Soil nutrition, microbial composition and some selected associated P n S enzymes under charcoal production sites of derived Savanna, Nigeria

Author:

Adeyemo Adebayo Jonathan1,Oluwagbemi Isreal A.1,Ajiboye William O.1,Akinnagbe Evelyn Atinuke2,Akande Tolulope Yetunde3,Oyun Mathhew Banji1,Awodun Moses Adeyeye1

Affiliation:

1. Federal University of Technology, Akure, Nigeria

2. Federal Polytechnic Ile-Oluji

3. Federal University Oye Ekiti

Abstract

Abstract Soil functions as the active force managing diverse biogeochemical processes in tropical forest ecosystem, which include the storage and recycling of nutrients, as well as the decomposition of organic matter. Anthropogenic activities, particularly deforestation with a focus on charcoal production, have substantially disrupted these processes, leading to notable changes in microbial activities, enzyme functions, and the availability and soil nutrient status of the derived savannah in southwestern Nigeria. While there is increasing recognition of charcoal’s impact on soil properties, there remains a noticeable research gap in understanding its specific effects on some associated soil microbial properties, soil enzymes and micronutrients in charcoal production site. Our investigation focuses on assessing soil nutrition, microbial composition and some selected associated P and S enzymes under charcoal production sites of derived Savanna, Nigeria. Soil samples were systematically collected at depths of 0–15 cm, 15–30 cm, and 30–45 cm in locations associated with charcoal production (CPS) and non-production sites (NPS). The objective was to assess the microbial biomass content in phosphorus, activity levels of microorganisms in soil, focusing on their production of phosphorus and sulfur enzymes, and to examine the overall nutrient release in these diverse environments. The findings revealed Biomass phosphorus (Bp), Phosphatase (Pho), Thiosulfate dehydrogenase (Tsd), Dimethyl sulfoxide reductase (Dsr), and micronutrients (Mg, Zn, Cu, Co, Fe) were significantly higher in CPS than in NPS. Phytase (Phy) followed a consistent trend at both sites with significant differences among means. Except for copper (Cu), the cobalt (Co), iron (Fe), manganese (Mn), and zinc (Zn) concentrations declined as the soil depth increased in the CPS and NPS across the three locations. This indicates that charcoal production sites in the derived savannah forest of southwestern Nigeria have a significant impact on soil properties and microbial activities. The higher levels of Bp, Pho, Tsd, and Dsr in CPS suggest increased microbial activity and nutrient availability compared to NPS. Additionally, the variation in micronutrient concentrations with soil depth indicates differences in nutrient distribution and availability between the two sites. These findings underscore the importance of further research to fully understand the effects of charcoal production on soil ecosystems and to develop sustainable management practices that mitigate these impacts.

Publisher

Research Square Platform LLC

Reference44 articles.

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