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

蛋白质组 分解者 生物 营养循环 垃圾箱 植物凋落物 营养物 生物地球化学循环 微生物种群生物学 异养 生态学 丰度(生态学) 微生物生态学 基因组 生态系统 细菌 生物化学 基因 遗传学
作者
Thomas Schneider,Katharina Keiblinger,Emanuel Schmid,Katja Sterflinger,Günther Ellersdorfer,Bernd Roschitzki,Andreas Richter,Leo Eberl,Sophie Zechmeister‐Boltenstern,Katharina Riedel
出处
期刊:The ISME Journal [Springer Nature]
卷期号:6 (9): 1749-1762 被引量:719
标识
DOI:10.1038/ismej.2012.11
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.
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