固氮菌在作物生产中的作用与展望

IF 0.5 Q4 AGRONOMY
R. Hindersah, N. Kamaluddin, S. Samanta, S. Banerjee, Sarita Sarkar
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引用次数: 10

摘要

土壤中的低氮含量通常通过化学施肥来克服。长时间施用后,高剂量、高强度施用氮肥会引起土壤氨挥发和硝酸盐积累。在可持续农业中,细菌接种剂的使用与养分管理系统相结合,对土壤健康和生产力具有重要作用。固氮菌生物肥料可作为化学氮肥的替代或补充,在作物生产中提高土壤速效养分,在植物生长过程中提供一些代谢物,并减少肥料用量。本文综述了固氮菌在农业中的作用;以及固氮菌在粮食作物增产和替代化肥方面的应用前景。结果表明,固氮菌促进植物生长的作用机制主要有:生物肥料、生物刺激素和生物保护剂。固氮菌的固氮作用是提供有效氮供根系吸收的机制。固氮菌通过植物激素的合成刺激植物生长;在固氮菌液体培养中检测吲哚乙酸、细胞分裂素和赤霉素。固氮菌的间接作用是产生胞外多糖和保护植物。据报道,在田间接种固氮菌与有机质和减量化肥相结合可改善植物生长和产量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Role and perspective of Azotobacter in crops production
Low nitrogen content in soil is usually overcome by chemical fertilization. After long application period, high-dose and intensive use of N fertilizers can cause ammonia volatilization and nitrates accumulation in soil. In sustainable agriculture, the use of bacterial inoculant integrated with nutrient management system has a role in soil health and productivity. Azotobacter-based biofertilizer is suggested as a chemical nitrogen fertilizer substitute or addition in crop production to improve available nutrients in the soil, provide some metabolites during plant growth, and minimize fertilizer doses. The objective of this literature reviewed paper is to discuss the role of Azotobacter in agriculture; and the prospective of Azotobacter to increase yield and substitute the chemical fertilizer in food crops production. The results revealed that mechanisms by Azotobacter in plant growth enhancement are as biofertilizer, biostimulant, and bioprotectant. Nitrogen fixation by Azotobacter is the mechanism to provide available nitrogen for uptake by roots. Azotobacter stimulates plant growth through phytohormones synthesis; indole acetic acid, cytokinins, and gibberellins are detected in the liquid culture of Azotobacter. An indirect effect of Azotobacter is exopolysaccharide production and plant protection. Inoculation of Azotobacter in the field integrated with organic matter and reduced chemical fertilizer are reported to improve plant growth and yield.
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来源期刊
Sains Tanah
Sains Tanah Environmental Science-Pollution
CiteScore
1.90
自引率
0.00%
发文量
16
审稿时长
8 weeks
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