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Effects of CO2-induced pH reduction on the exoskeleton structure and biophotonic properties of the shrimp Lysmata californica

机译:CO2诱导的pH值降低对加利福尼亚州贯叶连翘的外骨骼结构和生物光子性质的影响

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摘要

The anticipated effects of CO2-induced ocean acidification on marine calcifiers are generally negative, and include dissolution of calcified elements and reduced calcification rates. Such negative effects are not typical of crustaceans for which comparatively little ocean acidification research has been conducted. Crustaceans, however, depend on their calcified exoskeleton for many critical functions. Here, we conducted a short-term study on a common caridean shrimp, Lysmata californica, to determine the effect of CO2-driven reduction in seawater pH on exoskeleton growth, structure, and mineralization and animal cryptic coloration. Shrimp exposed to ambient (7.99 ± 0.04) and reduced pH (7.53 ± 0.06) for 21 days showed no differences in exoskeleton growth (percent increase in carapace length), but the calcium weight percent of their cuticle increased significantly in reduced pH conditions, resulting in a greater Ca:Mg ratio. Cuticle thickness did not change, indicating an increase in the mineral to matrix ratio, which may have mechanical consequences for exoskeleton function. Furthermore, there was a 5-fold decrease in animal transparency, but no change in overall shrimp coloration (red). These results suggest that even short-term exposure to CO2-induced pH reduction can significantly affect exoskeleton mineralization and shrimp biophotonics, with potential impacts on crypsis, physical defense, and predator avoidance.
机译:由CO2引起的海洋酸化对海洋钙化剂的预期影响通常是负面的,包括钙化元素的溶解和钙化率降低。这种负面影响在甲壳类动物中并不常见,对此已经进行了很少的海洋酸化研究。然而,甲壳动物的许多关键功能依赖于钙化的外骨骼。在这里,我们对普通的car虾(Lysmata californica)进行了短期研究,以确定CO2驱动的海水pH值降低对外骨骼生长,结构,矿化和动物隐性着色的影响。虾暴露于环境(7.99±0.04)和pH降低(7.53±0.06)21天后,外骨骼生长无差异(甲壳长度增加百分比),但在pH降低的条件下,表皮的钙重量百分比显着增加,结果Ca:Mg比更大。角质层厚度没有变化,表明矿物质与基质的比率增加,这可能会对外骨骼功能产生机械影响。此外,动物透明度降低了5倍,但虾的总体色泽没有改变(红色)。这些结果表明,即使短期暴露于CO2引起的pH降低,也可能显着影响外骨骼矿化和虾生物光子学,并对孤岛虫,身体防御和避免捕食动物产生潜在影响。

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