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Modulation of terpenoid indole alkaloid pathway via elicitation with phytosynthesized silver nanoparticles for the enhancement of ajmalicine, a pharmaceutically important alkaloid.
Verma, Sachin Kumar; Goyary, Danswrang; Singh, Amit Kumar; Anandhan, Sivalingam; Raina, Soom Nath; Pandey, Sadanand; Kumar, Shailesh; Khare, Neeraj.
Afiliação
  • Verma SK; Nims Institute of Allied Medical Science and Technology, Nims University Rajasthan, Delhi-Jaipur Highway, NH-11C, Jaipur, 303121, Rajasthan, India.
  • Goyary D; National Bureau of Plant Genetic Resources, Pusa Campus, New Delhi, 110012, India.
  • Singh AK; Division of Pharmaceutical Technology, Defence Research Laboratory, Tezpur, Assam, India.
  • Anandhan S; National Bureau of Plant Genetic Resources, Pusa Campus, New Delhi, 110012, India.
  • Raina SN; ICAR-Directorate of Onion and Garlic Research, Rajgurunagar, Pune, 410505, Maharashtra, India.
  • Pandey S; Amity Institute of Biotechnology, Amity University Uttar Pradesh, Uttar Pradesh, Sector 125, Noida, 201313, India.
  • Kumar S; School of Bioengineering and Food Technology, Faculty of Applied Sciences and Biotechnology, Shoolini University, Solan, 173229, Himachal Pradesh, India.
  • Khare N; National Centre for Cell Science, Ganeshkhind, Pune, 411007, Maharashtra, India.
Planta ; 259(2): 30, 2023 Dec 27.
Article em En | MEDLINE | ID: mdl-38150044
ABSTRACT
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CONCLUSION:

The use of silver nanoparticles as elicitors in cell cultures of Rauwolfia serpentina resulted in increased levels of ajmalicine, upregulated structural and regulatory genes, elevated MDA content, and reduced activity of antioxidant enzymes. These findings hold potential for developing a cost-effective method for commercial ajmalicine production. Plants possess an intrinsic ability to detect various stress signals, prompting the activation of defense mechanisms through the reprogramming of metabolites to counter adverse conditions. The current study aims to propose an optimized bioprocess for enhancing the content of ajmalicine in Rauwolfia serpentina callus through elicitation with phytosynthesized silver nanoparticles. Initially, callus lines exhibiting elevated ajmalicine content were established. Following this, a protocol for the phytosynthesis of silver nanoparticles using seed extract from Rauwolfia serpentina was successfully standardized. The physicochemical attributes of the silver nanoparticles were identified, including their spherical shape, size ranging from 6.7 to 28.8 nm in diameter, and the presence of reducing-capping groups such as amino, carbonyl, and amide. Further, the findings indicated that the presence of 2.5 mg L-1 phytosynthesized silver nanoparticles in the culture medium increased the ajmalicine content. Concurrently, structural genes (TDC, SLS, STR, SGD, G10H) and regulatory gene (ORCA3) associated with the ajmalicine biosynthetic pathway were observed to be upregulated. A notable increase in MDA content and a decrease in the activities of antioxidant enzymes were observed. A notable increase in MDA content and a decrease in the activities of antioxidant enzymes were also observed. Our results strongly recommend the augmentation of ajmalicine content in the callus culture of R. serpentina through supplementation with silver nanoparticles, a potential avenue for developing a cost-effective process for the commercial production of ajmalicine.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Alcaloides de Triptamina e Secologanina / Nanopartículas Metálicas / Antineoplásicos Idioma: En Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Alcaloides de Triptamina e Secologanina / Nanopartículas Metálicas / Antineoplásicos Idioma: En Ano de publicação: 2023 Tipo de documento: Article