根际
生物病虫害防治
基因组
农业
有机农业
多样性(政治)
生物
晋升(国际象棋)
生物技术
植物生长
农林复合经营
生态学
植物
细菌
社会学
生物化学
遗传学
政治
人类学
政治学
法学
基因
作者
Renuka Ravinath,Talambedu Usha,Anupam J. Das,A. Sarangi,Neelakanta Sarvashiva Kiran,Arvind Kumar Goyal,M. K. Prasanna Kumar,Sushil Kumar Middha,Sushil Kumar Middha
出处
期刊:Omics A Journal of Integrative Biology
[Mary Ann Liebert]
日期:2024-05-28
卷期号:28 (6): 303-318
标识
DOI:10.1089/omi.2023.0272
摘要
Food production must undergo systems change to meet the sustainable development goals (SDGs). For example, organic farming can be empowered by soil microorganisms with plant growth promotion (PGP) and biocontrol features. In this context, there have been limited studies on pomegranate. We investigated microbial diversity in rhizosphere of the pomegranate "Bhagwa" variety and its potential role in PGP and biocontrol. Both bulk and rhizosphere soil samples were analyzed for their physicochemical properties. Whole metagenome sequencing was conducted using the Illumina NovaSeq6000 platform. Surprisingly, we found that bulk and rhizosphere soil samples had comparable microbial diversity. Metagenome sequencing revealed the abundance of Streptomyces indicus, Bradyrhizobium kalamazoonesis, and Pseudomonas cellulosum in the rhizosphere that are reported here for the first time in agricultural literature. Pathway prediction analysis using KEGG (Kyoto Encyclopedia for Genes and Genomes) and COG (clusters of orthologous genes) databases identified metabolic pathways associated with biocontrol properties against pathogens. We confirmed the metagenome data in vitro, which demonstrated their PGP potential and antimicrobial properties. For instance, S. indicus produced high concentration of indole-3-acetic acid, a PGP phytohormone, that can stimulate plant growth. In addition, an antimicrobial susceptibility assay suggested that bacterial extracts displayed activity against Xanthomonas, a primary pathogen causing the pomegranate wilt disease. In conclusion, this study suggests that S. indicus, B. kalamazoonesis, and P. cellulosum can potentially be PGP and biocontrol agents that may contribute to increased crop productivity in pomegranate cultivation. These agents and their combinations warrant future research with an eye on SDGs and so as to enable and innovate organic farming and pomegranate agricultural practices.
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