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Response of AM fungi spore population to elevated temperature and nitrogen addition and their influence on the plant community composition and productivity

机译:AM真菌孢子种群对高温和氮添加的响应及其对植物群落组成和生产力的影响

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摘要

To examine the influence of elevated temperature and nitrogen (N) addition on species composition and development of arbuscular mycorrhizal fungi (AMF) and the effect of AMF on plant community structure and aboveground productivity, we conducted a 5-year field experiment in a temperate meadow in northeast China and a subsequent greenhouse experiment. In the field experiment, N addition reduced spore population diversity and richness of AMF and suppressed the spore density and the hyphal length density (HLD). Elevated temperature decreased spore density and diameter and increased the HLD, but did not affect AMF spore population composition. In the greenhouse experiment, AMF altered plant community composition and increased total aboveground biomass in both elevated temperature and N addition treatments; additionally, AMF also increased the relative abundance and aboveground biomass of the grasses Leymus chinensis (Poaceae) and Setaria viridis (Gramineae) and significantly reduced the relative abundance and aboveground biomass of the Suaeda corniculata (Chenopodiaceae). Although elevated temperature and N addition can affect species composition or suppress the development of AMF, AMF are likely to play a vital role in increasing plant diversity and productivity. Notably, AMF might reduce the threat of climate change induced degradation of temperate meadow ecosystems.
机译:为了研究高温和氮的添加对丛枝菌根真菌(AMF)种类组成和发育的影响以及AMF对植物群落结构和地上生产力的影响,我们在温带草地上进行了为期5年的田间试验在中国东北以及随后的温室试验中。在田间试验中,氮的添加减少了孢子种群的多样性和AMF的丰富度,并抑制了孢子密度和菌丝长度密度(HLD)。升高温度会降低孢子密度和直径并增加HLD,但不会影响AMF孢子种群组成。在温室实验中,AMF在升高温度和添加氮的条件下均改变了植物群落组成并增加了地上总生物量。此外,AMF还增加了羊草(禾本科)和狗尾草(禾本科)的相对丰度和地上生物量,并显着降低了南美白Su(Chenopodiaceae)的相对丰度和地上生物量。尽管高温和氮的添加会影响物种组成或抑制AMF的发展,但AMF可能在增加植物多样性和生产力方面起着至关重要的作用。值得注意的是,AMF可能会减少气候变化引起的温带草甸生态系统退化的威胁。

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