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Soil animal responses to moisture availability are largely scale, not ecosystem dependent: insight from a cross-site study

机译:土壤动物对水分可用性的反应主要是规模化,而非生态系统依赖性:来自跨地点研究的洞察力

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摘要

abstract: Climate change will result in reduced soil water availability in much of the world either due to changes in precipitation or increased temperature and evapotranspiration. How communities of mites and nematodes may respond to changes in moisture availability is not well known, yet these organisms play important roles in decomposition and nutrient cycling processes. We determined how communities of these organisms respond to changes in moisture availability and whether common patterns occur along fine-scale gradients of soil moisture within four individual ecosystem types (mesic, xeric and arid grasslands and a polar desert) located in the western United States and Antarctica, as well as across a cross-ecosystem moisture gradient (CEMG) of all four ecosystems considered together. An elevation transect of three sampling plots was monitored within each ecosystem and soil samples were collected from these plots and from existing experimental precipitation manipulations within each ecosystem once in fall of 2009 and three times each in 2010 and 2011. Mites and nematodes were sorted to trophic groups and analyzed to determine community responses to changes in soil moisture availability. We found that while both mites and nematodes increased with available soil moisture across the CEMG, within individual ecosystems, increases in soil moisture resulted in decreases to nematode communities at all but the arid grassland ecosystem; mites showed no responses at any ecosystem. In addition, we found changes in proportional abundances of mite and nematode trophic groups as soil moisture increased within individual ecosystems, which may result in shifts within soil food webs with important consequences for ecosystem functioning. We suggest that communities of soil animals at local scales may respond predictably to changes in moisture availability regardless of ecosystem type but that additional factors, such as climate variability, vegetation composition, and soil properties may influence this relationship over larger scales.
机译:摘要:由于降水变化或温度升高和蒸散量增加,气候变化将导致世界上大部分地区的土壤水供应减少。螨和线虫群落如何响应水分供应的变化尚不清楚,但是这些生物在分解和养分循环过程中起着重要作用。我们确定了这些生物群落如何响应水分供应的变化,以及在美国西部和西部的四种单独的生态系统类型(中,干旱和干旱草原以及极地沙漠)内土壤水分的细微梯度变化过程中是否出现常见模式。南极洲以及整个四个生态系统的跨生态系统湿度梯度(CEMG)。在每个生态系统中监测了三个采样点的高程样线,并从这些样点和每个生态系统中现有的实验降水操作中收集了土壤样品,分别于2009年秋季和2010年和2011年分别进行了三次和三次。并进行分析以确定社区对土壤水分供应变化的反应。我们发现,尽管整个CEMG的螨虫和线虫都随土壤水分的增加而增加,但在单个生态系统中,土壤水分的增加导致除干旱草原生态系统以外的所有线虫群落减少;螨对任何生态系统都没有反应。此外,我们发现,随着单个生态系统中土壤水分的增加,螨虫和线虫营养类群的比例丰度也发生了变化,这可能导致土壤食物网中的变化,对生态系统功能产生重要影响。我们建议,无论生态系统类型如何,地方尺度上的土壤动物群落都可以对水分供应的变化做出可预测的响应,但是其他因素(例如气候变异性,植被组成和土壤特性)可能会在更大尺度上影响这种关系。

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