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首页> 外文期刊>Journal of Parasitology >MODERATE ECHINOSTOMA TRIVOLVIS INFECTION HAS NO EFFECTS ON PHYSIOLOGY AND FITNESS-RELATED TRAITS OF LARVAL PICKEREL FROGS (RANA PALUSTRIS)
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MODERATE ECHINOSTOMA TRIVOLVIS INFECTION HAS NO EFFECTS ON PHYSIOLOGY AND FITNESS-RELATED TRAITS OF LARVAL PICKEREL FROGS (RANA PALUSTRIS)

机译:中度松果体感染不影响幼体皮毛蛙的生理性状和与体质相关的性状

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High intensity infections of Echinostoma trivolvis is metacercariae decrease survival and growth of young amphibian larvae. However, in nature, parasites are highly aggregated, which results in a large proportion of the amphibian population being only moderately infected. Survival and growth responses at these more-common, low-infection levels remain poorly studied. Thus, we investigated the effects of moderate Echinostoma trivolvis metacercariae infection (following exposure to 0, 10, 30, or 90 cercariae) on the growth and development of pickerel frog (Rana palustris) tadpoles. We measured metabolism to determine whether increased energy expenditure is a potential physiological mechanism underlying previously documented reduced growth. Furthermore, we quantified tadpole intestine size, which can exhibit plasticity in response to changing metabolic demands, and we characterized metacercariae distribution in tadpole kidneys. Metacercariae encysted in the pronephros significantly more than in the mesonephros, but tended to occur equally in right and left kidneys. Two mo post-infection (PI), there were no changes in tadpole survival, development, intestine size, or growth related to metacercariae infection. Similarly, metacercariae did not significantly increase metabolic rates during encystment or at I mo PI. Our study demonstrated that modest E. trivolvis infections, representative of a large proportion of the host population, had no detectable effects on fitness-related traits in laboratory isolation from other ecological variables.
机译:棘皮E虫的高强度感染是meta虫,降低了两栖幼虫的存活和生长。但是,在自然界中,寄生虫高度聚集,这导致两栖动物种群中的大部分仅受到中等程度的感染。在这些较常见的低感染水平下的存活和生长反应仍然缺乏研究。因此,我们调查了中度棘皮E虫meta尾infection感染(暴露于0、10、30或90尾ol后)对pick蛙(R蛙)t生长和发育的影响。我们测量了新陈代谢,以确定增加的能量消耗是否是先前记录的生长减少的潜在生理机制。此外,我们量化了in肠的大小,它可以响应不断变化的代谢需求而表现出可塑性,并且我们可以表征meta肾脏中尾cer的分布。前尾中的cer尾than比中肾significantly中的more尾significantly明显多,但往往在右肾和左肾中均等发生。感染后两个月(PI),ad的存活,发育,肠的大小或与infection尾infection相关的生长均无变化。同样,在包囊过程中或在免疫接种后,meta尾虫并没有显着提高代谢率。我们的研究表明,在实验室隔离其他生态变量的过程中,代表大部分寄主人口的中度大肠杆菌感染没有对健身相关性状产生可检测的影响。

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