Unveiling the ecological processes driving soil and lichen microbiome assembly along an urbanization gradient.

IF 7.8 1区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Panji Cahya Mawarda, Rens van der Kaaij, Francisco Dini-Andreote, Deniz Duijker, Michael Stech, Adrianus Gcl Speksnijder
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Abstract

Global biodiversity loss is accelerating due to the transformation of natural landscapes into agricultural and urban areas. Yet, research on the urbanization impact on environmental and host-associated microbiomes, particularly on the ecological processes that mediate their assembly and function, remains scarce. This study investigated the effects of an urbanization gradient on the diversity and assembly processes of the soil microbiome and the microbiomes of three epiphytic lichen species (Candelaria concolor, Physcia adscendens, and Xanthoria parietina). Our findings revealed that the urbanization gradient shaped the soil microbiome, while the lichen microbiomes exhibited strong host specificity and showed no significant changes in diversity along the urbanization gradient. Heterogeneous selection and dispersal limitation primarily governed the soil community assembly and higher community turnover in medium- and highly urbanized zones compared to low-urbanized zones, indicating an increased influence of environmental pressures, altered resources, and habitat fragmentation in more urbanized areas. The lichen microbiome assembly in each species was primarily governed by undominated processes regardless of urbanization level, indicating that both selection and stochasticity contributed to, but neither dominantly influenced, their assembly. The lichen microbiomes further revealed species-specific co-occurrence networks, with microbial compositional signatures and potential functions being essential for lichen fitness and urban ecosystem health. Taken together, our study contributes to understanding how microbial communities are assembled in urban environments, bridging the gap between conceptual theories and empirical findings in the urban ecology of soil and lichen-associated microbiomes.

揭示沿着城市化梯度驱动土壤和地衣微生物组组装的生态过程。
由于自然景观向农业和城市地区的转变,全球生物多样性的丧失正在加速。然而,关于城市化对环境和宿主相关微生物组的影响的研究,特别是关于调节其组装和功能的生态过程的研究仍然很少。本文研究了城市化梯度对3种附生地衣(Candelaria concolor、Physcia adsendens和Xanthoria parietina)土壤微生物群落多样性和组合过程的影响。研究结果表明,城市化梯度塑造了土壤微生物组,而地衣微生物组表现出很强的宿主特异性,并且在城市化梯度上没有明显的多样性变化。与低城市化地区相比,中等和高度城市化地区的土壤群落组成和较高的群落更替主要受异质性选择和分散限制的影响,这表明在城市化程度较高的地区,环境压力、资源改变和栖息地破碎化的影响更大。无论城市化水平如何,每个物种的地衣微生物组的组装主要受非显性过程的控制,这表明选择和随机性都对其组装有贡献,但两者都不占主导地位。地衣微生物组进一步揭示了物种特异性共生网络,微生物组成特征和潜在功能对地衣适应性和城市生态系统健康至关重要。总之,我们的研究有助于理解微生物群落是如何在城市环境中聚集的,弥合了城市生态中土壤和地衣相关微生物群的概念理论和实证研究结果之间的差距。
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来源期刊
npj Biofilms and Microbiomes
npj Biofilms and Microbiomes Immunology and Microbiology-Microbiology
CiteScore
12.10
自引率
3.30%
发文量
91
审稿时长
9 weeks
期刊介绍: npj Biofilms and Microbiomes is a comprehensive platform that promotes research on biofilms and microbiomes across various scientific disciplines. The journal facilitates cross-disciplinary discussions to enhance our understanding of the biology, ecology, and communal functions of biofilms, populations, and communities. It also focuses on applications in the medical, environmental, and engineering domains. The scope of the journal encompasses all aspects of the field, ranging from cell-cell communication and single cell interactions to the microbiomes of humans, animals, plants, and natural and built environments. The journal also welcomes research on the virome, phageome, mycome, and fungome. It publishes both applied science and theoretical work. As an open access and interdisciplinary journal, its primary goal is to publish significant scientific advancements in microbial biofilms and microbiomes. The journal enables discussions that span multiple disciplines and contributes to our understanding of the social behavior of microbial biofilm populations and communities, and their impact on life, human health, and the environment.
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