# Screening and Biocontrol Potential of Rhizobacteria Native to Gangetic Plains and Hilly Regions to Induce Systemic Resistance and Promote Plant Growth in Chilli against Bacterial Wilt Disease

**Authors:** Abhijeet Shankar Kashyap, Nazia Manzar, Mahendra Vikram Singh Rajawat, Amit Kumar Kesharwani, Ravinder Pal Singh, S. C. Dubey, Debasis Pattanayak, Shri Dhar, S. K. Lal, Dinesh Singh

PMC · DOI: 10.3390/plants10102125 · Plants · 2021-10-07

## TL;DR

This study identifies beneficial soil bacteria that can help chilli plants grow better and resist bacterial wilt disease.

## Contribution

The study discovers and characterizes rhizobacteria from specific regions that show strong biocontrol and plant growth-promoting traits.

## Key findings

- 38% of rhizobacteria suppressed Ralstonia solanacearum, a cause of bacterial wilt in chilli.
- PDS1 strain showed 71.11% biocontrol efficiency against the disease.
- Five rhizobacterial isolates were identified and linked to enhanced defense enzymes in chilli plants.

## Abstract

Plant growth-promoting rhizobacteria (PGPR) is a microbial population found in the rhizosphere of plants that can stimulate plant development and restrict the growth of plant diseases directly or indirectly. In this study, 90 rhizospheric soil samples from five agro climatic zones of chilli (Capsicum annuum L.) were collected and rhizobacteria were isolated, screened and characterized at morphological, biochemical and molecular levels. In total, 38% of rhizobacteria exhibited the antagonistic capacity to suppress Ralstonia solanacearum growth and showed PGPR activities such as indole acetic acid production by 67.64% from total screened rhizobacteria isolates, phosphorus solubilization by 79.41%, ammonia by 67.75%, HCN by 58.82% and siderophore by 55.88%. We performed a principal component analysis depicting correlation and significance among plant growth-promoting activities, growth parameters of chilli and rhizobacterial strains. Plant inoculation studies indicated a significant increase in growth parameters and PDS1 strain showed maximum 71.11% biocontrol efficiency against wilt disease. The best five rhizobacterial isolates demonstrating both plant growth-promotion traits and biocontrol potential were characterized and identified as PDS1—Pseudomonas fluorescens (MN368159), BDS1—Bacillus subtilis (MN395039), UK4—Bacillus cereus (MT491099), UK2—Bacillus amyloliquefaciens (MT491100) and KA9—Bacillus subtilis (MT491101). These rhizobacteria have the potential natural elicitors to be used as biopesticides and biofertilizers to improve crop health while warding off soil-borne pathogens. The chilli cv. Pusa Jwala treated with Bacillus subtilis KA9 and Pseudomonas fluorescens PDS1 showed enhancement in the defensive enzymes PO, PPO, SOD and PAL activities in chilli leaf and root tissues, which collectively contributed to induced resistance in chilli plants against Ralstonia solanacearum. The induction of these defense enzymes was found higher in leave tissues (PO—4.87-fold, PP0—9.30-fold, SOD—9.49-fold and PAL—1.04-fold, respectively) in comparison to roots tissue at 48 h after pathogen inoculation. The findings support the view that plant growth-promoting rhizobacteria boost defense-related enzymes and limit pathogen growth in chilli plants, respectively, hence managing the chilli bacterial wilt.

## Linked entities

- **Species:** Pseudomonas fluorescens (taxon 294), Bacillus subtilis (taxon 1423), Bacillus cereus (taxon 1396), Bacillus amyloliquefaciens (taxon 1390)

## Full-text entities

- **Genes:** PAL5 (phenylalanine ammonia-lyase 5) [NCBI Gene 101244220] {aka PAL}, PO [NCBI Gene 543959], PPO [NCBI Gene 101258774], FESOD (iron superoxide dismutase) [NCBI Gene 544259] {aka Fe-SODle, sodb}
- **Diseases:** Wilt Disease (MESH:D004194), fungal (MESH:D009181), soil-borne diseases (MESH:D005242), plant disease (MESH:D010939), Bacterial Wilt Disease (MESH:D001424)
- **Species:** Serratia (genus) [taxon 613], Hyphomicrobiales (order) [taxon 356], Pectobacterium carotovorum subsp. carotovorum (subspecies) [taxon 555], Bacteria Latreille et al. 1825 (Bacteria stick insect, genus) [taxon 629395], Phytophthora infestans (potato late blight agent, species) [taxon 4787], Solanum melongena (aubergine, species) [taxon 4111], Bacillus sp. PD1 (species) [taxon 270373], Arthrobacter (genus) [taxon 1663], Pseudomonas aeruginosa (species) [taxon 287], Bacillus subtilis (species) [taxon 1423], Verticillium dahliae (species) [taxon 27337], Capsicum annuum (sweet pepper, species) [taxon 4072], Bacillus amyloliquefaciens (species) [taxon 1390], Enterobacter (genus) [taxon 547], Kinetoplastida sp. A9 (species) [taxon 2650074], Arabidopsis thaliana (mouse-ear cress, species) [taxon 3702], Glomus (genus) [taxon 4875], Pseudomonas sp. UK4 (species) [taxon 452680], Pectobacterium carotovorum (species) [taxon 554], Agrobacterium (genus) [taxon 357], Saccharomyces cerevisiae (baker's yeast, species) [taxon 4932], Azospirillum baldaniorum (species) [taxon 1064539], Rhizobium (genus) [taxon 379], Ranunculus glacialis (species) [taxon 235900], Solanum tuberosum (potatoes, species) [taxon 4113], Bacillus sp. (in: firmicutes) (species) [taxon 1409], Botrytis cinerea (gray fruit mold, species) [taxon 40559], Bradyrhizobium (genus) [taxon 374], Alcaligenes (genus) [taxon 507], Klebsiella pneumoniae (species) [taxon 573], Burkholderia cepacia (species) [taxon 292], Pseudomonas putida (species) [taxon 303], Actinomycetota (actinobacteria, phylum) [taxon 201174], Flavobacterium (genus) [taxon 237], Bacillus cereus (species) [taxon 1396], Pseudomonas syringae pv. tomato (no rank) [taxon 323], Pseudomonas sp. AP13 (species) [taxon 1535617], Oryza sativa (Asian cultivated rice, species) [taxon 4530], Pseudomonas fluorescens (species) [taxon 294], Ralstonia solanacearum (species) [taxon 305], Pseudomonas syringae (species) [taxon 317], Lactobacillus (genus) [taxon 1578]
- **Cell lines:** KA9 — Homo sapiens (Human), Lung small cell carcinoma, Cancer cell line (CVCL_7023), KB — Mus musculus (Mouse), Hybridoma (CVCL_U609), S2 — Drosophila melanogaster (Fruit fly), Spontaneously immortalized cell line (CVCL_Z232)

## Full text

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## Figures

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## References

129 references — full list in the complete paper: https://tomesphere.com/paper/PMC8541367/full.md

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Source: https://tomesphere.com/paper/PMC8541367