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Nematode grazing promotes bacterial community dynamics in soil at the aggregate level

机译:线虫放牧可促进土壤中总水平的细菌群落动态

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摘要

Nematode predation has important roles in determining bacterial community composition and dynamics, but the extent of the effects remains largely rudimentary, particularly in natural environment settings. Here, we investigated the complex microbial–microfaunal interactions in the rhizosphere of maize grown in red soils, which were derived from four long-term fertilization regimes. Root-free rhizosphere soil samples were separated into three aggregate fractions whereby the abundance and community composition were examined for nematode and total bacterial communities. A functional group of alkaline phosphomonoesterase (ALP) producing bacteria was included to test the hypothesis that nematode grazing may significantly affect specific bacteria-mediated ecological functions, that is, organic phosphate cycling in soil. Results of correlation analysis, structural equation modeling and interaction networks combined with laboratory microcosm experiments consistently indicated that bacterivorous nematodes enhanced bacterial diversity, and the abundance of bacterivores was positively correlated with bacterial biomass, including ALP-producing bacterial abundance. Significantly, such effects were more pronounced in large macroaggregates than in microaggregates. There was a positive correlation between the most dominant bacterivores Protorhabditis and the ALP-producing keystone 'species' Mesorhizobium. Taken together, these findings implicate important roles of nematodes in stimulating bacterial dynamics in a spatially dependent manner.
机译:线虫的捕食在确定细菌群落组成和动力学方面具有重要作用,但是影响的程度仍然很基本,尤其是在自然环境中。在这里,我们研究了在红色土壤中生长的玉米根际中复杂的微生物-微真菌相互作用,这是从四个长期施肥方案得出的。将无根的根际土壤样品分为三个聚集部分,从而检查线虫和总细菌群落的丰度和群落组成。包括一个产生碱性磷酸单酯酶(ALP)的细菌的官能团,以检验以下假设:放牧线虫可能会显着影响特定细菌介导的生态功能,即土壤中的有机磷酸盐循环。相关分析,结构方程建模和相互作用网络与实验室缩影实验相结合的结果一致表明,细菌线虫增强了细菌的多样性,并且噬菌体的丰度与细菌生物量(包括产生ALP的细菌丰度)呈正相关。显着地,这种影响在大型宏观聚集体中比在微观聚集体中更为明显。在最主要的细菌菌原原虫和产生ALP的基石“物种”中生根瘤菌之间存在正相关。综上所述,这些发现暗示线虫在空间依赖性地刺激细菌动力学中的重要作用。

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