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Site-Specific Microbial Decomposer Communities Do Not Imply Faster Decomposition: Results from a Litter Transplantation Experiment

机译:特定地点的微生物分解者社区并不意味着分解更快:来自小动物移植实验的结果

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摘要

Microbes drive leaf litter decomposition, and their communities are adapted to the local vegetation providing that litter. However, whether these local microbial communities confer a significant home-field advantage in litter decomposition remains unclear, with contrasting results being published. Here, we focus on a litter transplantation experiment from oak forests (home site) to two away sites without oak in South Tyrol (Italy). We aimed to produce an in-depth analysis of the fungal and bacterial decomposer communities using Illumina sequencing and qPCR, to understand whether local adaptation occurs and whether this was associated with litter mass loss dynamics. Temporal shifts in the decomposer community occurred, reflecting changes in litter chemistry over time. Fungal community composition was site dependent, while bacterial composition did not differ across sites. Total litter mass loss and rates of litter decomposition did not change across sites. Litter quality influenced the microbial community through the availability of different carbon sources. Additively, our results do not support the hypothesis that locally adapted microbial decomposers lead to a greater or faster mass loss. It is likely that high functional redundancy within decomposer communities regulated the decomposition, and thus greater future research attention should be given to trophic guilds rather than taxonomic composition.
机译:微生物驱动叶片凋落物分解,其群落适应提供凋落物的当地植被。然而,尚不清楚这些局部微生物群落是否在凋落物分解方面具有显着的本田优势,目前还没有相反的结果。在这里,我们着重于从橡树林(家园)到意大利蒂罗尔州(South Tyrol)没有橡树的两个异地的凋落物移植实验。我们旨在使用Illumina测序和qPCR对真菌和细菌分解物群落进行深入分析,以了解是否发生局部适应以及这是否与垫料质量损失动态相关。分解者群体发生了时间变化,反映了垫料化学随时间的变化。真菌群落组成是位点依赖性的,而细菌组成在位点之间没有差异。不同地点的总凋落物质量损失和凋落物分解速率没有变化。垃圾质量通过不同碳源的可用性影响了微生物群落。另外,我们的结果不支持局部适应微生物分解剂导致更大或更快速质量损失的假设。分解器社区中的高功能冗余很可能控制了分解,因此未来应将更多的研究重点放在营养行业而不是分类学上。

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