Department of Genetics, Plant Breeding and Biotechnology, Dr. Khem Singh Gill Akal College of Agriculture, Eternal University, Baru Sahib, Sirmaur, 173101, Himachal Pradesh, India.
Department of Microbiology, Akal College of Basic Science, Eternal University, Baru Sahib, Sirmaur, 173101, Himachal Pradesh, India.
Curr Microbiol. 2024 Jun 14;81(8):222. doi: 10.1007/s00284-024-03755-0.
In the present scenario, growing population demands more food, resulting in the need for sustainable agriculture. Numerous approaches are explored in response to dangers and obstacles to sustainable agriculture. A viable approach is to be exploiting microbial consortium, which generate diverse biostimulants with growth-promoting characteristics for plants. These bioinoculants play an indispensable role in optimizing nutrient uptake efficiency mitigating environmental stress. Plant productivity is mostly determined by the microbial associations that exist at the rhizospheric region of plants. The engineered consortium with multifunctional attributes can be effectively employed to improve crop growth efficacy. A number of approaches have been employed to identify the efficient consortia for plant growth and enhanced crop productivity. Various plant growth-promoting (PGP) microbes with host growth-supporting characteristics were investigated to see if they might work cohesively and provide a cumulative effect for improved growth and crop yield. The effective microbial consortia should be assessed using compatibility tests, pot experimentation techniques, generation time, a novel and quick plant bioassay, and sensitivity to external stimuli (temperature, pH). The mixture of two or more microbial strains found in the root microbiome stimulates plant growth and development. The present review deals with mechanism, formulation, inoculation process, commercialization, and applications of microbial consortia as plant bioinoculants for agricultural sustainability.
在当前的情况下,不断增长的人口需求更多的食物,这导致了对可持续农业的需求。为了应对可持续农业的危险和障碍,人们探索了许多方法。一种可行的方法是利用微生物联合体,它们可以产生具有促进植物生长特性的多种生物刺激素。这些生物接种剂在优化养分吸收效率、减轻环境压力方面发挥着不可或缺的作用。植物的生产力主要取决于植物根际区域存在的微生物群落。具有多功能特性的工程化联合体可有效用于提高作物生长效果。已经采用了许多方法来确定有效的植物生长和提高作物生产力的联合体。研究了多种具有宿主生长支持特性的植物生长促进(PGP)微生物,以观察它们是否可以协同作用并产生累积效应,从而促进生长和提高作物产量。应该使用相容性测试、盆栽实验技术、代时、新颖快速的植物生物测定以及对外部刺激(温度、pH 值)的敏感性来评估有效的微生物联合体。在根际微生物组中发现的两种或更多种微生物菌株的混合物可以刺激植物的生长和发育。本综述涉及微生物联合体作为农业可持续性的植物生物接种剂的机制、配方、接种过程、商业化和应用。