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Effects of Earthworms and Agricultural Plant Species on the Soil Nematode Community in a Microcosm Experiment

机译:微观实验中of和农业植物对线虫群落的影响

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摘要

Both earthworms and plants may affect the soil nematode community. However, the effects of earthworms and plant species interactions on soil nematode community are poorly understood. We explored how an epigeic earthworm Eisenia fetida affects the soil nematode community in systems with three representative plants (wheat, cotton and cabbage) which were grown in pots with or without added earthworms under greenhouse conditions. Earthworm presence decreased the abundance of total nematode and all four nematode trophic groups, except for the fungivore and predator/omnivore nematodes in wheat systems, but increased the genus richness of nematode in all treatments. Due to plant identity and different root exudates, plants had significant effects on soil nematode abundance. Compared with the no plant and without earthworm treatment, wheat and cabbage had the higher stimulation of the abundance of total nematode, bacterivores and fungivores, and cotton had the higher stimulation of the abundance of fungivores and predators-omnivores; whereas earthworm presence mostly weakened the stimulation effects of plant species on soil nematode abundance which indicated earthworms had the enhanced effects in the presence of plants. The interaction affected soil nematode abundance (total nematodes, bacterivore, fungivore and omnivore-predators) and community diversity indices (diversity index H′, evenness index J′, community maturity index ∑MI, Simpson dominance index λ and nematode channel ratio NCR). Principal component analysis showed that plant species affected soil nematode community composition. Redundancy analysis indicated plant species and biomass accounted for 41.60% and 34.13% of the variation in soil nematode community structure, respectively; while earthworms explained only 6.13%. Overall, current study suggest that earthworm could inhibit nematode abundance; whereas, plants have exerted greater influences on nematode community structure than earthworm presence due to their species-specific effects on different trophic groups of nematodes.
机译:and和植物都可能影响土壤线虫群落。然而,worm和植物物种相互作用对土壤线虫群落的影响知之甚少。我们探讨了流行的earth Eisenia fetida如何影响具有三种代表性植物(小麦,棉花和卷心菜)的系统中的土壤线虫群落,这些植物在温室条件下在有或没有添加pot的盆中生长。除小麦系统中的食虫和食肉/杂食性线虫外,worm的存在降低了全部线虫和所有四个线虫营养组的丰度,但在所有处理中均增加了线虫的丰富度。由于植物的特性和不同的根系分泌物,植物对土壤线虫的丰度有显着影响。与没有植物和没有without的处理相比,小麦和白菜对线虫,细菌和真菌的丰度有较高的刺激,而棉花对真菌和食肉动物-杂食性的丰度有较高的刺激。 worm的存在主要削弱了植物物种对土壤线虫丰度的刺激作用,这表明earth在存在植物的情况下具有增强的作用。相互作用影响土壤线虫的丰度(总线虫,噬菌体,真菌和杂食性食肉动物)和群落多样性指数(多样性指数H',均匀度指数J',群落成熟度指数∑MI,辛普森优势指数λ和线虫通道比NCR)。主成分分析表明,植物物种影响了土壤线虫群落组成。冗余分析表明,植物种类和生物量分别占土壤线虫群落结构变化的41.60%和34.13%。而earth只解释了6.13%。总的来说,目前的研究表明earth可以抑制线虫的丰度。相反,植物对线虫群落结构的影响要比earth的存在大,这是因为植物对线虫的不同营养种类具有特定的影响。

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