Restoration age and reintroduced bison may shape soil bacterial communities in restored tallgrass prairies

时序 生物 物种丰富度 生态学 放牧 生态演替 生态系统 草原 栖息地 扰动(地质) 古生物学
作者
Nicholas A. Barber,Desirae M Klimek,Jennifer K. Bell,Wesley D. Swingley
出处
期刊:FEMS Microbiology Ecology [Oxford University Press]
卷期号:99 (3) 被引量:2
标识
DOI:10.1093/femsec/fiad007
摘要

Knowledge of how habitat restoration shapes soil microbial communities often is limited despite their critical roles in ecosystem function. Soil community diversity and composition change after restoration, but the trajectory of these successional changes may be influenced by disturbances imposed for habitat management. We studied soil bacterial communities in a restored tallgrass prairie chronosequence for >6 years to document how diversity and composition changed with age, management through fire, and grazing by reintroduced bison, and in comparison to pre-restoration agricultural fields and remnant prairies. Soil C:N increased with restoration age and bison, and soil pH first increased and then declined with age, although bison weakened this pattern. Bacterial richness and diversity followed a similar hump-shaped pattern as soil pH, such that the oldest restorations approached the low diversity of remnant prairies. β-diversity patterns indicated that composition in older restorations with bison resembled bison-free sites, but over time they became more distinct. In contrast, younger restorations with bison maintained unique compositions throughout the study, suggesting bison disturbances may cause a different successional trajectory. We used a novel random forest approach to identify taxa that indicate these differences, finding that they were frequently associated with bacteria that respond to grazing in other grasslands.
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