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Abundant fungi adapt to broader environmental gradients than rare fungi in agricultural fields

机译:丰富的真菌适应更广泛的环境梯度,而不是农业领域的罕见真菌

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Soil communities are intricately linked to ecosystem functioning, and a predictive understanding of how communities assemble in response to environmental change is of great ecological importance. Little is known about the assembly processes governing abundant and rare fungal communities across agro-ecosystems, particularly with regard to their environmental adaptation. By considering abundant and rare taxa, we tested the environmental thresholds and phylogenetic signals for ecological preferences of fungal communities across complex environmental gradients to reflect their environmental adaptation, and explored the factors influencing their assembly based on the large-scale soil survey in agricultural fields across eastern China. We found that the abundant taxa exhibited remarkably broader response thresholds and stronger phylogenetic signals for the ecological preferences across environmental gradients compared to the rare taxa. Neutral processes played a key role in shaping the abundant subcommunity compared to the rare subcommunity. Null model analysis revealed that the abundant subcommunity was less clustered phylogenetically and governed primarily by dispersal limitation, while homogeneous selection was the major assembly process in the rare subcommunity. Soil available sulfur was the major factor mediating the balance between stochastic and deterministic processes of both the abundant and rare subcommunities, as indicated by an increase in stochasticity with higher available sulfur concentration. Based on macroecological spatial scale datasets, our study revealed the potential broader environmental adaptation of abundant fungal taxa compared to rare fungal taxa, and identified the factors mediating their distinct community assembly processes in agricultural fields. These results contribute to our understanding of the mechanisms underlying the generation and maintenance of fungal diversity in response to global environmental change.
机译:土壤社区与生态系统运作有比复杂地联系起来,对社区组装以应对环境变化的响应的预测理解具有很大的生态重要性。关于跨农业生态系统的丰富和罕见的真菌社区的组装过程知之甚少,特别是在环境适应方面。通过考虑丰富和稀有的分类群,我们测试了对复杂环境梯度的真菌社区的生态偏好的环境阈值和系统发育信号,以反映其环境适应,并探讨了影响其大会的因素,基于农业领域的大规模土壤调查中国东部。我们发现,与稀有征收相比,丰富的分类群表现出显着更广泛的响应阈值和强大的系统发育信号,用于环境梯度的生态偏好。与罕见的小组纪相比,中性流程在塑造丰富的小组纪发时发挥了关键作用。无效模型分析显示,丰富的小组义率较少细胞发生,主要通过分散限制来治理,而均匀选择是罕见的子行程中的主要组装过程。土壤可用硫是调解丰富和罕见胎犯的随机和确定性过程之间平衡的主要因素,如含硫浓度较高的随机性增加所示。基于宏观学时规模数据集,我们的研究表明,与罕见的真菌分类群相比,对丰富的真菌分类群的潜在更广泛的环境适应,并确定了在农业领域中介导其独特的社区组装过程的因素。这些结果有助于我们了解对全球环境变革的生成和维持真菌多样性的基础和维护的机制。

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