Topographic Variation in Ecosystem Multifunctionality in an Old-Growth Subtropical Forest

Author:

Wang Jiaming12,Xu Han3,Yang Qingsong2ORCID,Li Yuying1,Ji Mingfei1ORCID,Li Yepu1,Chang Zhongbing4ORCID,Qin Yangyi2,Yu Qiushi2,Wang Xihua2

Affiliation:

1. School of Water Resources and Environment Engineering, Nanyang Normal University, Nanyang 473061, China

2. School of Ecological and Environmental Sciences, East China Normal University, Shanghai 200241, China

3. Research Institute of Tropical Forestry, Chinese Academy of Forestry, Guangzhou 510520, China

4. Key Laboratory of Natural Resources Monitoring in Tropical and Subtropical Area of South China, Surveying and Mapping Institute Lands and Resource Department of Guangdong Province, Guangzhou 510663, China

Abstract

Exploring the relationship between topography and forest multifunctionality enhances understanding of the mechanisms maintaining forest multifunctionality and proves beneficial for managing overall forest functions across different landscapes. Leveraging census data from a 20 ha subtropical forest plot, we investigated the topographic variations in individual functions, multifunctionality, and their interrelationships. Our results revealed that relative to lower elevations, higher elevations had higher woody productivity, sapling growth, and recruitment that drove higher average forest multifunctionality (FMA). However, forest multifunctionality at the 50% threshold level (FMt50) had no significant difference between high and low elevations. Compared with the valley and slope, higher woody productivity, higher sapling recruitment, and higher soil organic carbon stock drove higher forest multifunctionality (FMA and FMt50) in the ridge. These results indicate the ridge serves as a forest multifunctionality “hotspot” within the Tiantong 20 hm2 plot. Additionally, relative to the low elevation, the degree of synergy among functions at the high elevation was significantly lower, indicating difficulties in attaining high forest multifunctionality at the high elevation. Our work underscores the importance of topography in regulating subtropical forest multifunctionality and relationships between forest functions at a local scale, suggesting that future forest management strategies (such as regulating synergistic or trade-off relationships between functions) should give particular attention to topographic conditions.

Publisher

MDPI AG

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