 2 的增加对运动精子的百分比(平均反应率R = 71%)和精子游动速度(R = 74%)产生负面影响,可能表明精子受精能力降低。低浓度。温度升高对幼虫阶段的影响比pCO 2 更显着,降低了性能(R大小= 90%,R生存= 70%)并增加了能量需求(R呼吸= 429%) 。我们观察到pCO 2 与温度之间没有显着的相互作用。我们的结果表明,在本世纪末预测的温度水平下,温度升高可能比OA对Galloprovincialis幼虫的早期幼虫期影响更大。

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