Department of Biotechnology, Microbial Biotechnology Laboratory, Dr. Khem Singh Gill Akal College of Agriculture, Eternal University, Baru Sahib, Sirmour, 173101, Himachal Pradesh, India.
Department of Microbiology, Akal College of Basic Sciences, Eternal University, Baru Sahib, Sirmour, 173101, Himachal Pradesh, India.
Curr Microbiol. 2023 Apr 18;80(5):186. doi: 10.1007/s00284-023-03255-7.
Globally, man-made agrochemicals plays crucial role in plant growth promotion and boost crop yield. The agrochemicals overuse leaves the detrimental damage on the environment and humans. Biostimulants developed from single or multiple microbes (archaea, bacteria, and fungi) could be the appropriate alternative of agrochemical which sustains the agriculture as well as environment. In the present investigation, 93 beneficial bacteria associated with rhizospheric and endophytic region were isolated using diverse growth media. The isolated bacteria were screened for macronutrients availing traits including dinitrogen fixation, phosphorus and potassium solubilization. The bacterial consortium was developed using selected bacteria with multifunctional attributes and evaluated for the growth promotion of finger millet crop. Three potent NPK strains were identified as Erwinia rhapontici EU-FMEN-9 (N-fixer), Paenibacillus tylopili EU-FMRP-14 (P-solubilizer) and Serratia marcescens EU-FMRK-41 (K-solubilizer) using 16S rRNA gene sequencing and BLAST analysis. The developed bacterial consortium inoculation on finger millet resulted in the improvement of growth and physiological parameters with respect to chemical fertilizer and control. The compatible mixture of bacteria was found to have more ability to increase the growth of finger millet and it might be utilized as biostimulants for nutri-cereal crops growing in hilly regions.
在全球范围内,人为农用化学品在促进植物生长和提高作物产量方面发挥着至关重要的作用。农用化学品的过度使用对环境和人类造成了有害的影响。由单一或多种微生物(古菌、细菌和真菌)开发的生物刺激素可以作为农用化学品的合适替代品,既能维持农业,又能保护环境。在本研究中,使用多种生长培养基从根际和内生区分离出 93 种与有益细菌相关的细菌。对分离出的细菌进行了筛选,以寻找包括固氮、磷和钾溶解在内的养分利用特性。使用具有多功能特性的选定细菌开发了细菌混合体,并对其促进手指小米作物生长的能力进行了评估。通过 16S rRNA 基因测序和 BLAST 分析,鉴定了三种有效的 NPK 菌株,分别是欧文氏菌 EU-FMEN-9(固氮菌)、多粘类芽孢杆菌 EU-FMRP-14(解磷菌)和粘质沙雷氏菌 EU-FMRK-41(解钾菌)。将开发的细菌混合体接种到手指小米上,与化肥和对照相比,可改善生长和生理参数。发现相容的细菌混合物具有更强的增加手指小米生长的能力,因此可能被用作丘陵地区营养谷物作物的生物刺激素。