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Effects of visible implanted elastomer marking on physiological traits of frogs

机译:可见的植入弹性体标记对青蛙生理特性的影响

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摘要

Amphibians possess innate immune defences, including antimicrobial peptides and symbiotic bacterial communities, that can protect them from infectious diseases, including chytridiomycosis. On-going research is attempting to use amphibian symbiotic bacteria to develop probiotic treatments that can protect hosts from the causative agent of chytridiomycosis, the fungal pathogen Batrachochytrium dendrobatidis. Events that cause disruption of symbiotic bacterial communities or deplete peptide stores could increase the susceptibility of individuals to disease and may have implications for amphibians involved in probiotic trials or time course studies that investigate symbiotic bacterial communities. It has previously been shown that passive integrated transponder tagging of frogs causes a rapid (within 24 h) and major proliferation of micro-organisms on the skin. Here, we show that marking of red-eyed tree frogs (Agalychnis callidryas) with visible elastomer has no effect on adrenal response (represented by faecal glucocorticoid metabolite concentrations) or peptide production, although there was evidence of a slightly greater microbial abundance associated with the skin of marked frogs 2 weeks after tagging. The results indicate that visible elastomer may be a preferable marking technique to passive integrated transponder tagging, particularly in the context of probiotic trials or time course studies that investigate symbiotic bacterial communities. More work is required to determine the effects of different marking techniques on physiological responses of amphibians, whether these physiological responses are consistent across host species and whether such ‘non-invasive’ marking methods affect the susceptibility of amphibians to infectious pathogens, such as B. dendrobatidis.
机译:两栖动物具有先天免疫防御能力,包括抗菌肽和共生细菌群落,可以保护他们免受感染,包括壶菌病。正在进行的研究正在尝试使用两栖类共生细菌来开发益生菌治疗方法,以保护宿主免受乳糜菌病的病原体真菌病原体Batrachochytrium dendrobatidis的侵害。导致共生细菌群落破坏或肽存储不足的事件可能会增加个体对疾病的易感性,并且可能会对参与益生菌试验或调查共生细菌群落的时程研究的两栖动物产生影响。先前已经证明,青蛙的被动集成应答器标记会导致皮肤上微生物的快速(24小时内)扩散和大量增殖。在这里,我们显示了用可见的弹性体标记红眼树蛙(Agalychnis callidryas)对肾上腺反应(以粪便糖皮质激素代谢物的浓度表示)或肽产生没有影响,尽管有证据表明与之相关的微生物丰度略高。标记后2周的蛙蛙皮肤。结果表明,可见弹性体可能是被动集成应答器标记的首选标记技术,尤其是在益生菌试验或调查共生细菌群落的时程研究中。需要更多的工作来确定不同标记技术对两栖动物的生理反应的影响,这些生理反应在宿主物种之间是否一致以及此类``非侵入式''标记方法是否影响两栖动物对传染性病原体(如B)的易感性。登德罗巴蒂迪斯。

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