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Responses of arbuscular mycorrhizal fungi to nitrogen addition: A meta-analysis

机译:丛枝菌根真菌对氮的反应:荟萃分析

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Arbuscular mycorrhizal (AM) fungi play important roles in carbon (C), nitrogen (N) and phosphorus (P) cycling of terrestrial ecosystems. The impact of increasing N deposition on AM fungi will inevitably affect ecosystem processes. However, generalizable patterns of how N deposition affects AM fungi remains poorly understood. Here we conducted a global-scale meta-analysis from 94 publications and 101 sites to investigate the responses of AM fungi to N addition, including abundance in both intra-radical (host roots) and extra-radical portion (soil), richness and diversity. We also explored the mechanisms of N addition affecting AM fungi by the trait-based guilds method. Results showed that N addition significantly decreased AM fungal overall abundance (-8.0%). However, the response of abundance in intra-radical portion was not consistent with that in extra-radical portion: root colonization decreased (-11.6%) significantly, whereas extra-radical hyphae length density did not change significantly. Different AM fungal guilds showed different responses to N addition: both the abundance (spore density) and relative abundance of the rhizophilic guild decreased significantly under N addition (-29.8% and -12.0%, respectively), while the abundance and relative abundance of the edaphophilic guild had insignificant response to N addition. Such inconsistent responses of rhizophilic and edaphophilic guilds were mainly moderated by the change of soil pH and the response of root biomass, respectively. Moreover, N addition had an insignificant negative effect on AM fungal richness and diversity, which was strongly related with the relative availability of soil P (i.e. soil available N/P ratio). Collectively, this meta-analysis highlights that considering trait-based AM fungal guilds, soil P availability and host plant C allocation can greatly improve our understanding of the nuanced dynamics of AM fungal communities under increasing N deposition.
机译:丛枝菌根(AM)真菌在碳(C),氮气(N)和磷(P)循环中起重要作用。增加N沉积对AM真菌的影响将不可避免地影响生态系统过程。然而,彼此沉积的概括模式影响AM真菌仍然很清楚。在这里,我们从94个出版物和101个地点进行了全球规模的荟萃分析,以调查AM真菌对N添加的反应,包括在内部内(主管根源)和超自由基部分(土壤),丰富和多样性的丰富。我们还通过基于特质的公会方法探索了影响AM真菌的N添加的机制。结果表明,N添加显着降低了AM真菌总体丰富(-8.0%)。然而,在自由基部分中的丰度的响应与在外自由基部分中的响应不一致:根殖化显着降低(-11.6%),而超基团菌丝长度密度没有显着变化。不同的AM Fungal公会表现出对N添加的不同反应:在N添加(分别为-29.8%和-12.0%)下,脱沸性公会的丰度(孢子密度)和相对丰度分别下降(分别为-12.0%),而具有丰富和相对丰度赤毛期公会对N添加的反应微不足道。通过土壤pH的变化和根生物质的响应,脱智能和赤烃行会的这种不一致的反应分别是分别的调节。此外,N添加对AM真菌丰富和多样性有微不足道的负面影响,这与土壤p的相对可用性密切相关(即土壤可用N / P比率)。统称,这种荟萃分析亮点认为,考虑基于特质的AM真菌会议,土壤P获取和宿主植物C分配可以大大提高我们对急性沉积时对AM真菌社区进行细致细微动态的理解。

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