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首页> 外文期刊>Parasitology >Does the acanthocephalan parasite Polymorphus minutus modify the energy reserves and antitoxic defences of its intermediate host Gammarus roeseli?
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Does the acanthocephalan parasite Polymorphus minutus modify the energy reserves and antitoxic defences of its intermediate host Gammarus roeseli?

机译:棘头虫寄生虫多形体会改变其中间宿主Gammarus roeseli的能量储备和抗毒防御功能吗?

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In disturbed environments, infected organisms have to face both parasitic and chemical stresses. Although this situation is common, few studies have been devoted to the effects of infection on hosts' energy reserves and antitoxic defence capacities, while parasite survival depends on host survival. In this study, we tested the consequences of an infection by Polymorphus minutus on the energy reserves (protein, lipid and glycogen) and antioxidant defence capacities (reduced glutathione, γ-glutamylcysteine ligase activity) of Gammarus roeseli males and females, in the absence of chemical stress. Moreover, malondialdehyde concentration was used as a toxicity biomarker. The results revealed that in infected G. roeseli, whatever their gender and the sampling month, protein and lipid contents were lower, but glycogen contents were higher. This could be explained by the fact that the parasite diverts part of the host's energy for its own development. Moreover, glutathione concentrations and γ-glutamylcysteine ligase activity were both lower, which could lead to lower antitoxic defence in the host. These results suggest negative effects on individuals in the case of additional stress (e.g. pollutant exposure). In the absence of chemical stress, the lower malondialdehyde level in infected gammarids could imply a probable protective effect of the parasite.
机译:在受干扰的环境中,受感染的生物必须同时面对寄生和化学胁迫。尽管这种情况很普遍,但很少有研究致力于感染对宿主能量储备和抗毒防御能力的影响,而寄生虫的存活取决于宿主的存活。在这项研究中,我们测试了多角形Poly感染在没有雌激素的条件下,对肉鸡的能量储备(蛋白质,脂质和糖原)和抗氧化防御能力(​​降低的谷胱甘肽,γ-谷氨酰半胱氨酸连接酶活性)的影响。化学应力。此外,丙二醛浓度被用作毒性生物标志物。结果表明,在被感染的罗氏乳杆菌中,无论性别和采样月份如何,蛋白质和脂质含量均较低,而糖原含量较高。寄生虫会转移宿主部分能量用于自身发展,这一事实可以解释。此外,谷胱甘肽浓度和γ-谷氨酰半胱氨酸连接酶活性均较低,这可能导致宿主的抗毒防御能力降低。这些结果表明,在施加额外压力(例如接触污染物)的情况下,会对个人产生负面影响。在没有化学胁迫的情况下,被感染的γ-丙二醛中较低的丙二醛含量可能暗示了该寄生虫的可能的保护作用。

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