BACKGROUND:The Qinghai-Tibet Plateau (QTP) is home to the vast grassland in China. The QTP grassland ecosystem has been seriously degraded by human land use practices and climate change. Fertilization is used in this region to increase vegetation yields for grazers. The impact of long-term fertilization on plant and microbial communities has been studied extensively. However, the influence of short-term fertilization on arbuscular mycorrhizal fungal (AMF) communities in the QTP is largely unknown, despite their important functional role in grassland ecosystems. METHODS:We investigated AMF community responses to three years of N and/or P addition at an experimental field site on the QTP, using the Illumina MiSeq platform (PE 300). RESULTS:Fertilization resulted in a dramatic shift in AMF community composition and NP addition significantly increased AMF species richness and phylogenetic diversity. Aboveground biomass, available phosphorus, and NO3 (-) were significantly correlated with changes in AMF community structure. Changes in these factors were driven by fertilization treatments. Thus, fertilization had a large impact on AMF communities, mediated by changes in aboveground productivity and soil chemistry. DISCUSSION:Prior work has shown how plants often lower their reliance on AMF symbioses following fertilization, leading to decrease AMF abundance and diversity. However, our study reports a rise in AMF diversity with fertilization treatment. Because AMF can provide stress tolerance to their hosts, we suggest that extreme weather on the QTP may help drive a positive relationship between fertilizer amendment and AMF diversity.

译文

背景:青藏高原(QTP)是中国广阔的草原所在地。人们的土地使用方式和气候变化已严重破坏了QTP草原生态系统。在该地区使用施肥来提高放牧者的植被产量。长期研究了长期施肥对植物和微生物群落的影响。然而,尽管短期施肥对QTP中的丛枝菌根真菌(AMF)群落具有重要的作用,但其影响在很大程度上尚不清楚。
方法:我们使用Illumina MiSeq平台(PE 300)在QTP上的一个实验现场调查了AMF群落对添加N和/或P的三年的响应。
结果:施肥导致AMF群落组成发生了巨大变化,而NP的添加显着增加了AMF物种的丰富度和系统发育多样性。地上生物量,有效磷和NO3(-)与AMF群落结构的变化显着相关。这些因素的变化是受精处理的驱动。因此,受地上生产力和土壤化学变化的影响,施肥对AMF群落有很大的影响。
讨论:先前的工作表明植物在施肥后如何经常降低对AMF共生的依赖,从而降低AMF的丰度和多样性。但是,我们的研究报告说,施肥会增加AMF的多样性。由于AMF可以为寄主提供抗逆性,因此我们建议QTP上的极端天气可能有助于推动肥料改良剂与AMF多样性之间的正相关关系。

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