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Are drivers of root-associated fungal community structure context specific?

机译:是特定根联的真菌群落结构背景的驱动程序吗?

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摘要

The composition and structure of plant-root-associated fungal communities are determined by local abiotic and biotic conditions. However, the relative influence and identity of relationships to abiotic and biotic factors may differ across environmental and ecological contexts, and fungal functional groups. Thus, understanding which aspects of rootassociated fungal community ecology generalise across contexts is the first step towards a more predictive framework. We investigated how the relative importance of biotic and abiotic factors scale across environmental and ecological contexts using high-throughput sequencing (ca. 55 M Illumina metabarcoding sequences) of >260 plant-root-associated fungal communities from six UK salt marshes across two geographic regions (South-East and North-West England) in winter and summer. Levels of root-associated fungal diversity were comparable with forests and temperate grasslands, quadrupling previous estimates of salt-marsh fungal diversity. Whilst abiotic variables were generally most important, a range of site- and spatial scale-specific abiotic and biotic drivers of diversity and community composition were observed. Consequently, predictive models of diversity trained on one site, extrapolated poorly to others. Fungal taxa from the same functional groups responded similarly to the specific drivers of diversity and composition. Thus site, spatial scale and functional group are key factors that, if accounted for, may lead to a more predictive understanding of fungal community ecology.
机译:植物根相关真菌社区的组成和结构由局部非生物和生物条件确定。然而,对非生物和生物因子的关系的相对影响和身份可能涉及环境和生态背景和真菌官能团的不同。因此,了解跨越语境的生物化真菌群落生态学的哪些方面是迈向更具预测框架的第一步。我们研究了使用来自两个地理区域的六个英国盐沼的高通量测序(CA.55M Illumina Metabarcoding序列)的环境和生态环境的相对重要性。来自两个地理区域的六个英国盐沼(东南和英国西北部)在冬季和夏季。根系相关性真菌多样性的水平与森林和温带草原相当,四倍过度以前的盐沼真菌多样性估计。虽然非生物变量一般是最重要的,但观察了一系列位点和空间规模特异性的非生物和多样性和群落组成的生物驱动程序。因此,在一个网站上培训的多样性预测模型,向其他网站推断不良。来自同一官能团的真菌纳税群与多样性和组成的特定驱动因素类似地响应。因此,如果占据账面,则空间规模和功能群体是对真实群落生态的更预测的理解。

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