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Who is who in litter decomposition? Metaproteomics reveals major microbial players and their biogeochemical functions

机译:垃圾分解谁是谁?蛋白质组学揭示了主要的微生物菌种及其生物地球化学功能

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摘要

Leaf-litter decomposition is a central process in carbon cycling; however, our knowledge about the microbial regulation of this process is still scarce. Metaproteomics allows us to link the abundance and activity of enzymes during nutrient cycling to their phylogenetic origin based on proteins, the ‘active building blocks' in the system. Moreover, we employed metaproteomics to investigate the influence of environmental factors and nutrients on the decomposer structure and function during beech litter decomposition. Litter was collected at forest sites in Austria with different litter nutrient content. Proteins were analyzed by 1-D-SDS-PAGE followed by liquid-chromatography and tandem mass-spectrometry. Mass spectra were assigned to phylogenetic and functional groups by a newly developed bioinformatics workflow, assignments being validated by complementary approaches. We provide evidence that the litter nutrient content and the stoichiometry of C:N:P affect the decomposer community structure and activity. Fungi were found to be the main producers of extracellular hydrolytic enzymes, with no bacterial hydrolases being detected by our metaproteomics approach. Detailed investigation of microbial succession suggests that it is influenced by litter nutrient content. Microbial activity was stimulated at higher litter nutrient contents via a higher abundance and activity of extracellular enzymes.
机译:凋落物分解是碳循环的核心过程。但是,我们对该过程的微生物调控的了解仍然很少。元蛋白质组学使我们能够将养分循环过程中酶的丰度和活性与基于蛋白质(系统中的“活性构件”)的系统发生起源联系起来。此外,我们使用元蛋白质组学研究了环境因素和养分对山毛榉凋落物分解过程中分解物结构和功能的影响。凋落物是在奥地利森林地点收集的,其凋落物养分含量不同。通过1-D-SDS-PAGE,液相色谱和串联质谱分析蛋白质。通过新开发的生物信息学工作流程将质谱分配给系统发生和功能组,并通过补充方法验证了分配。我们提供的证据表明,垫料养分含量和C:N:P的化学计量会影响分解者的群落结构和活性。发现真菌是细胞外水解酶的主要生产者,我们的元蛋白质组学方法未检测到细菌水解酶。对微生物演替的详细研究表明,它受垫料养分含量的影响。通过较高的丰富度和细胞外酶活性,在较高的垫料养分含量下刺激了微生物活性。

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