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Effects of the acanthocephalan Polymorphus minutus and the microsporidian Dictyocoela duebenum on energy reserves and stress response of cadmium exposed Gammarus fossarum

机译:刺五加多孢子虫和微孢子虫Dictyocoela duebenum对暴露于镉的γ-镰刀菌的能量储备和应激反应的影响

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摘要

Amphipods are commonly parasitized by acanthocephalans and microsporidians and co-infections are found frequently. Both groups of parasites are known to have severe effects on their host. For example, microsporidians can modify host sex ratio and acanthocephalans can manipulate the behavior of the amphipod to promote transmission to the final host. These effects influence host metabolism in general and will also affect the ability of amphipods to cope with additional stressors such as environmental pollution, e.g., by toxic metals. Here we tested the effects of sub-lethal concentrations of cadmium on glycogen and lipid levels, as well as on the 70kDa heat shock protein (hsp70) response of field collected Gammarus fossarum, which were naturally infected with microsporidians and the acanthocephalan Polymorphus minutus. Infected and uninfected G. fossarum were exposed to a nominal Cd concentration of 4 µg/L, which resembled measured aqueous Cd concentration of 2.9 µg/L in reconstituted water for 7 d at 15 °C in parallel to an unexposed control. After exposure gammarids were snap frozen, weighed, sexed and tested for microsporidian infection by PCR. Only individuals containing the microsporidian Dictyocoela duebenum were used for the further biochemical and metal analyses. P. minutus infected amphipods were significantly smaller than their uninfected conspecifics. Mortality was insignificantly increased due to cadmium exposure, but not due to parasite infection. Microsporidian infection in combination with cadmium exposure led to increased glycogen levels in female gammarids. An increase of glycogen was also found due to interaction of acanthocephalan and microsporidian infection. Elevated lipid levels were observed in all groups infected with microsporidians, while acanthocephalans had the opposite effect. A positive correlation of lipid and glycogen levels was observed. The general stress response measured in form of hsp70 was significantly increased in microsporidian infected gammarids exposed to cadmium. P. minutus did not affect the stress response of its host. Lipid levels were correlated negatively with hsp70 response, and indicated a possible increased stress susceptibility of individuals with depleted energy reserves. The results of our study clearly demonstrate the importance of parasitic infections, especially of microsporidians, for ecotoxicological research.
机译:两栖动物通常被棘头虫和微孢子虫寄生,并且经常发现共感染。已知两组寄生虫对其宿主都有严重影响。例如,小孢子虫可以改变宿主的性别比,而棘脑动物可以操纵两栖动物的行为以促进向最终宿主的传播。这些作用一般会影响宿主的新陈代谢,还将影响两栖动物应对额外压力的能力,例如环境污染,例如有毒金属的污染。在这里,我们测试了亚致死浓度的镉对糖原和脂质水平以及田间采集的牙本质的70kDa热休克蛋白(hsp70)反应的影响,这些牙自然被微孢子虫和棘头棘突虫(Acanthocephalan Polymorphus minutus)感染。将感染的和未感染的镰刀菌暴露于4 µg / L的标称Cd浓度,与未暴露的对照平行,在15°C的情况下,其在复水中的Cd水溶液测量的2.9 µg / L的Cd浓度类似于7d。暴露后,将γ短杆菌速冻,称重,定性,并通过PCR检测微孢子虫感染。仅包含微孢子虫双歧小球藻的个体用于进一步的生化和金属分析。 P. minutus感染的两栖动物明显小于其未感染的同种。由于镉暴露,死亡率没有显着增加,但由于寄生虫感染,死亡率没有显着增加。微孢子虫感染与镉暴露相结合,导致雌性γ-内酰胺酶的糖原水平升高。由于棘头虫和微孢子虫感染的相互作用,糖原也增加了。在所有感染微孢子虫的组中均观察到血脂水平升高,而棘脑动物则相反。观察到脂质和糖原水平呈正相关。在暴露于镉的微孢子虫感染的γ-芽孢杆菌中,以hsp70形式测得的一般应激反应显着增加。 P. minutus不会影响寄主的压力反应。血脂水平与hsp70反应呈负相关,表明能量储备不足的人的应激敏感性可能增加。我们的研究结果清楚地表明,寄生虫感染,特别是小孢子虫感染对于生态毒理学研究的重要性。

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