首页> 外文期刊>Archives of Environmental Contamination and Toxicology >Alteration of larval development and metamorphosis by nitrate and perchlorate in southern leopard frogs (Rana sphenocephala).
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Alteration of larval development and metamorphosis by nitrate and perchlorate in southern leopard frogs (Rana sphenocephala).

机译:南部豹蛙(Rana sphenocephala)中硝酸盐和高氯酸盐对幼虫发育和变态的改变。

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Amphibians are sensitive to a great variety of agrochemicals. Nitrate compounds are commonly applied as fertilizers, whereas perchlorate salts occur as by-products of the military industry and in some nitrate fertilizers. Both compounds are highly soluble and can easily diffuse between ground and surface water, thus potentially affecting amphibians. Nitrate reduces embryonic and larval survival and development, whereas perchlorate has a well-known goitrogenic effect and inhibits metamorphosis. We present the results of an experiment that assessed the combined effects of these two chemicals on the development and metamorphosis of southern leopard frogs (Rana sphenocephala) larvae. Individual frogs were exposed in a block design throughout their larval stages until they metamorphosed. Nitrate at 100 mg/l increased larval mortality and reduced the growth of developing tadpoles. Perchlorate at 15 mg/l was not lethal to larvae, but inhibited metamorphosis, resulting in high mortality during metamorphosis compared with control animals. At 30 mg/l of perchlorate, larvae experienced increased mortality. Together, the chemicals exhibited additive effects on developmental rate and survival. When nitrate and perchlorate occur simultaneously in the environment, they can have greater effects on an amphibian population than either chemical alone.
机译:两栖动物对多种农用化学品敏感。硝酸盐化合物通常用作肥料,而高氯酸盐则作为军事工业和某些硝酸盐肥料的副产品出现。两种化合物都是高度可溶的,并且很容易在地下水和地表水之间扩散,从而潜在地影响两栖动物。硝酸盐减少了胚胎和幼虫的存活和发育,而高氯酸盐具有众所周知的促甲状腺作用并抑制变态。我们提出了评估这两种化学物质对南部豹蛙(Rana sphenocephala)幼虫的发育和变态的综合影响的实验结果。个体青蛙在其整个幼虫阶段以块状设计暴露,直到它们变形。 100 mg / l的硝酸盐可增加幼虫死亡率,并减少发育中的t的生长。 15 mg / l的高氯酸盐对幼虫没有致死性,但抑制了变态,与对照动物相比,变态期间的死亡率很高。高氯酸盐浓度为30 mg / l时,幼虫死亡率增加。这些化学物质共同对发育速度和存活率表现出累加效应。当环境中同时发生硝酸盐和高氯酸盐时,它们对两栖动物种群的影响要大于对任何一种化学物质的影响。

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