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土壤微生物群落与麋鹿觅食强度:对蒿属草原土壤生物地球化学循环的影响

Soil microbial communities and elk foraging intensity: implications for soil biogeochemical cycling in the sagebrush steppe.

作者信息

Cline Lauren C, Zak Donald R, Upchurch Rima A, Freedman Zachary B, Peschel Anna R

机构信息

Department of Plant and Microbial Biology, University of Minnesota, St. Paul, MN, USA.

School of Natural Resources & Environment, University of Michigan, Ann Arbor, MI, USA.

出版信息

Ecol Lett. 2017 Feb;20(2):202-211. doi: 10.1111/ele.12722.

Abstract

Foraging intensity of large herbivores may exert an indirect top-down ecological force on soil microbial communities via changes in plant litter inputs. We investigated the responses of the soil microbial community to elk (Cervus elaphus) winter range occupancy across a long-term foraging exclusion experiment in the sagebrush steppe of the North American Rocky Mountains, combining phylogenetic analysis of fungi and bacteria with shotgun metagenomics and extracellular enzyme assays. Winter foraging intensity was associated with reduced bacterial richness and increasingly distinct bacterial communities. Although fungal communities did not respond linearly to foraging intensity, a greater β-diversity response to winter foraging exclusion was observed. Furthermore, winter foraging exclusion increased soil cellulolytic and hemicellulolytic enzyme potential and higher foraging intensity reduced chitinolytic gene abundance. Thus, future changes in winter range occupancy may shape biogeochemical processes via shifts in microbial communities and subsequent changes to their physiological capacities to cycle soil C and N.

摘要

大型食草动物的觅食强度可能会通过植物凋落物输入的变化,对土壤微生物群落施加一种间接的自上而下的生态作用力。我们在北美落基山脉的蒿属植物草原上开展了一项长期觅食排除实验,结合真菌和细菌的系统发育分析、鸟枪法宏基因组学以及细胞外酶分析,研究了土壤微生物群落对麋鹿(Cervus elaphus)冬季活动范围占据情况的响应。冬季觅食强度与细菌丰富度降低以及细菌群落差异增大有关。尽管真菌群落对觅食强度的响应并非呈线性,但观察到其对冬季觅食排除的β多样性响应更大。此外,冬季觅食排除增加了土壤纤维素分解酶和半纤维素分解酶的潜力,而较高的觅食强度降低了几丁质分解基因的丰度。因此,未来冬季活动范围占据情况的变化可能会通过微生物群落的转变以及随后其循环土壤碳和氮的生理能力的变化,塑造生物地球化学过程。

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