Chittora Deepali, Meena Mukesh, Barupal Tansukh, Swapnil Prashant
Department of Botany, Mohanlal Sukhadia University, Udaipur, 313001, Rajasthan, India.
International Centre for Genetic Engineering and Biotechnology, New Delhi, 110067, India.
Biochem Biophys Rep. 2020 Feb 13;22:100737. doi: 10.1016/j.bbrep.2020.100737. eCollection 2020 Jul.
Continuous increase in global human population and depletion of natural resources of energy posing threat to environment needs, sustainable supply of food and energy. The most ecofriendly approach 'green technology' has been exploited for biofertilizer preparation. Cyanobacteria are the most successful and sustained prokaryotic organism during the course of evolution. They are considered as one of the primitive life forms found on our planet. Cyanobacteria are emerging candidates for efficiently conversion of radiant energy into chemical energy. This biological system produces oxygen as a by-product. Cyanobacterial biomass can also be used for the large scale production of food, energy, biofertilizers, secondary metabolites, cosmetics and medicines. Therefore, cyanobacteria are used in ecofriendly sustainable agricultural practice for production of biomass of very high value and decreasing the level of CO This review article describes the methods of mass production of cyanobacterial biofertilizers and their applications in agriculture and industrial level.
全球人口持续增长以及自然资源能源的枯竭对环境构成威胁,这需要可持续的食物和能源供应。最环保的方法“绿色技术”已被用于生物肥料制备。蓝细菌是进化过程中最成功且持续存在的原核生物。它们被认为是地球上发现的原始生命形式之一。蓝细菌正成为将辐射能有效转化为化学能的新兴候选者。这个生物系统产生氧气作为副产品。蓝细菌生物质还可用于大规模生产食物、能源、生物肥料、次生代谢产物、化妆品和药品。因此,蓝细菌被用于环保型可持续农业实践,以生产高价值生物质并降低二氧化碳水平。这篇综述文章描述了蓝细菌生物肥料的大规模生产方法及其在农业和工业层面的应用。