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Soil Fungal Communities Respond to Grassland Plant Community Richness and Soil Edaphics

机译:土壤真菌群落对草地植物群落丰富度和土壤生态系统的响应

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摘要

Fungal communities in soil have significant influences on terrestrial ecosystem dynamics, yet our understanding of the drivers of fungal diversity and community structure in soil is limited. Fungal communities associated with the rhizosphere of four native perennial grassland plant species, two legumes and two grasses, grown in monoculture and polyculture in a long-term field experiment were characterized. Reference databases were developed for, and amplicon libraries sequenced from, multiple-copy rRNA and single-copy protein-coding loci. Clustering and alignment-based pipelines were utilized to evaluate differences in fungal community structure and diversity in response to plant host, plant community richness, and soil edaphics. Fungal diversity increased in the rhizosphere of plants growing in polyculture plant communities as compared to monoculture plant communities. Fungal community structure was differentiated between legumes and grasses growing in monoculture but not in polyculture. To specifically monitor fungi in the genus Fusarium in the soil, the protein-coding locus was used to increase phylogenetic resolution and enrich for this taxon. These data show that fungal community richness and structure are strongly linked with plant community dynamics and associated soil edaphic characteristics in these grassland soils.
机译:土壤中的真菌群落对陆地生态系统动力学有重要影响,但是我们对土壤中真菌多样性和群落结构驱动力的理解是有限的。在长期的田间试验中,对与四种原生多年生草地植物物种(两种豆科植物和两种草)的根际相关的真菌群落进行了表征,这些物种分别在单一栽培和混合栽培中生长。为多拷贝rRNA和单拷贝蛋白编码基因座开发了参考数据库,并为扩增子文库测序。利用基于聚类和比对的管道来评估真菌群落结构和多样性的差异,以响应植物宿主,植物群落丰富度和土壤营养。与单一栽培植物群落相比,在多元栽培植物群落中生长的植物的根际真菌多样性增加。单一种植的豆科植物和杂草中的真菌群落结构有所不同,而混养中的则没有。为了专门监测土壤中镰刀菌属的真菌,使用蛋白质编码基因座来增加系统发育分辨率并丰富该分类群。这些数据表明,这些草地土壤中真菌群落的丰富度和结构与植物群落动态及相关的土壤土壤养分特征密切相关。

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