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Nitrogen addition regulates soil nematode community composition through ammonium suppression

机译:氮肥通过抑制铵盐调节土壤线虫群落组成

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摘要

Nitrogen (N) enrichment resulting from anthropogenic activities has greatly changed the composition and functioning of soil communities. Nematodes are one of the most abundant and diverse groups of soil organisms, and they occupy key trophic positions in the soil detritus food web. Nematodes have therefore been proposed as useful indicators for shifts in soil ecosystem functioning under N enrichment. Here, we monitored temporal dynamics of the soil nematode community using a multi-level N addition experiment in an Inner Mongolia grassland. Measurements were made three years after the start of the experiment. We used structural equation modeling (SEM) to explore the mechanisms regulating nematode responses to N enrichment. Across the N enrichment gradient, significant reductions in total nematode abundance, diversity (H' and taxonomic richness), maturity index (MI), and the abundance of root herbivores, fungivores and omnivores-predators were found in August. Root herbivores recovered in September, contributing to the temporal variation of total nematode abundance across the N gradient. Bacterivores showed a hump-shaped relationship with N addition rate, both in August and September. Ammonium concentration was negatively correlated with the abundance of total and herbivorous nematodes in August, but not in September. Ammonium suppression explained 61% of the variation in nematode richness and 43% of the variation in nematode trophic group composition. Ammonium toxicity may occur when herbivorous nematodes feed on root fluid, providing a possible explanation for the negative relationship between herbivorous nematodes and ammonium concentration in August. We found a significantly positive relationship between fungivores and fungal phospholipid fatty acids (PLFA), suggesting bottom-up control of fungivores. No such relationship was found between bacterivorous nematodes and bacterial PLFA. Our findings contribute to the understanding of effects of N enrichment in semiarid grassland on soil nematode trophic groups, and the cascading effects in the detrital soil food web.
机译:人为活动引起的氮(N)富集极大地改变了土壤群落的组成和功能。线虫是土壤生物中种类最多,种类最多的一种,它们在土壤碎屑食物网中占据着重要的营养位置。因此,已提出线虫作为氮富集下土壤生态系统功能转变的有用指标。在这里,我们使用内蒙古草原的多级氮添加实验监测了土壤线虫群落的时间动态。实验开始三年后进行测量。我们使用结构方程模型(SEM)探索调节线虫对氮富集响应的机制。在整个N富集梯度中,八月份发现线虫的总线虫丰度,多样性(H'和分类学丰富度),成熟度指数(MI)以及根基草食动物,真菌和杂食性捕食者的丰度大大降低。食草动物的根在9月恢复,这有助于整个N梯度线虫的总含量随时间变化。噬菌体在八月和九月均表现出与氮的添加量呈驼峰状的关系。铵浓度与八月的总线虫和草食性线虫的含量呈负相关,而九月份则不。铵抑制解释了线虫丰富度变化的61%和线虫营养基团组成变化的43%。当食草线虫以根液为食时,可能会发生铵中毒,这可能解释了八月份食草线虫与铵浓度之间的负相关关系。我们发现真菌和真菌磷脂脂肪酸(PLFA)之间存在显着的正相关关系,表明真菌的自下而上控制。在细菌线虫和细菌PLFA之间未发现这种关系。我们的发现有助于理解半干旱草地上氮的富集对土壤线虫营养类群的影响,以及对碎屑土壤食物网的级联效应。

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