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土壤改良中促进植物生长的杆菌奇迹对可持续发展具有未来社会经济意义。

Marvels of Bacilli in soil amendment for plant-growth promotion toward sustainable development having futuristic socio-economic implications.

作者信息

Mukhopadhyay Meenakshi, Mukherjee Ashutosh, Ganguli Sayak, Chakraborti Archisman, Roy Samrat, Choudhury Sudeshna Shyam, Subramaniyan Vetriselvan, Kumarasamy Vinoth, Sayed Amany A, El-Demerdash Fatma M, Almutairi Mikhlid H, Şuţan Anca, Dhara Bikram, Mitra Arup Kumar

机构信息

Department of Botany, Vivekananda College (Affiliated to University of Calcutta), Kolkata, West Bengal, India.

Department of Biotechnology, St. Xavier's College (Autonomous), Kolkata, West Bengal, India.

出版信息

Front Microbiol. 2023 Dec 7;14:1293302. doi: 10.3389/fmicb.2023.1293302. eCollection 2023.

Abstract

Microorganisms are integral components of ecosystems, exerting profound impacts on various facets of human life. The recent United Nations General Assembly (UNGA) Science Summit emphasized the critical importance of comprehending the microbial world to address global challenges, aligning with the United Nations Sustainable Development Goals (SDGs). In agriculture, microbes are pivotal contributors to food production, sustainable energy, and environmental bioremediation. However, decades of agricultural intensification have boosted crop yields at the expense of soil health and microbial diversity, jeopardizing global food security. To address this issue, a study in West Bengal, India, explored the potential of a novel multi-strain consortium of plant growth promoting (PGP) spp. for soil bioaugmentation. These strains were sourced from the soil's native microbial flora, offering a sustainable approach. In this work, a composite inoculum of MMAM, MMAM3), and MMAM2 were introduced into an over-exploited agricultural soil and implications on the improvement of vegetative growth and yield related traits of Gylcine max (L) Meril. plants were evaluated, growing them as model plant, in pot trial condition. The study's findings demonstrated significant improvements in plant growth and soil microbial diversity when using the bacterial consortium in conjunction with vermicompost. Metagenomic analyses revealed increased abundance of many functional genera and metabolic pathways in consortium-inoculated soil, indicating enhanced soil biological health. This innovative bioaugmentation strategy to upgrade the over-used agricultural soil through introduction of residual PGP bacterial members as consortia, presents a promising path forward for sustainable agriculture. The rejuvenated patches of over-used land can be used by the small and marginal farmers for cultivation of resilient crops like soybean. Recognizing the significance of multi-strain PGP bacterial consortia as potential bioinoculants, such technology can bolster food security, enhance agricultural productivity, and mitigate the adverse effects of past agricultural activities.

摘要

微生物是生态系统的重要组成部分,对人类生活的各个方面都产生着深远影响。最近的联合国大会科学峰会强调了理解微生物世界对于应对全球挑战的至关重要性,这与联合国可持续发展目标(SDGs)相一致。在农业中,微生物是粮食生产、可持续能源和环境生物修复的关键贡献者。然而,数十年的农业集约化以土壤健康和微生物多样性为代价提高了作物产量,危及全球粮食安全。为了解决这个问题,印度西孟加拉邦的一项研究探索了一种新型的促进植物生长(PGP)多菌株联合体用于土壤生物强化的潜力。这些菌株源自土壤中的本地微生物群落,提供了一种可持续的方法。在这项工作中,将MMAM、MMAM3和MMAM2的复合接种物引入过度开发的农业土壤中,并在盆栽试验条件下将大豆(Gylcine max (L) Meril.)作为模式植物种植,评估其对植物营养生长和产量相关性状改善的影响。研究结果表明,将细菌联合体与蚯蚓堆肥结合使用时,植物生长和土壤微生物多样性有显著改善。宏基因组分析显示,在接种联合体的土壤中,许多功能属和代谢途径的丰度增加,表明土壤生物健康得到增强。这种通过引入残留的PGP细菌成员作为联合体来升级过度使用的农业土壤的创新生物强化策略,为可持续农业提供了一条有前景的道路。过度使用土地的复垦地块可供小农户和边际农户用于种植大豆等抗逆作物。认识到多菌株PGP细菌联合体作为潜在生物接种剂的重要性,这种技术可以加强粮食安全、提高农业生产力,并减轻过去农业活动的不利影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd5b/10752760/083faf502832/fmicb-14-1293302-g001.jpg

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