Literature DB >> 31153476

An insight into the mechanism of antifungal activity of biogenic nanoparticles than their chemical counterparts.

Madhuree Kumari1, Ved P Giri2, Shipra Pandey1, Manoj Kumar3, Ratna Katiyar4, Chandra S Nautiyal5, Aradhana Mishra6.   

Abstract

Herein, we describe the enhanced antifungal activity of silver nanoparticles biosynthesized by cell free filtrate of Trichoderma viride (MTCC 5661) in comparison to chemically synthesized silver nanoparticles (CSNP) of similar shape and size. Biosynthesized silver nanoparticles (BSNP) enhanced the reduction in dry weight by 20 and 48.8% of fungal pathogens Fusarium oxysporum and Alternaria brassicicola respectively in comparison to their chemical counterparts (CSNP). Nitroblue tetrazolium and Propidium iodide staining demonstrated the higher generation of superoxide radicals lead to higher death in BSNP treated fungus in comparison to CSNP. Scanning electron microscopy of A. brassicicola revealed the osmotic imbalance and membrane disintegrity to be major cause for fungal cell death after treatment with BSNP. To gain an insight into the mechanistic aspect of enhanced fungal cell death after treatment of BSNP in comparison to CSNP, stress responses and real time PCR analysis was carried out with A. brassicicola. It revealed that generation of ROS, downregulation of antioxidant machinery and oxidative enzymes, disruption of osmotic balance and cellular integrity, and loss of virulence are the mechanisms employed by BSNP which establishes them as superior antifungal agent than their chemical counterparts. With increasing drug resistance and ubiquitous presence of fungal pathogens in plant kingdom, BSNP bears the candidature for new generation of antifungal agent.
Copyright © 2019. Published by Elsevier Inc.

Entities:  

Keywords:  Alternaria brassicicola; Antifungal; Biogenic silver nanoparticles; Membrane disintegration; Reactive oxygen species

Mesh:

Substances:

Year:  2019        PMID: 31153476     DOI: 10.1016/j.pestbp.2019.03.005

Source DB:  PubMed          Journal:  Pestic Biochem Physiol        ISSN: 0048-3575            Impact factor:   3.963


  8 in total

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2.  Silica nanoparticles protect rice against biotic and abiotic stresses.

Authors:  Jianfeng Du; Baoyou Liu; Tianfeng Zhao; Xinning Xu; Han Lin; Yatai Ji; Yue Li; Zhiwei Li; Chongchong Lu; Pengan Li; Haipeng Zhao; Yang Li; Ziyi Yin; Xinhua Ding
Journal:  J Nanobiotechnology       Date:  2022-04-22       Impact factor: 9.429

3.  Omics-Based Mechanistic Insight Into the Role of Bioengineered Nanoparticles for Biotic Stress Amelioration by Modulating Plant Metabolic Pathways.

Authors:  Madhuree Kumari; Shipra Pandey; Shashank Kumar Mishra; Ved Prakash Giri; Lalit Agarwal; Sanjay Dwivedi; Alok Kumar Pandey; Chandra Shekhar Nautiyal; Aradhana Mishra
Journal:  Front Bioeng Biotechnol       Date:  2020-04-17

Review 4.  Metallic Structures: Effective Agents to Fight Pathogenic Microorganisms.

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5.  Sunlight-Mediated Green Synthesis of Silver Nanoparticles Using the Berries of Ribes rubrum (Red Currants): Characterisation and Evaluation of Their Antifungal and Antibacterial Activities.

Authors:  Humaira Rizwana; Mona S Alwhibi; Rawan A Al-Judaie; Horiah A Aldehaish; Noura S Alsaggabi
Journal:  Molecules       Date:  2022-03-28       Impact factor: 4.411

6.  Biosynthesized silver nanoparticles using Polygonatum geminiflorum efficiently control fusarium wilt disease of tomato.

Authors:  Maaz Ahmad; Ahmad Ali; Zahid Ullah; Hassan Sher; Dong-Qin Dai; Mohammad Ali; Javed Iqbal; Muhammad Zahoor; Iftikhar Ali
Journal:  Front Bioeng Biotechnol       Date:  2022-09-08

7.  Antifungal Activities of Pure and ZnO-Encapsulated Essential Oil of Zataria multiflora on Alternaria solani as the Pathogenic Agent of Tomato Early Blight Disease.

Authors:  Arezou Akhtari; Mahdi Davari; Aziz Habibi-Yangjeh; Asgar Ebadollahi; Solmaz Feizpour
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8.  Antifungal, Antibacterial, and Cytotoxic Activities of Silver Nanoparticles Synthesized from Aqueous Extracts of Mace-Arils of Myristica fragrans.

Authors:  Humaira Rizwana; Najat A Bokahri; Fatimah S Alkhattaf; Gadah Albasher; Horiah A Aldehaish
Journal:  Molecules       Date:  2021-12-20       Impact factor: 4.411

  8 in total

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