Academic Journal

Plant based Nano defenders successfully fight microbial contaminants without damaging the morphology and genetics of rose and night queen.

Λεπτομέρειες βιβλιογραφικής εγγραφής
Τίτλος: Plant based Nano defenders successfully fight microbial contaminants without damaging the morphology and genetics of rose and night queen.
Συγγραφείς: Jahangir GZ; Centre for Applied Molecular Biology, University of the Punjab, Quaid-e-Azam Campus, Lahore, Pakistan., Saleem MZ; Centre for Applied Molecular Biology, University of the Punjab, Quaid-e-Azam Campus, Lahore, Pakistan., Akhtar M; Centre for Applied Molecular Biology, University of the Punjab, Quaid-e-Azam Campus, Lahore, Pakistan., Farooq R; Centre for Applied Molecular Biology, University of the Punjab, Quaid-e-Azam Campus, Lahore, Pakistan., Naz A; Department of Biotechnology, Superior University, Lahore, Pakistan., Younas S; Centre for Applied Molecular Biology, University of the Punjab, Quaid-e-Azam Campus, Lahore, Pakistan., Rafique M; Department of Biotechnology, Lahore College for Women University, Lahore, Pakistan., Shaikh RS; Centre for Applied Molecular Biology, University of the Punjab, Quaid-e-Azam Campus, Lahore, Pakistan., Ali Q; Department of Plant Breeding and Genetics, Faculty of Agricultural Sciences, University of the Punjab, Lahore, Pakistan., Han S; School of Biological Sciences and Technology, Liupanshui Normal University, Liupanshui, P.R. China., Ali D; Department of Zoology, College of Science, King Saud University, Riyadh, Saudi Arabia.
Πηγή: PloS one [PLoS One] 2025 Sep 23; Vol. 20 (9), pp. e0331792. Date of Electronic Publication: 2025 Sep 23 (Print Publication: 2025).
Τύπος έκδοσης: Journal Article
Γλώσσα: English
Στοιχεία περιοδικού: Publisher: Public Library of Science Country of Publication: United States NLM ID: 101285081 Publication Model: eCollection Cited Medium: Internet ISSN: 1932-6203 (Electronic) Linking ISSN: 19326203 NLM ISO Abbreviation: PLoS One Subsets: MEDLINE
Imprint Name(s): Original Publication: San Francisco, CA : Public Library of Science
Ιατρικοί όροι (MeSH): Metal Nanoparticles*/chemistry , Rosa*/genetics , Rosa*/microbiology , Rosa*/drug effects , Silver*/chemistry , Silver*/pharmacology, Silver Nitrate/pharmacology ; Gene Expression Regulation, Plant/drug effects ; Plant Shoots/drug effects
Περίληψη: In this study, the callus of Carica papaya was treated with silver nitrate solution to form silver nanoparticles which were later used as anti-contaminant substances in micropropagation media on C. nocturnum (cestrum, night queen) and Rosa indica (rose) in tissue culture medium. For this purpose, the rose and cestrum explants were cultured using murashige and skoog (MS) media containing 2 mg/l benzylaminopurine (BAP). After micropropagation of the shoots, different concentrations of biogenically synthesized silver nanoparticles (AgNPs) i.e., 2, 3, and 5 ppm were added into the MS media, for dose optimization. The morphology of tissue-cultured plants in control and experimental has been studied and compared through fluorescent microscopy and Scanning Electron Microscopy (SEM). The cells, tissues, and vascular bundles of C. nocturnum and rose tissue culture plants were studied in both control and treated plants. AgNPs added at a concentration of 5 ppm to the tissue culture medium of both test plants were safe and effective in controlling the contamination and the bacterial and fungal attack in the tissue culture medium was reduced; it gave the highest percentage of survived plants in both the rose and the cestrum plant. No significant difference was observed in the chlorophyll content of the plants maintained on treatment medium having AgNPs concentration of 5 ppm and the control plants maintained on medium without nanoparticles. The molecular assessment of the stress impact of AgNPs treatment was analyzed through expression of the SAND and PP2A housekeeping genes in treated plants and control plants by comparing their mRNA profile on real-time PCR, and the results showed equal expression of SAND and PP2A in both the control and treated plants. This study proves that low amounts of bio-synthesized silver nanoparticles when supplied in tissue culture media can act as an anti-contaminant in rose and cestrum in vitro cultures without affecting its morphology, physiology, and genetics.
(Copyright: © 2025 Jahangir et al. This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.)
Competing Interests: The authors have declared that no competing interests exist.
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Substance Nomenclature: 3M4G523W1G (Silver)
95IT3W8JZE (Silver Nitrate)
Entry Date(s): Date Created: 20250923 Date Completed: 20250923 Latest Revision: 20250926
Update Code: 20260130
PubMed Central ID: PMC12456797
DOI: 10.1371/journal.pone.0331792
PMID: 40986532
Βάση Δεδομένων: MEDLINE
Περιγραφή
ISSN:1932-6203
DOI:10.1371/journal.pone.0331792