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Interactions of Wildfire, Landscape Position, and Soil Depth in Structuring Post-Fire Soil Microbial Communities

机译:火灾后土壤微生物群落结构中野火,景观位置和土壤深度的相互作用

摘要

Landscape position and depth in the soil column influence the movement of microbial substrate throughout a catchment, from upslope areas to downslope areas, thereby impacting nutrient cycling rates and capabilities of the microbial communities in those areas. Wildfire also shapes the biogeochemistry of the landscape, creating a mosaic with variations in substrate type and concentration that also influence microbial communities and biogeochemical cycling. Nitrogen (N) in particular is altered by wildfire, as it is easily volatilized and the removal of organic matter (OM) reduces N inputs. We aimed to understand how landscape position and soil depth, first and foremost, influence microbial communities and their N-cycling, but also how this may differ from wildfires and their relative impacts on the soil microbial communities. Landscape position proved to influence few soil and microbial characteristics, while movement from soil surface to deep in the column and the incidence of wildfire caused many variations in soil physical and biogeochemical cycling properties. The interaction of landscape position and soil depth also showed little variation in any measurements, while wildfire and soil depth interactions showed drastic changes that indicate high order controls over the soil microbial community. It can be surmised that while landscape position is important for many soil properties, it is soil depth and wildfire that truly control the soil microbial communities and their N-cycling capabilities.
机译:土壤柱中的景观位置和深度会影响整个集水区微生物底物从上坡区到下坡区的运动,从而影响这些地区的养分循环速率和微生物群落的能力。野火还塑造了景观的生物地球化学,形成了具有不同底物类型和浓度变化的马赛克,这也影响了微生物群落和生物地球化学循环。尤其是野火会改变氮(N),因为它很容易挥发,有机物(OM)的去除会减少氮的输入。我们的目的是首先了解景观位置和土壤深度如何影响微生物群落及其氮循环,但也可能与野火及其对土壤微生物群落的相对影响有何不同。事实证明,景观位置对土壤和微生物的影响很小,而从土壤表面到土壤深处的移动以及野火的发生引起了土壤物理和生物地球化学循环特性的许多变化。景观位置和土壤深度的相互作用在任何测量中也显示出很小的变化,而野火和土壤深度的相互作用则显示出剧烈的变化,表明对土壤微生物群落的高阶控制。可以推测,尽管景观位置对于许多土壤特性而言很重要,但真正控制土壤微生物群落及其氮循环能力的却是土壤深度和野火。

著录项

  • 作者

    Murphy Margretta A.;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en_US
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