Bioinoculants—Natural Biological Resources for Sustainable Plant Production

环境科学 土壤肥力 土壤健康 农业 可持续农业 持续性 农业生产力 土壤碳 农业生态学 业务 自然资源经济学 农林复合经营 农业工程 土壤有机质 生态学 生物 工程类 经济 土壤水分 土壤科学
作者
Sagar Maitra,Marián Brestič,Preetha Bhadra,Tanmoy Shankar,Subhashisa Praharaj,Jnana Bharati Palai,Mahmood Shah,Viliam Bárek,P. Ondrišík,Milan Skalický,Akbar Hossain
出处
期刊:Microorganisms [Multidisciplinary Digital Publishing Institute]
卷期号:10 (1): 51-51 被引量:37
标识
DOI:10.3390/microorganisms10010051
摘要

Agricultural sustainability is of foremost importance for maintaining high food production. Irresponsible resource use not only negatively affects agroecology, but also reduces the economic profitability of the production system. Among different resources, soil is one of the most vital resources of agriculture. Soil fertility is the key to achieve high crop productivity. Maintaining soil fertility and soil health requires conscious management effort to avoid excessive nutrient loss, sustain organic carbon content, and minimize soil contamination. Though the use of chemical fertilizers have successfully improved crop production, its integration with organic manures and other bioinoculants helps in improving nutrient use efficiency, improves soil health and to some extent ameliorates some of the constraints associated with excessive fertilizer application. In addition to nutrient supplementation, bioinoculants have other beneficial effects such as plant growth-promoting activity, nutrient mobilization and solubilization, soil decontamination and/or detoxification, etc. During the present time, high energy based chemical inputs also caused havoc to agriculture because of the ill effects of global warming and climate change. Under the consequences of climate change, the use of bioinputs may be considered as a suitable mitigation option. Bioinoculants, as a concept, is not something new to agricultural science, however; it is one of the areas where consistent innovations have been made. Understanding the role of bioinoculants, the scope of their use, and analysing their performance in various environments are key to the successful adaptation of this technology in agriculture.

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