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两栖动物变态发育过程中壶菌感染从口器向四肢后部的转变。

Transition of chytrid fungus infection from mouthparts to hind limbs during amphibian metamorphosis.

作者信息

McMahon Taegan A, Rohr Jason R

机构信息

Department of Biology, University of Tampa, 401 W. Kennedy Ave, Tampa, FL, 33606, USA,

出版信息

Ecohealth. 2015 Mar;12(1):188-93. doi: 10.1007/s10393-014-0989-9. Epub 2014 Nov 11.

Abstract

The chytrid fungus, Batrachochytrium dendrobatidis (Bd), is implicated in worldwide amphibian declines. Bd has been shown to qualitatively transition from the mouthparts of tadpoles to the hindlimbs during metamorphosis, but we lack evidence of consistency in the timing of this transition across amphibian species. We also do not have predictive functions for the abundance of Bd in mouthparts and limbs as tadpoles develop or for the relationship between keratin and Bd abundance. Hence, researchers presently have little guidance on where to sample developing amphibians to maximize Bd detection, which could affect the accuracy of prevalence and abundance estimates for this deadly pathogen. Here, we show consistency in the timing of the transition of Bd from mouthparts to hind limbs across two frog species (Osteopilus septentrionalis and Mixophyes fasciolatus). Keratin and Bd simultaneously declined from the mouthparts starting at approximately Gosner stage 40. However, keratin on the hindlimbs began to appear at approximately stage 38 but, on average, Bd was not detectable on the hindlimbs until approximately stage 40, suggesting a lag between keratin and Bd arrival. Predictive functions for the relationships between developmental stage and keratin and developmental stage and Bd for mouthparts and hind limbs are provided so that researchers can optimize sampling designs and minimize erroneous conclusions associated with missing Bd infections or misestimating Bd abundance.

摘要

壶菌,即蛙壶菌(Batrachochytrium dendrobatidis,简称Bd),被认为与全球两栖动物数量减少有关。研究表明,在变态发育过程中,Bd会从蝌蚪的口器定性地转移到后肢,但我们缺乏证据证明这种转移在两栖动物物种间的时间一致性。我们也没有关于蝌蚪发育过程中口器和四肢中Bd丰度的预测函数,或者角蛋白与Bd丰度之间关系的预测函数。因此,目前研究人员对于在何处采集发育中的两栖动物样本以最大限度地检测到Bd几乎没有指导,这可能会影响对这种致命病原体流行率和丰度估计的准确性。在此,我们展示了在两种蛙类(北方骨蛙和带纹拟髭蟾)中,Bd从口器向后肢转移的时间具有一致性。从大约戈斯纳40期开始,口器中的角蛋白和Bd同时减少。然而,后肢上的角蛋白大约在38期开始出现,但平均而言,直到大约40期才能在后肢上检测到Bd,这表明角蛋白和Bd的出现存在滞后。我们提供了发育阶段与口器和后肢角蛋白以及发育阶段与口器和后肢Bd之间关系的预测函数,以便研究人员能够优化采样设计,并尽量减少与遗漏Bd感染或错误估计Bd丰度相关的错误结论。

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