有机耕作方式对改善椰子园土壤健康的影响

IF 7.1 2区 环境科学与生态学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Environmental Technology & Innovation Pub Date : 2025-05-01 Epub Date: 2025-02-11 DOI:10.1016/j.eti.2025.104067
Nguyen Khoi Nghia , Javad Robatjazi , Vo Duyen Thao Vy , Hüseyin Barış Tecimen , Hendra Gonsalve W. Lasar , Didier Lesueur , Shahla Hosseini Bai , Huu-Tuan Tran , Nguyen Huu Thien , Do Thanh Luan
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引用次数: 0

摘要

本研究旨在提供与传统农场相比,有机管理(of)在多大程度上改善土壤健康的数据。在本研究中,共收集了24个表层土壤样品(0-30 cm),分别来自越南Ben Tre的Mo Cay Nam和Mo Cay Bac,分别代表有机和传统农业土壤,从化学、物理和生物特性方面分析了耕作制度。采用原子吸收光谱法、串联稀释法和电镀法检测土壤养分、土壤微生物密度、脱氢酶活性和土壤细菌多样性;分别使用Invitrogen™和Qubit™进行三苯基甲醛检测和DNA提取。结果表明,有机农田土壤容重比常规农田低11% %,土壤孔隙度高4% %。同时,有机耕作土壤NH4+和速效磷含量均较高,分别为38.9 mg kg−1和69.0 mg kg−1。与有机农场(OF)相比,常规农场(CF)的土壤细菌总数和纤维素分解细菌总数(6.01 log CFU g−1土壤vs 6.26 log CFU g−1土壤)和(3.82 log CFU g−1土壤vs 4.18 log CFU g−1土壤)分别显著低于有机农场(CF)。土壤细菌群落的β多样性,以及细菌目Bacillales、Frankiales、Elsterales、Pseudomonadales和Pedosphaerales表现出更高的有机耕作方式,有机农场(of)的脱氢酶活性(0.61 µg TPF g−1土壤小时−1)显著高于传统农场(CF)的0.47 µg TPF g−1土壤小时−1。本研究证明了有机管理对椰子园土壤健康的益处,并促进了椰子园的整体健康。
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Effect of organic farming practices on soil health improvement of coconut farms
The present study aimed to provide data on what extend of organic management (OF) improve soil health compared to conventional farms (CF). In this study, a total of 24 top soil samples (0–30 cm) were collected from Mo Cay Nam and Mo Cay Bac, Ben Tre, Vietnam, representing organic vs conventional farm soils, respectively to analyze farming systems in terms of the chemical, physical, and biological soil properties. Soil nutrients, soil microbial density, dehydrogenase enzyme activity and soil bacteria diversity were detected using atomic absorption spectrometry, serial dilution and plating; triphenyl formazan detection, and DNA extraction using Invitrogen™ and Qubit™, respectively. Our results indicated that soil bulk density was 11 % lower and soil porosity was 4 % higher, respectively at organic farms compared to the conventional farms. Meanwhile, both soil NH4+ and available phosphorus contents were higher in the organic farming soils (38.9 mg kg−1 and 69.0 mg kg−1, respectively). Total soil bacteria and cellulose-decomposing bacteria were found to be insignificantly lower in conventional farms (CF) as compared to organic farms (OF) (6.01 log CFU g−1 soil vs 6.26 log CFU g−1 soil) and (3.82 log CFU g−1 soil vs 4.18 log CFU g−1 soil), respectively. The beta diversity of soil bacterial community, along with the bacterial orders Bacillales, Frankiales, Elsterales, Pseudomonadales, and Pedosphaerales exhibited higher with organic farming practices and dehydrogenase enzyme activity in organic farms (OF) was significantly higher (0.61 µg TPF g−1 soil hour−1) as compared to 0.47 µg TPF g−1 soil hour−1 in conventional farms (CF). This study demonstrates the benefits of organic management on soil health in coconut plantations and promotes the overall health of coconut orchards.
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来源期刊
Environmental Technology & Innovation
Environmental Technology & Innovation Environmental Science-General Environmental Science
CiteScore
14.00
自引率
4.20%
发文量
435
审稿时长
74 days
期刊介绍: Environmental Technology & Innovation adopts a challenge-oriented approach to solutions by integrating natural sciences to promote a sustainable future. The journal aims to foster the creation and development of innovative products, technologies, and ideas that enhance the environment, with impacts across soil, air, water, and food in rural and urban areas. As a platform for disseminating scientific evidence for environmental protection and sustainable development, the journal emphasizes fundamental science, methodologies, tools, techniques, and policy considerations. It emphasizes the importance of science and technology in environmental benefits, including smarter, cleaner technologies for environmental protection, more efficient resource processing methods, and the evidence supporting their effectiveness.
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