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Journal Article

Parental material and climate jointly determine the biomass and diversity of soil microbial communities along an elevational gradient on a subtropical karst mountain

Xianjin He; Lian Zeng; Guangyu Zhu; M. D. Farnon Ellwood; Lihua Zhou; Junlong Huang; Chenchen Wang; Wei Li; Dunmei Lin; Pei Wei; Shijun Liu; Min Luo; Yonghua Zhang; Yongchuan Yang
Journal of Biogeography · Vol. 51, Issue 7 · pp. 1185-1198 · 2024

Abstract

Aim Climate is widely understood to determine elevational patterns of soil microbial communities, whereas the effects of parental material are uncertain. Changes in the composition of parental materials along elevational transects could also affect soil microbial communities by influencing soil pH and nutrient availability. Here, we aim to illustrate the combined effects of climate and parental material on the biomass and composition of soil microbial communities along an elevational transect. Location A subtropical forest on a karst mountain (Mt. Jinfo), China. Taxon Bacteria and Fungi. Methods We use phospholipid fatty acid analysis (PLFA) and DNA amplicon high‐throughput sequencing to determine biomass and diversity patterns of soil microbial communities along a subtropical elevational gradient with contrasting parental materials (limestone and clasolite). Results We observed that the microbial communities were more diverse (α‐diversity) and productive (biomass) on limestone than on clasolite. Additionally, we found that parental material played a role in shaping the composition (β‐diversity) of soil microbial communities along the elevational gradient. The impact of climate on soil microbial communities was found to be significant, albeit relatively weak. Structural equation models provided evidence for both direct and indirect effects of climate and parental material on microbial biomass and α‐diversity along the elevational gradient. Notably, the changes in soil pH, influenced by both parental material and climate, were identified as a key factor driving these effects. Main Conclusions Our results underline the importance of both climate and parental material variations in space‐for‐time studies investigating soil microbial communities along elevational gradients.

Bibliographic Information

JournalJournal of Biogeography
PublisherWiley
Publication Date2024-07-01
Publication Year2024
Volume51
Issue7
Pages1185-1198
Document TypeJournal Article
Print ISSN0305-0270
eISSN1365-2699
DOI10.1111/jbi.14814
SubjectEcology & Organismal Biology

Access Information

NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/13652699
Publisher PageOpen Publisher Page
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