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Comparative study of acetylcholinesterase and glutathione S-transferase activities of closely related cave and surface Asellus aquaticus (Isopoda: Crustacea)

机译:密切相关的洞穴和表层水生阿瑟氏菌(Isopoda:甲壳纲)的乙酰胆碱酯酶和谷胱甘肽S-转移酶活性的比较研究

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摘要

The freshwater isopod crustacean Asellus aquaticus has recently been developed as an emerging invertebrate cave model for studying evolutionary and developmental biology. Mostly morphological and genetic differences between cave and surface A. aquaticus populations have been described up to now, while scarce data are available on other aspects, including physiology. The purpose of this study was to advance our understanding of the physiological differences between cave A. aquaticus and its surface-dwelling counterparts. We sampled two surface populations from the surface section of the sinking Pivka River (central Slovenia, Europe), i.e. locality Pivka Polje, and locality Planina Polje, and one cave population from the subterranean section of the sinking Pivka River, i.e. locality Planina Cave. Animals were sampled in spring, summer and autumn. We measured the activities of acetylcholinesterase (AChE) and glutathione S-transferase (GST) in individuals snap-frozen in the field immediately after collection. Acetylcholinesterase is likely related to animals’ locomotor activity, while GST activity is related to the metabolic activity of an organism. Our study shows significantly lower AChE and GST activities in the cave population in comparison to both surface A. aquaticus populations. This confirms the assumption that cave A. aquaticus have lower locomotor and metabolic activity than surface A. aquaticus in their respective natural environments. In surface A. aquaticus populations, seasonal fluctuations in GST activity were observed, while these were less pronounced in individuals from the more stable cave environment. On the other hand, AChE activity was generally season-independent in all populations. To our knowledge, this is the first study of its kind conducted in A. aquaticus. Our results show that among closely related cave and surface A. aquaticus populations also physiological differences are present besides the morphological and genetic. These findings contribute to a better understanding of the biology of A. aquaticus and cave crustaceans in general.
机译:淡水等足类甲壳动物Asellus aquaticus最近被开发为新兴的无脊椎动物洞穴模型,用于研究进化和发育生物学。迄今为止,大多数文献描述了洞穴和水生曲霉种群之间的形态和遗传差异,而在包括生理学在内的其他方面却缺乏可用的数据。这项研究的目的是加深我们对洞穴A. aticticus及其栖于地面的对虾之间生理差异的理解。我们从下沉的Pivka河(欧洲中部斯洛文尼亚)地表部分采样了两个地表种群,即地点Pivka Polje和地区Planina Polje,并从下沉的Pivka河的地下部分即地点Planina洞穴中采样了一个洞穴种群。在春季,夏季和秋季对动物进行了采样。我们在收集后立即在现场速冻的个体中测量了乙酰胆碱酯酶(AChE)和谷胱甘肽S-转移酶(GST)的活性。乙酰胆碱酯酶可能与动物的运动能力有关,而GST活性与生物体的代谢活性有关。我们的研究表明,与两个表层水生种群相比,洞穴种群的AChE和GST活性明显降低。这证实了这样的假设:在各自的自然环境中,水生A. aticticus具有比水生A. aticticus低的运动和代谢活性。在水生土壤曲霉种群中,观察到GST活性的季节性波动,而在更稳定的洞穴环境中个体的波动较小。另一方面,在所有人群中,AChE活性通常与季节无关。据我们所知,这是在水生阿米氏菌中进行的同类研究中的第一次。我们的研究结果表明,在紧密相关的洞穴和地表A. aquaticus 种群中,除了形态和遗传因素外,还存在生理差异。这些发现有助于更好地理解 A 的生物学特性。 aquaticus 和一般的甲壳类动物。

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