Urbanization Reduces Phyllosphere Microbial Network Complexity and Species Richness of Camphor Trees

Author:

Zhang Yifang,Li XiaominORCID,Lu Lu,Huang Fuyi,Liu Hao,Zhang Yu,Yang Luhua,Usman MuhammadORCID,Li ShunORCID

Abstract

Studies on microbial communities associated with foliage in natural ecosystems have grown in number in recent years yet have rarely focused on urban ecosystems. With urbanization, phyllosphere microorganisms in the urban environment have come under pressures from increasing human activities. To explore the effects of urbanization on the phyllosphere microbial communities of urban ecosystems, we investigated the phyllosphere microbial structure and the diversity of camphor trees in eight parks along a suburban-to-urban gradient. The results showed that the number of ASVs (amplicon sequence variants), unique on the phyllosphere microbial communities of three different urbanization gradients, was 4.54 to 17.99 times higher than that of the shared ASVs. Specific microbial biomarkers were also found for leaf samples from each urbanization gradient. Moreover, significant differences (R2 = 0.133, p = 0.005) were observed in the phyllosphere microbial structure among the three urbanization gradients. Alpha diversity and co-occurrence patterns of bacterial communities showed that urbanization can strongly reduce the complexity and species richness of the phyllosphere microbial network of camphor trees. Correlation analysis with environmental factors showed that leaf total carbon (C), nitrogen (N), and sulfur (S), as well as leaf C/N, soil pH, and artificial light intensity at night (ALIAN) were the important drivers in determining the divergence of phyllosphere microbial communities across the urbanization gradient. Together, we found that urbanization can affect the composition of the phyllosphere bacterial community of camphor trees, and that the interplay between human activities and plant microbial communities may contribute to shaping the urban microbiome.

Funder

National Natural Science Foundation of China

Sichuan Science and Technology Agency

Publisher

MDPI AG

Subject

Virology,Microbiology (medical),Microbiology

Reference92 articles.

1. Morris, C.E., and Kinkel, L.L. (2002). Fifty Years of Phyllosphere Microbiology: Significant Contributions to Research in Related Fields, American Phytopathological Society (APS Press). [1st ed.].

2. Phyllosphere microbiology with special reference to diversity and plant genotype;Whipps;J. Appl. Microbiol.,2008

3. Tree leaf bacterial community structure and diversity differ along a gradient of urban intensity;Messier;mSystems,2017

4. Host species identity, site and time drive temperate tree phyllosphere bacterial community structure;Messier;Microbiome,2016

5. Temporal metabolite responsiveness of microbiota in the tea plant phyllosphere promotes continuous suppression of fungal pathogens;Xu;J. Adv. Res.,2022

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