Chitosan nanoparticles having higher degree of acetylation induce resistance against pearl millet downy mildew through nitric oxide generation

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作者
Chandra Nayaka Siddaiah
Keelara Veerappa Harish Prasanth
Niranjan Raj Satyanarayana
Venkataramana Mudili
Vijai Kumar Gupta
Naveen Kumar Kalagatur
Tara Satyavati
Xiao-Feng Dai
Jie-Yin Chen
Andrei Mocan
Bhim Pratap Singh
Rakesh Kumar Srivastava
机构
[1] University of Mysore,Department of Studies in Biotechnology
[2] Council of Scientific and Industrial Research,Department of Biochemistry, Central Food Technological Research Institute
[3] Karnataka State Open University,Department of Studies in Microbiology
[4] Bharathiar University Campus,Microbiology Division, DRDO
[5] Tallinn University of Technology,BU
[6] Indian Council of Agricultural Research,Centre for Life sciences
[7] Chinese Academy of Agricultural Sciences,Department of Chemistry and Biotechnology, School of Science
[8] University of Medicine and Pharmacy “Iuliu Hațieganu”,All India Coordinated Research Project on Pearl Millet
[9] Mizoram University,Institute of Food Science and Technology
[10] International Crops Research Institute for the Semi-Arid Tropics (ICRISAT),Department of Pharmaceutical Botany, Faculty of Pharmacy
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Downy mildew of pearl millet caused by the biotrophic oomycete Sclerospora graminicola is the most devastating disease which impairs pearl millet production causing huge yield and monetary losses. Chitosan nanoparticles (CNP) were synthesized from low molecular weight chitosan having higher degree of acetylation was evaluated for their efficacy against downy mildew disease of pearl millet caused by Sclerospora graminicola. Laboratory studies showed that CNP seed treatment significantly enhanced pearl millet seed germination percentage and seedling vigor compared to the control. Seed treatment with CNP induced systemic and durable resistance and showed significant downy mildew protection under greenhouse conditions in comparison to the untreated control. Seed treatment with CNP showed changes in gene expression profiles wherein expression of genes of phenylalanine ammonia lyase, peroxidase, polyphenoloxidase, catalase and superoxide dismutase were highly upregulated. CNP treatment resulted in earlier and higher expression of the pathogenesis related proteins PR1 and PR5. Downy mildew protective effect offered by CNP was found to be modulated by nitric oxide and treatment with CNP along with NO inhibitors cPTIO completely abolished the gene expression of defense enzymes and PR proteins. Further, comparative analysis of CNP with Chitosan revealed that the very small dosage of CNP performed at par with recommended dose of Chitosan for downy mildew management.
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