Forest harvesting reduces the soil metagenomic potential for biomass decomposition

生物 基因组 生物量(生态学) 土壤碳 营养循环 微生物种群生物学 生态系统 生态学 生产力 环境科学 农学 农林复合经营 土壤水分 生物化学 遗传学 宏观经济学 基因 细菌 经济
作者
Erick Cardenas,J. M. Kranabetter,Graeme D. Hope,Kendra Maas,Steven Hallam,William W. Mohn
出处
期刊:The ISME Journal [Springer Nature]
卷期号:9 (11): 2465-2476 被引量:140
标识
DOI:10.1038/ismej.2015.57
摘要

Soil is the key resource that must be managed to ensure sustainable forest productivity. Soil microbial communities mediate numerous essential ecosystem functions, and recent studies show that forest harvesting alters soil community composition. From a long-term soil productivity study site in a temperate coniferous forest in British Columbia, 21 forest soil shotgun metagenomes were generated, totaling 187 Gb. A method to analyze unassembled metagenome reads from the complex community was optimized and validated. The subsequent metagenome analysis revealed that, 12 years after forest harvesting, there were 16% and 8% reductions in relative abundances of biomass decomposition genes in the organic and mineral soil layers, respectively. Organic and mineral soil layers differed markedly in genetic potential for biomass degradation, with the organic layer having greater potential and being more strongly affected by harvesting. Gene families were disproportionately affected, and we identified 41 gene families consistently affected by harvesting, including families involved in lignin, cellulose, hemicellulose and pectin degradation. The results strongly suggest that harvesting profoundly altered below-ground cycling of carbon and other nutrients at this site, with potentially important consequences for forest regeneration. Thus, it is important to determine whether these changes foreshadow long-term changes in forest productivity or resilience and whether these changes are broadly characteristic of harvested forests.
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