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Leaf Litter Inhibits Growth of an Amphibian Fungal Pathogen

机译:凋落物抑制两栖真菌病原菌的生长

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Past studies have found a heterogeneous distribution of the amphibian chytrid fungal pathogen, Batrachochytrium dendrobatidis (Bd). Recent studies have accounted for some of this heterogeneity through a positive association between canopy cover and Bd abundance, which is attributed to the cooling effect of canopy cover. We questioned whether leaf litter inputs that are also associated with canopy cover might also alter Bd growth. Leaf litter inputs exhibit tremendous interspecific chemical variation, and we hypothesized that Bd growth varies with leachate chemistry. We also hypothesized that Bd uses leaf litter as a growth substrate. To test these hypotheses, we conducted laboratory trials in which we exposed cultures of Bd to leachate of 12 temperate leaf litter species at varying dilutions. Using a subset of those 12 litter species, we also exposed Bd to pre-leached litter substrate. We found that exposure to litter leachate and substrate reduced Bd spore and sporangia densities, although there was substantial variation among treatments. In particular, Bd densities were inversely correlated with concentrations of phenolic acids. We conducted a field survey of phenolic concentrations in natural wetlands which verified that the leachate concentrations in our lab study are ecologically relevant. Our study reinforces prior indications that positive associations between canopy cover and Bd abundance are likely mediated by water temperature effects, but this phenomenon might be counteracted by changes in aquatic chemistry from leaf litter inputs.
机译:过去的研究已经发现两栖类chytrid真菌病原体Batrachochytrium dendrobatidis(Bd)的分布不均。最近的研究通过冠层覆盖与Bd丰度之间的正相关来解释这种异质性,这归因于冠层覆盖的降温作用。我们质疑也与树冠覆盖物相关的凋落物输入是否也可能改变Bd的生长。凋落物的输入表现出巨大的种间化学变化,我们假设Bd的生长随渗滤液化学变化。我们还假设Bd使用枯枝落叶作为生长基质。为了检验这些假设,我们进行了实验室试验,在该试验中,将Bd培养物暴露于不同稀释度的12种温带叶子凋落物的浸出液中。使用这12种垃圾种类的子集,我们还将Bd暴露于预浸的垃圾底物。我们发现暴露于垃圾渗滤液和底物会降低Bd孢子和孢子囊的密度,尽管处理之间存在很大差异。特别地,Bd密度与酚酸的浓度成反比。我们对天然湿地中的酚浓度进行了实地调查,这证实了我们实验室研究中的渗滤液浓度与生态相关。我们的研究强调了先前的迹象,即冠层覆盖与Bd丰度之间的正相关性可能是由水温效应介导的,但是这种现象可能会被来自凋落物输入的水生化学变化所抵消。

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