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首页> 外文期刊>The Journal of Experimental Biology >Consequences of calcium decline on the embryogenesis and life history of Daphnia magna
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Consequences of calcium decline on the embryogenesis and life history of Daphnia magna

机译:钙减少对水蚤的胚胎发生和生活史的影响

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Ambient calcium is declining in thousands of soft-water lake habitats in temperate regions as a consequence of unsustainable forestry practices, decreased atmospheric calcium deposition and acidic deposition. As their exoskeleton is heavily reinforced with calcium, freshwater crustaceans have a high specific calcium requirement relative to other aquatic organisms. Daphnia, in particular, is an ideal crustacean for investigating the consequences of calcium decline because it is an abundant and important member of freshwater zooplankton communities. Although it has been established that adult and juvenile Daphnia have different tolerances to low ambient calcium as a result of their different life stage-specific calcium requirements, the consequences of declining calcium on embryonic development have never been investigated. Here, we describe the distribution of calcium in embryonic stages of D. magna and introduce a novel and easy to use staging scheme. We tested whether calcium can be traced from mothers to their offspring. Finally, we assessed the fitness consequences of maternal provisioning in limiting calcium environments. We found that while embryos require calcium for their development and moulting, they do not equilibrate with environmental calcium levels. Instead, we were able to trace calcium from mothers to their offspring. Furthermore, our data strongly suggest that females are faced with an allocation trade-off between providing calcium to their offspring and using it for growth and moulting. Together, these data provide novel insights into the consequences of calcium decline for freshwater zooplankton.
机译:温带地区成千上万个软水湖泊栖息地的环境钙正在下降,这是由于不可持续的林业做法,大气钙沉积减少和酸性沉积所致。由于它们的外骨骼富含钙,因此相对于其他水生生物,淡水甲壳类动物对钙的需求较高。尤其是,水蚤是研究钙减少的后果的理想甲壳类动物,因为它是淡水浮游动物群落的重要组成部分。尽管已经确定成年和幼年的水蚤由于生活阶段特定的钙需求不同而对低环境钙具有不同的耐受性,但从未研究过钙下降对胚胎发育的影响。在这里,我们描述了D. magna胚胎阶段钙的分布,并介绍了一种新颖且易于使用的分期方案。我们测试了钙是否可以追溯到母亲及其后代。最后,我们评估了孕妇在限制钙环境下调配食物的适应性后果。我们发现,尽管胚胎需要钙才能发育和蜕皮,但它们并不能与环境中的钙平衡。取而代之的是,我们能够追踪到母亲及其后代的钙。此外,我们的数据强烈表明,雌性面临向其后代提供钙与将其用于生长和蜕皮之间的分配权衡。总之,这些数据为钙减少对淡水浮游动物的后果提供了新颖的见解。

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