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Cyanobacteria: A Precious Bio-resource in Agriculture Ecosystem and Environmental Sustainability

机译:蓝细菌:农业生态系统和环境可持续性中的宝贵生物资源

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摘要

Keeping in view, the challenges concerning agro-ecosystem and environment, the recent developments in biotechnology offers a more reliable approach to address the food security for future generations and also resolve the complex environmental problems. Several unique features of cyanobacteria such as oxygenic photosynthesis, high biomass yield, growth on non-arable lands and a wide variety of water sources (contaminated and polluted waters), generation of useful by-products and bio-fuels, enhancing the soil fertility and reducing green house gas emissions, have collectively offered these bio-agents as the precious bio-resource for sustainable development. Cyanobacterial biomass is the effective bio-fertilizer source to improve soil physico-chemical characteristics such as water-holding capacity and mineral nutrient status of the degraded lands. The unique characteristics of cyanobacteria include their ubiquity presence, short generation time and capability to fix the atmospheric N2. Similar to other prokaryotic bacteria, the cyanobacteria are increasingly applied as bio-inoculants for improving soil fertility and environmental quality. Genetically engineered cyanobacteria have been devised with the novel genes for the production of a number of bio-fuels such as bio-diesel, bio-hydrogen, bio-methane, synga, and therefore, open new avenues for the generation of bio-fuels in the economically sustainable manner. This review is an effort to enlist the valuable information about the qualities of cyanobacteria and their potential role in solving the agricultural and environmental problems for the future welfare of the planet.
机译:考虑到有关农业生态系统和环境的挑战,生物技术的最新发展为解决子孙后代的粮食安全问题和解决复杂的环境问题提供了更可靠的方法。蓝细菌的几个独特特征,例如氧气的光合作用,高生物量产量,在非耕地和各种水源(受污染和污染的水)上的生长,有用的副产物和生物燃料的产生,增强土壤肥力和减少温室气体排放,已经集体提供了这些生物制剂作为可持续发展的宝贵生物资源。蓝藻生物质是改善土壤理化特性(如退化土地的持水能力和矿质养分状况)的有效生物肥料来源。蓝细菌的独特特征包括它们的普遍存在,较短的生成时间和固定大气中N2的能力。与其他原核细菌相似,蓝细菌越来越多地用作生物接种剂,用于改善土壤肥力和环境质量。已经设计出具有新基因的基因工程蓝细菌,用于生产多种生物燃料,例如生物柴油,生物氢,生物甲烷,合成气,因此,为在印度生产生物燃料开辟了新途径。经济上可持续的方式。这次审查旨在征集有关蓝细菌的质量及其在解决农业和环境问题,为地球的未来福祉方面的潜在作用的宝贵信息。

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