Effect of two contrasting biochars on soil microbiota in the humid tropics of Peninsular Malaysia

Report on soil microbial community in tropical soil of humid tropics remained limited despite the current research interest in biochar-microbe study in various climatic regions. A field-trial spanning three consecutive crop cycles of Zea mays var. Masmadu was conducted in tropical Acrisols of Penins...

Full description

Saved in:
Bibliographic Details
Main Authors: Halmi, Muhammad Farid Azlan, Simarani, Khanom
Format: Article
Published: Elsevier 2021
Subjects:
Online Access:http://eprints.um.edu.my/26902/
Tags: Add Tag
No Tags, Be the first to tag this record!
id my.um.eprints.26902
record_format eprints
spelling my.um.eprints.269022022-04-13T07:06:41Z http://eprints.um.edu.my/26902/ Effect of two contrasting biochars on soil microbiota in the humid tropics of Peninsular Malaysia Halmi, Muhammad Farid Azlan Simarani, Khanom QD Chemistry S Agriculture (General) Report on soil microbial community in tropical soil of humid tropics remained limited despite the current research interest in biochar-microbe study in various climatic regions. A field-trial spanning three consecutive crop cycles of Zea mays var. Masmadu was conducted in tropical Acrisols of Peninsular Malaysia. Palm kernel shell and rice husk biochars of different feedstock and pyrolysis conditions were used for amendment. Soil samples were collected during maize harvesting and were analyzed for physicochemical properties (pH, CEC, organic C, labile active C), microbial biomass (C, N), and seven C-cycle enzymes activity (total cellulase, endoglucanase, beta-glucosidase, xylanase, invertase, phenol oxidase, peroxidase). Total soil genomic DNA was extracted and subjected to the analysis of bacterial 16S rRNA and fungal ITS gene abundance quantification. Microbial genetic profiling was fingerprinted by using DGGE. Significant increases of all measured soil physicochemical properties, microbial biomass C, microbial biomass N, and gene abundances were observed in all biochar amended soils. Significant changes of total cellulase, endoglucanase, phenol oxidase, and peroxidase were not detected. A significant shift in microbial genotypic and enzymatic functional diversity based on microbial C-cycle enzymes was not detected. Correlation data revealed significant linkages of soil microbial biomasses and gene abundances with all measured soil physicochemical properties. The biochar influences the microbial community by elevating microbial habitat potential to a more favorable state and increasing labile active carbon sources in the field trial. Elsevier 2021-08-01 Article PeerReviewed Halmi, Muhammad Farid Azlan and Simarani, Khanom (2021) Effect of two contrasting biochars on soil microbiota in the humid tropics of Peninsular Malaysia. Geoderma, 395. ISSN 0016-7061, DOI https://doi.org/10.1016/j.geoderma.2021.115088 <https://doi.org/10.1016/j.geoderma.2021.115088>. 10.1016/j.geoderma.2021.115088
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic QD Chemistry
S Agriculture (General)
spellingShingle QD Chemistry
S Agriculture (General)
Halmi, Muhammad Farid Azlan
Simarani, Khanom
Effect of two contrasting biochars on soil microbiota in the humid tropics of Peninsular Malaysia
description Report on soil microbial community in tropical soil of humid tropics remained limited despite the current research interest in biochar-microbe study in various climatic regions. A field-trial spanning three consecutive crop cycles of Zea mays var. Masmadu was conducted in tropical Acrisols of Peninsular Malaysia. Palm kernel shell and rice husk biochars of different feedstock and pyrolysis conditions were used for amendment. Soil samples were collected during maize harvesting and were analyzed for physicochemical properties (pH, CEC, organic C, labile active C), microbial biomass (C, N), and seven C-cycle enzymes activity (total cellulase, endoglucanase, beta-glucosidase, xylanase, invertase, phenol oxidase, peroxidase). Total soil genomic DNA was extracted and subjected to the analysis of bacterial 16S rRNA and fungal ITS gene abundance quantification. Microbial genetic profiling was fingerprinted by using DGGE. Significant increases of all measured soil physicochemical properties, microbial biomass C, microbial biomass N, and gene abundances were observed in all biochar amended soils. Significant changes of total cellulase, endoglucanase, phenol oxidase, and peroxidase were not detected. A significant shift in microbial genotypic and enzymatic functional diversity based on microbial C-cycle enzymes was not detected. Correlation data revealed significant linkages of soil microbial biomasses and gene abundances with all measured soil physicochemical properties. The biochar influences the microbial community by elevating microbial habitat potential to a more favorable state and increasing labile active carbon sources in the field trial.
format Article
author Halmi, Muhammad Farid Azlan
Simarani, Khanom
author_facet Halmi, Muhammad Farid Azlan
Simarani, Khanom
author_sort Halmi, Muhammad Farid Azlan
title Effect of two contrasting biochars on soil microbiota in the humid tropics of Peninsular Malaysia
title_short Effect of two contrasting biochars on soil microbiota in the humid tropics of Peninsular Malaysia
title_full Effect of two contrasting biochars on soil microbiota in the humid tropics of Peninsular Malaysia
title_fullStr Effect of two contrasting biochars on soil microbiota in the humid tropics of Peninsular Malaysia
title_full_unstemmed Effect of two contrasting biochars on soil microbiota in the humid tropics of Peninsular Malaysia
title_sort effect of two contrasting biochars on soil microbiota in the humid tropics of peninsular malaysia
publisher Elsevier
publishDate 2021
url http://eprints.um.edu.my/26902/
_version_ 1735409473504149504
score 13.214268