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Shrub range expansion alters diversity and distribution of soil fungal communities across an alpine elevation gradient

机译:灌木范围扩大改变了在高山海拔梯度上的土壤真菌社区的多样性和分布

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Global climate and land use change are altering plant and soil microbial communities worldwide, particularly in arctic and alpine biomes where warming is accelerated. The widespread expansion of woody shrubs into historically herbaceous alpine plant zones is likely to interact with climate to affect soil microbial community structure and function; however, our understanding of alpine soil ecology remains limited. This study aimed to (i) determine whether the diversity and community composition of soil fungi vary across elevation gradients and to (ii) assess the impact of woody shrub expansion on these patterns. In the White Mountains of California, sagebrush (Artemisia rothrockii) shrubs have been expanding upwards into alpine areas since 1960. In this study, we combined observational field data with a manipulative shrub removal experiment along an elevation transect of alpine shrub expansion. We utilized next-generation sequencing of the ITS1 region for fungi and joint distribution modelling to tease apart effects of the environment and intracommunity interactions on soil fungi. We found that soil fungal diversity declines and community composition changes with increasing elevation. Both abiotic factors (primarily soil moisture and soil organic C) and woody sagebrush range expansion had significant effects on these patterns. However, fungal diversity and relative abundance had high spatial variation, overwhelming the predictive power of vegetation type, elevation and abiotic soil conditions at the landscape scale. Finally, we observed positive and negative associations among fungal taxa which may be important in structuring community responses to global change.
机译:全球气候和土地利用变化正在全世界改变植物和土壤微生物社区,特别是在北极和高山生物群中加速加速。木质灌木丛扩建到历史上草本植物的高山植物区可能与气候相互作用以影响土壤微生物群落结构和功能;然而,我们对高山土壤生态的理解仍然有限。本研究旨在(i)确定土壤真菌的多样性和群落组成在仰角梯度和(ii)中是否有评估木质灌木扩张对这些模式的影响。在加利福尼亚州的白山中,Sagebrush(Artemisia Rothrockii)灌木于1960年以来一直在扩大到高山地区。在本研究中,我们将观察场数据与Alpine灌木膨胀的抬高横断面的抬高横断面进行了操作灌木去除实验。我们利用其1个地区的下一代测序来进行真菌和联合分布模拟,以挑逗环境和心脏内核互动的影响。我们发现土壤真菌多样性下降和社区构成随着海拔增加而变化。非生物因素(主要是土壤水分和土壤有机C)和木质山血管范围扩张对这些模式具有显着影响。然而,真菌多样性和相对丰度具有高空间变化,压倒植被类型,升高和非生物条件的预测力量。最后,我们观察了真菌分类群中的正面和负面关联,这在构建社区对全球变革的反应方面可能很重要。

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