Synthetic Microbial Community (SynCom) for Sustainable Agriculture

N. Sai, A. Devi, D. Balachandar
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Abstract

Agricultural sustainability is possible only when reducing crops’ dependency on chemical fertilizers, improving crops’ ability to grow on marginal soil types, and improving their resilience against biotic and abiotic stresses. Though bio inoculants play a crucial role in agricultural sustainability, they are still limited due to low reproducibility in fields due to different crops and cultivars, soil types, and agro-ecological conditions. Traditionally, inoculants are developed through a single isolate study model, i.e., in vitro screening of strains for plant-growth promotion, omitting their interaction with the host plant and soil ecosystem. Hence, a paradigm shift is needed in developing the inoculant to improve the microbe-mediated crop fitness and productivity. In this paper, we framework the synthetic microbial community (SynCom) as a potential resource for developing ecology-based inoculants to augment nutrient acquisition, drought mitigation, and pathogen resistance of crops to ensure sustainability.
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可持续农业合成微生物群落(SynCom)
只有减少作物对化肥的依赖,提高作物在边缘土壤类型上的生长能力,提高它们对生物和非生物胁迫的抵御能力,农业的可持续性才有可能实现。尽管生物接种剂在农业可持续发展中发挥着至关重要的作用,但由于不同作物和品种、土壤类型和农业生态条件的不同,它们在田间的可重复性较低,因此仍然受到限制。传统上,接种剂的开发是通过单一的分离研究模式,即通过体外筛选菌株促进植物生长,而忽略了它们与寄主植物和土壤生态系统的相互作用。因此,需要在开发接种剂方面进行范式转变,以提高微生物介导的作物适应性和生产力。在本文中,我们将合成微生物群落(SynCom)作为开发基于生态的接种剂的潜在资源,以增加作物的养分获取,缓解干旱和抵抗病原体,以确保可持续性。
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