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Subtle effects of environmental stress observed in the early life stages of the Common frog Rana temporaria

机译:在普通蛙蛙蛙的早期生活阶段观察到的环境压力的微妙影响

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摘要

Worldwide amphibian populations are declining due to habitat loss, disease and pollution. Vulnerability to environmental contaminants such as pesticides will be dependent on the species, the sensitivity of the ontogenic life stage and hence the timing of exposure and the exposure pathway. Herein we investigated the biochemical tissue ‘fingerprint’ in spawn and early-stage tadpoles of the Common frog, Rana temporaria, using attenuated total reflection-Fourier-transform infrared (ATR-FTIR) spectroscopy with the objective of observing differences in the biochemical constituents of the respective amphibian tissues due to varying water quality in urban and agricultural ponds. Our results demonstrate that levels of stress (marked by biochemical constituents such as glycogen that are involved in compensatory metabolic mechanisms) can be observed in tadpoles present in the pond most impacted by pollution (nutrients and pesticides), but large annual variability masked any inter-site differences in the frog spawn. ATR-FTIR spectroscopy is capable of detecting differences in tadpoles that are present in selected ponds with different levels of environmental perturbation and thus serves as a rapid and cost effective tool in assessing stress-related effects of pollution in a vulnerable class of organism.
机译:由于栖息地的丧失,疾病和污染,全球两栖动物数量正在减少。对环境污染物(例如农药)的脆弱性将取决于物种,个体生命阶段的敏感性,并因此取决于暴露时间和暴露途径。在这里,我们使用衰减全反射傅里叶变换红外光谱(ATR-FTIR)光谱法研究了普通蛙蛙蛙的产卵和早期t的生化组织“指纹”,目的是观察其生物化学成分的差异。由于城市和农业池塘水质的变化,各自的两栖动物组织。我们的结果表明,在受污染(营养素和农药)影响最大的池塘most中,可以观察到压力水平(由生物化学成分如糖原引起的代偿性代谢机制所标记),但较大的年度变化掩盖了任何相互之间的相互影响。青蛙产卵的位点差异。 ATR-FTIR光谱仪能够检测环境中不同水平的选定池塘中存在的t的差异,因此,它是评估脆弱类生物体与压力相关的污染影响的快速且经济高效的工具。

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