The Role of Nanoemulsions as Antimicrobial Agents in Plant Protection

Author(s):  
Ayat F. Hashim ◽  
Khamis Youssef ◽  
Kamel A. Abd-Elsalam
Author(s):  
Gavin Lewis ◽  
Axel Dinter ◽  
Charlotte Elston ◽  
Michael Thomas Marx ◽  
Christoph Julian Mayer ◽  
...  

Nanomaterials ◽  
2021 ◽  
Vol 11 (9) ◽  
pp. 2393
Author(s):  
Xiuping Wang ◽  
Fei Peng ◽  
Caihong Cheng ◽  
Lina Chen ◽  
Xuejuan Shi ◽  
...  

Plant pathogens constantly develop resistance to antimicrobial agents, and this poses great challenges to plant protection. Therefore, there is a pressing need to search for new antimicrobials. The combined use of antimicrobial agents with different antifungal mechanisms has been recognized as a promising approach to manage plant diseases. Graphene oxide (GO) is a newly emerging and highly promising antimicrobial agent against various plant pathogens in agricultural science. In this study, the inhibitory activity of GO combined with fungicides (Mancozeb, Cyproconazol and Difenoconazole) against Fusarium graminearum was investigated in vivo and in vitro. The results revealed that the combination of GO and fungicides has significant synergistic inhibitory effects on the mycelial growth, mycelial biomass and spore germination of F. graminearum relative to single fungicides. The magnitude of synergy was found to depend on the ratio of GO and fungicide in the composite. In field tests, GO–fungicides could significantly reduce the disease incidence and disease severity, exhibiting a significantly improved control efficacy on F. graminearum. The strong synergistic activity of GO with existing fungicides demonstrates the great application potential of GO in pest management.


1991 ◽  
Vol 46 (11-12) ◽  
pp. 969-981 ◽  
Author(s):  
Wolfgang Knogge

The complex biological phenomenon “resistance” can be reduced to single Mendelian traits acting on both the plant and the pathogen side in a number of pathosystems. According to the “gene-for-gene hypothesis”, the outcome of a plant/pathogen interaction in these cases is incompatibility if a plant carrying a particular resistance gene and a pathogen with the complementary avirulence gene meet. This suggests a causal role of resistance genes in a recognition process initiating active plant defense responses. Fundamentally different strategies are followed to identify these genes molecularly depending on the plant and pathogen species involved. Fungal diseases of crop plants, especially those of cereals, cause dramatic yield losses worldwide. It is assumed that a molecular characterization of plant genes conferring resistance to fungal pathogens will lead to a better understanding of the plant defense system in general permitting the development of new methods of crop plant protection.


Author(s):  
Saira Sehar ◽  
Amiza Amiza ◽  
I. H Khan

Nanotechnology advancement leads to development of antimicrobial agents like ZnO nanoparticles. These nanoparticle have their main applications in food packaging. when these nanoparticles incorporate into the food surface, it will kill all bacterias residing on the surface and food become free of bacteria. In this way, food can be stored for a long time because its shelf life is improved. Antimicrobial activity of ZnO nanoparticles can be improved by increasing surface area, reducing particle size and large concentration of ZnO –NPS. Antimicrobial activity increases by increasing intensity of UV light. As UV light fall on ZnO nanoparticles, it increases ZnO surface area and hence anrtimicrobial activity will be increased. Exact mechanism of Antimicrobial activity is still unknown but some processes have been presented.


1993 ◽  
Vol 14 (5) ◽  
pp. 202-203
Author(s):  
Terry Yamauchi

Introduction The enterococci, normal inhabitants of the human and animal bowel flora, were considered for years to be nonvirulent microorganisms. Over the past decade, however, the role of enterococci in human disease has taken on new importance. Serious diseases, such as bacteremia, which is associated with significant mortality, and endocarditis, are prime examples of human enterococcal infections. More recently, the wide-spread use of antimicrobial agents has led to the emergence of multiresistant microorganisms, previously considered to be nonpathogenic, as significant agents in human diseases. Morphologically, enterococci are gram-positive cocci that grow in chains and resemble streptococci. Previously, enterococci were placed in the Lancefield Group D streptococci genus; currently, they are in a new bacterial genus classification Enterococcus (Table). Clinical Diseases Enterococci may cause serious infections in the hospitalized patient and have been reported as the third leading cause of nosocomial infections in the United States. The recovery of enterococci from the urinary tract, surgical wounds, and the blood documents the importance of these bacteria in hospital-acquired infections. [See table in the PDF file] The urinary tract is the most common site infected by enterococci. Surgical instrumentation, intervention, and catheterization are invasive procedures that place the patient at risk for enterococcal infection.


Author(s):  
Mohd. Shahid ◽  
Hridesh Mishra ◽  
Hemant Kumar Mishra ◽  
Trivendra Tripathi ◽  
Haris M. Khan ◽  
...  

Despite the call of the World Health Organization (WHO) for “Pharmacovigilance,” i.e. the monitoring, detection, assessment, and prevention of any adverse reactions, poor attention has been given to identify the long term and short term Adverse Effects (ADEs) of antimicrobial agents on the environment. It is obvious that most of the health sectors across the globe are occupied by infectious diseases (e.g. tuberculosis, HIV, and hepatitis), and to combat such threats, the pharmaceutical industries are pouring tons of drugs and reagents into a market worth billions of dollars. The discharge of these products into the ecosystem is potentially a threat to the environment and human health. In this chapter, the authors depicted a recently described terminology, “Pharmaco-EcoMicrobiology” (PEcM), that could cover these problems and their possible solutions on medical and environmental aspects. In this regard, the role of pharmacoinformatics could also be crucial, since it can provide swift information for implementation and use of information technologies for the discovery and development of drugs as well as in pharmacy education and also the detection and combat of adverse drug effects.


Sign in / Sign up

Export Citation Format

Share Document