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Genomic Insights and Biocontrol Potential of Ten Bacterial Strains from the Tomato Core Microbiome

Overview
Journal Front Plant Sci
Date 2024 Sep 10
PMID 39253574
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Abstract

Introduction: Despite their adverse environmental effects, modern agriculture relies heavily on agrochemicals to manage diseases and pests and enhance plant growth and productivity. Some of these functions could instead be fulfilled by endophytes from the plant microbiota, which have diverse activities beneficial for plant growth and health.

Methods: We therefore used a microbiome-guided top-down approach to select ten bacterial strains from different taxa in the core microbiome of tomato plants in the production chain for evaluation as potential bioinoculants. High-quality genomes for each strain were obtained using Oxford Nanopore long-read and Illumina short-read sequencing, enabling the dissection of their genetic makeup to identify phyto-beneficial traits.

Results: Bacterial strains included both taxa commonly used as biofertilizers and biocontrol agents (i.e. and ) as well as the less studied genera , , , and . When inoculated in the tomato rhizosphere, these strains promoted plant growth and reduced the severity of Fusarium Crown and Root Rot and Bacterial Spot infections. Genome analysis yielded a comprehensive inventory of genes from each strain related to processes including colonization, biofertilization, phytohormones, and plant signaling. Traits directly relevant to fertilization including phosphate solubilization and acquisition of nitrogen and iron were also identified. Moreover, the strains carried several functional genes putatively involved in abiotic stress alleviation and biotic stress management, traits that indirectly foster plant health and growth.

Discussion: This study employs a top-down approach to identify new plant growth-promoting rhizobacteria (PGPRs), offering an alternative to the conventional bottom-up strategy. This method goes beyond the traditional screening of the strains and thus can expand the range of potential bioinoculants available for market application, paving the way to the use of new still underexplored genera.

Citing Articles

Mitigating Water Stress in Plants with Beneficial Bacteria: Effects on Growth and Rhizosphere Bacterial Communities.

Nicotra D, Mosca A, Dimaria G, Massimino M, Di Stabile M, La Bella E Int J Mol Sci. 2025; 26(4).

PMID: 40003931 PMC: 11855071. DOI: 10.3390/ijms26041467.

References
1.
Taghavi S, van der Lelie D, Hoffman A, Zhang Y, Walla M, Vangronsveld J . Genome sequence of the plant growth promoting endophytic bacterium Enterobacter sp. 638. PLoS Genet. 2010; 6(5):e1000943. PMC: 2869309. DOI: 10.1371/journal.pgen.1000943. View

2.
Bulgarelli D, Rott M, Schlaeppi K, van Themaat E, Ahmadinejad N, Assenza F . Revealing structure and assembly cues for Arabidopsis root-inhabiting bacterial microbiota. Nature. 2012; 488(7409):91-5. DOI: 10.1038/nature11336. View

3.
Zhao H, Shao D, Jiang C, Shi J, Li Q, Huang Q . Biological activity of lipopeptides from Bacillus. Appl Microbiol Biotechnol. 2017; 101(15):5951-5960. DOI: 10.1007/s00253-017-8396-0. View

4.
Fu R, Feng H, Dini-Andreote F, Wang Z, Bo C, Cao W . Modulation of the Tomato Rhizosphere Microbiome via Changes in Root Exudation Mediated by the Ethylene Receptor NR. Microorganisms. 2021; 9(12). PMC: 8705318. DOI: 10.3390/microorganisms9122456. View

5.
Hanifah N, Ghadamgahi F, Ghosh S, Ortiz R, Whisson S, Vetukuri R . Comparative transcriptome profiling provides insights into the growth promotion activity of strain SLU99 in tomato and potato plants. Front Plant Sci. 2023; 14:1141692. PMC: 10393259. DOI: 10.3389/fpls.2023.1141692. View