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Research Article | Open Access

Temperature determines the biomass of forest floor bryophytes: A cross-regional investigation in 413 sites

Zhe Wanga,b,cDefeng FengdYanqiang Jine,fMijun ZoubBeibei GaobXin Liua( )Weikai Baoa
Mountain Ecological Restoration and Biodiversity Conservation Key Laboratory of Sichuan Province, Chengdu Institute of Biology, Chinese Academy of Sciences, Chengdu 610213, China
Shanghai Normal University, Shanghai 200234, China
Shanghai Yangtze River Delta Urban Wetland Ecosystem National Field Observation and Research Station, Shanghai 200234, China
College of Soil and Water Conservation, Southwest Forestry University, Kunming 650224, China
CAS Key Laboratory of Tropical Plant Resources and Sustainable Use, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences, Mengla 666303, Yunnan, China
Yuanjiang Savanna Ecosystem Research Station, Xishuangbanna Tropical Botanical Garden, Chinese Academy of Sciences, Yuanjiang 653300, Yunnan, China

Peer review under the responsibility of Editorial Office of Forest Ecosystems.

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Abstract

Understory bryophytes play unique and disproportionately important roles in water retention, biogeochemical cycling, and biodiversity conservation, and serve as bioindicators of environmental health in forest ecosystems. However, biogeographical research on the biomass of forest bryophytes is inadequately studied and has been limited to elevational gradients. We conducted a systematic cross-regional survey of bryophyte biomass across 413 forest sites in Sichuan Province, China. We analyzed how each environmental variable, including climatic and atmospheric factors, overstory covers, and soil nutrients, relates to bryophyte biomass and quantified their relative contributions. The results indicate that, largely similar to previous local investigations and experiments, at a large scale, bryophytes are abundant in forests with lower temperature, nitrogen deposition, vapor pressure deficit, and tree and herb covers, as well as higher light availability. Moreover, bryophyte biomass is positively associated with soil carbon and nitrogen content. These environmental variables are closely related and jointly influence bryophyte biomass, with mean annual temperature being the most significant factor (accounting for 83% of the relative contribution). The biogeographical patterns of bryophyte biomass contribute to deepening our understanding of their adaptations to multiple environmental variables and enable us to predict their responses to global climate change. These patterns also provide essential evidence for establishing more accurate terrestrial vegetation ecosystem models.

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Cite this article:
Wang Z, Feng D, Jin Y, et al. Temperature determines the biomass of forest floor bryophytes: A cross-regional investigation in 413 sites. Forest Ecosystems, 2026, 15(1). https://doi.org/10.1016/j.fecs.2025.100409

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Received: 31 July 2025
Revised: 06 October 2025
Accepted: 05 November 2025
Published: 01 February 2026
© 2025 The Authors.

This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).