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Bacterial, fungal, and plant communities exhibit no biomass or compositional response to two years of simulated nitrogen deposition in a semiarid grassland

机译:细菌、真菌和植物群落对半干旱草原两年模拟氮沉降没有表现出生物量或成分响应

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摘要

Nitrogen (N) deposition affects myriad aspects of terrestrial ecosystem structure and function, and microbial communities may be particularly sensitive to anthropogenic N inputs. However, our understanding of N deposition effects on microbial communities is far from complete, especially for drylands where data are comparatively rare. To address the need for an improved understanding of dryland biological responses to N deposition, we conducted a two-year fertilization experiment in a semiarid grassland on the Colorado Plateau in the southwestern United States. We evaluated effects of varied levels of N inputs on archaeal, bacterial, fungal and chlorophyte community composition within three microhabitats: biological soil crusts (biocrusts), soil below biocrusts, and the plant rhizosphere. Surprisingly, N addition did not affect the community composition or diversity of any of these microbial groups; however, microbial community composition varied significantly among sampling microhabitats. Further, while plant richness, diversity, and cover showed no response to N addition, there were strong linkages between plant properties and microbial community structure. Overall, these findings highlight the potential for some dryland communities to have limited biotic ability to retain augmented N inputs, possibly leading to large N losses to the atmosphere and to aquatic systems.
机译:氮(N)沉降影响陆地生态系统结构和功能的方方面面,微生物群落可能对人为氮输入特别敏感。然而,我们对氮沉降对微生物群落影响的理解还远未完成,特别是对于数据相对稀少的旱地。为了满足对旱地生物对氮沉降反应的更好理解的需要,我们在美国西南部科罗拉多高原的半干旱草原进行了为期两年的施肥实验。我们评估了不同水平的氮输入对生物土壤结皮(生物结皮)、生物结皮以下土壤和植物根际三个微生境内古细菌、细菌、真菌和叶绿植物群落组成的影响。令人惊讶的是,氮添加不会影响这些微生物群的群落组成或多样性;然而,微生物群落组成在采样微生境之间差异很大。此外,虽然植物丰富度、多样性和覆盖度对氮添加没有反应,但植物特性与微生物群落结构之间存在很强的联系。总体而言,这些发现突出表明,一些旱地群落的生物能力有限,无法保留增加的氮输入,可能导致大气和水生系统的大量氮损失。

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