Biopriming of micropropagated banana plants at pre- or post-BBTV inoculation stage with rhizosphere and endophytic bacteria determines their ability to induce systemic resistance against BBTV in cultivar Grand Naine Ravikumar Manohar Jebakumar, Ramasamy Selvarajan Biocontrol Science and Technology, 2018 Rhizospheric and endophytic bacteria isolated from the roots and corms of banana were tested to find out their efficiency in controlling against banana bunchy top virus (BBTV). Bioformulations of mixtures of endophytic Bacillus pumilus and B. subtilis isolated from banana cv. Grand Naine and rhizobacterial isolate Pseudomonas fluorescens (Pf1) were found to be effective in increasing the growth and physiological parameters such as pseudostem girth and height, number of leaves, phyllochron, and leaf area in biohardened plants under greenhouse study. The consortia of bioformulation mixture of B. pumilus, B. subtilis, and P. fluorescens I showed 61.62% disease reduction over control. The defence enzymes such as peroxidase (POX), polyphenol oxidase (PPO), phenylalanine ammonia lyase (PAL), and total phenol were induced to an elevated level in biohardened plants. The applications of bioformulations to plants led to delay the symptom expression for 63.75 to 70.50 days compared to control after challenge inoculation with the virus in 34–67% of plants that exhibited the symptoms till 150 DAI. However, biohardening of plants with the same combinations of bacteria three days after BBTV inoculation led to express the symptoms 29.16 to 36.71 days and there was a significant decrease in plant growth parameters. Biopriming prior to BBTV infection has attributed to the enhanced plant growth and resistance against BBTV whereas, the same treatments after virus inoculation did not induce resistance. This study has proved that the time of application of consortia of bio-inoculants determines their effect of induced resistance to BBTV in micropropagated plants.
RECENT SCHOLAR PUBLICATIONS
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Biopriming of micropropagated banana plants at pre-or post-BBTV inoculation stage with rhizosphere and endophytic bacteria determines their ability to induce systemic … R Manohar Jebakumar, R Selvarajan Biocontrol Science and Technology 28 (11), 1074-1090 , 2018 2018 Citations: 15
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MOST CITED SCHOLAR PUBLICATIONS
Virus titre determines the efficiency of Pentalonia nigronervosa (Aphididae: Hemiptera) to transmit banana bunchy top virus RM Jebakumar, V Balasubramanian, R Selvarajan VirusDisease 29 (4), 499 , 2018 2018 Citations: 28
Biopriming of micropropagated banana plants at pre-or post-BBTV inoculation stage with rhizosphere and endophytic bacteria determines their ability to induce systemic … R Manohar Jebakumar, R Selvarajan Biocontrol Science and Technology 28 (11), 1074-1090 , 2018 2018 Citations: 15
Genome-scale analyses of polyketide synthases in banana: phylogenetics and expression profiling forecast their candidacy in specialized metabolism R Pothiraj, MJ Ravikumar, B Suthanthiram, U Subbaraya, ... Gene 778, 145472 , 2021 2021 Citations: 12
Evidence of seed transmission of Banana bract mosaic virus in Musa synthetic diploid H-201, a possible threat to banana breeding R Selvarajan, V Balasubramanian, P Priyanka, RM Jebakumar, ... European Journal of Plant Pathology 156 (4), 1181-1187 , 2020 2020 Citations: 12
Phenylphenalenone-type phytoalexins in banana ( Musa species): a comprehensive review for new research directions P Krishnamurthy, MJ Ravikumar, S Arumugam Palanivelu, R Pothiraj, ... Phytochemistry Reviews 22 (1), 187-210 , 2023 2023 Citations: 7
Unveiling host-virus-vector interaction and latency phenomenon of banana bunchy top virus (BBTV) infecting banana RM Jebakumar, V Balasubramanian, N Krishnan, R Selvarajan Physiology and Molecular Biology of Plants 31 (8), 1375-1384 , 2025 2025 Citations: 1
Harnessing Nature: Green Synthesis of Zinc Oxide Nanoparticles from Banana Peel and Their Impact on Seed Germination AV Suresh, MJ Ravikumar, S Murthy 2024 Citations: 1