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Article

Effects of Forest Gap on Soil Microbial Communities in an Evergreen Broad-Leaved Secondary Forest

1
Research Institute of Forestry, Chinese Academy of Forestry, Beijing 100091, China
2
Anhui Academy of Forestry, Hefei 230031, China
3
Huitong Experimental Station of Forest Ecology, CAS Key Laboratory of Forest Ecology and Management, Institute of Applied Ecology, Shenyang 110016, China
*
Author to whom correspondence should be addressed.
Forests 2022, 13(12), 2015; https://doi.org/10.3390/f13122015
Submission received: 21 September 2022 / Revised: 17 November 2022 / Accepted: 28 November 2022 / Published: 29 November 2022
(This article belongs to the Special Issue Maintenance of Forest Biodiversity)

Abstract

Forest gaps play a crucial role in community succession and assembly in forest ecosystems; therefore, they have recently been recognized and implemented as effective forest management practice all over the world. Forest gaps are commonly created as small disturbances in secondary forests to improve forest regeneration, nutrient cycling, ecosystem functioning, and biodiversity. The objective of this study was to investigate the responses of the physico-chemical and biological properties and microbial communities in soil to different sizes of forest gaps—including small gaps (60–80 m2), medium gaps (130–160 m2), and large gaps (270–300 m2)—and to examine the driving factors that influence soil microbial community structure and composition. The results show that Gram-positive bacteria, Gram-negative bacteria, fungi, arbuscular mycorrhizal fungi (AMF), and actinomycetes were mainly aggregated in the gaps, and the structural diversity of soil microbial communities was related to the gap size (p < 0.05). The soil microbial community diversity increased and then decreased with an increase in gap size. Moreover, the effects of the available phosphorus, soil pH, soil water content, available potassium, nitrate nitrogen and ammonium nitrogen on changes in microbial biomass were significant (p < 0.05). The gap area and gap position and their combined interactions also had significant effects on soil nutrients, which impacts the soil microbial community. Medium gaps (130–160 m2) always significantly improved the availability of soil nutrients, and good management practices in secondary forests can provide effective microenvironments for soil microbes.
Keywords: gap size; soil microbe; soil chemical property; forest management; PLFA analysis; spatial distribution gap size; soil microbe; soil chemical property; forest management; PLFA analysis; spatial distribution

Share and Cite

MDPI and ACS Style

Chen, S.; Jiang, C.; Bai, Y.; Wang, H.; Jiang, C.; Huang, K.; Guo, L.; Zeng, S.; Wang, S. Effects of Forest Gap on Soil Microbial Communities in an Evergreen Broad-Leaved Secondary Forest. Forests 2022, 13, 2015. https://doi.org/10.3390/f13122015

AMA Style

Chen S, Jiang C, Bai Y, Wang H, Jiang C, Huang K, Guo L, Zeng S, Wang S. Effects of Forest Gap on Soil Microbial Communities in an Evergreen Broad-Leaved Secondary Forest. Forests. 2022; 13(12):2015. https://doi.org/10.3390/f13122015

Chicago/Turabian Style

Chen, Shiyou, Chunqian Jiang, Yanfeng Bai, Hui Wang, Chunwu Jiang, Ke Huang, Lina Guo, Suping Zeng, and Shuren Wang. 2022. "Effects of Forest Gap on Soil Microbial Communities in an Evergreen Broad-Leaved Secondary Forest" Forests 13, no. 12: 2015. https://doi.org/10.3390/f13122015

APA Style

Chen, S., Jiang, C., Bai, Y., Wang, H., Jiang, C., Huang, K., Guo, L., Zeng, S., & Wang, S. (2022). Effects of Forest Gap on Soil Microbial Communities in an Evergreen Broad-Leaved Secondary Forest. Forests, 13(12), 2015. https://doi.org/10.3390/f13122015

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