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Spatial distribution of soil nematodes relates to soil organic matter and life strategy

机译:土壤线虫的空间分布涉及土壤有机质和生命策略

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Soils are among the most biodiverse and densely inhabited environments on our planet. However, there is little understanding of spatial distribution patterns of belowground biota, and this hampers progress in understanding species interactions in belowground communities. We investigated the spatial distribution of nematodes, which are highly abundant and diverse metazoans in most soil ecosystems. To gain insight into nematode patchiness, we mapped distribution patterns in twelve apparently homogeneous agricultural fields (100 m x 100 m each) with equal representation of three soil textures (marine clay, river clay and sandy soil). Quantitative PCRs were used to measure the abundances of 48 distinct nematode taxa in approximate to 1200 plots. Multivariate analysis showed that within this selection of sites, soil texture more strongly affected soil nematode communities than land management. Geostatistical analysis of nematode distributions revealed both taxon-specific and field-specific patchiness. The average geostatistical range (indicating patch diameter) of 48 nematode taxa in these fields was 36 m, and related to soil organic matter. Soil organic matter content affected the spatial variance (indicating within-field variation of densities) in a life-strategy dependent manner. The r-strategists (fast-growing bacterivores and fungivores) showed a positive correlation between organic matter content and spatial variance, whereas most K-strategists (slow-growing omnivores and carnivores) showed a negative correlation. Hence, the combination of two parameters, soil organic matter content and a general life-strategy characterisation, can be used to explain the spatial distribution of nematodes at field scale.
机译:土壤是我们星球上最多的生物多样性和密集的环境之一。然而,对地下Biota的空间分布模式几乎没有了解,并且这种妨碍在理解物种在地下社区中的相互作用方面取得进展。我们调查了线虫的空间分布,在大多数土壤生态系统中是高度丰富和多样化的美唑。要深入了解线虫斑块,我们在十二条明显均匀的农业领域(每增加100米×100米),我们映射了三种土壤纹理(海洋黏土,河流和沙质土壤)等均匀的农业领域。定量PCRS用于测量48个不同的线虫分类群的大量近似为1200个曲线。多变量分析表明,在这种选择的场地内,土壤质地更强烈地影响土壤线虫社区而不是土地管理。线虫分布的地质统计分析揭示了分类群体特异性和特异性斑块。这些田地中48个线虫分类群的平均地质统计范围(表明贴片直径)为36米,与土壤有机物有关。土壤有机质含量影响了寿命依赖性方式的空间方差(在野外密度范围内变化)。 R-策略师(快速增长的诱导菌和功能)显示出有机质含量和空间方差之间的正相关性,而大多数K战略者(生长缓慢的省食和肉食病)表现出负相关。因此,两个参数,土壤有机质含量和一般寿命策略表征的组合可用于解释现场规模线虫的空间分布。

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