Harsh Mistry

Harsh Mistry
Genexplore Diagnostics and Research Centre Pvt. Ltd. · Research

Doctor of Philosophy

About

13
Publications
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Publications

Publications (13)
Article
Two marine-derived bacteria, Bacillus paralicheniformis (HR-1) and Bacillus haynesii (HR-5), were isolated from sediments and identified using 16S ribosomal RNA gene amplification and sequencing as well as biochemical analysis. The development of a bacterial consortium (HR-1 & HR-5) from these two bacteria was used to increase the production of the...
Article
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Marine microorganisms are renowned for being a rich source of new secondary metabolites that are significant to humans. The fungi strain KHW-7 was isolated from the seawater collected from the Gulf of Khambhat, India, and identified as Curvularia verruculosa KHW-7. On a next-generation sequencing platform, C. verruculosa KHW-7’s whole-genome sequen...
Article
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Thymoquinone is a valuable metabolite derived from the Nigella sativa L. seeds and has a variety of therapeutic properties. Thymoquinone was estimated using n-hexane:ethyl acetate (8:2, v/v) green solvent system and computed at a wavelength of 254 nm using the high-performance thin-layer chromatography densitometry method in distinct varieties and...
Article
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Fungi produce phytohormones like indole-3-acetic acid (IAA), which stimulates the growth of plants. In the present study, Aspergillus niger (AN) and Aspergillus caespitosus (DS-3) were identified in screens for highly efficient IAA-producing fungi. Initially, IAA production was assessed through UV–Visible spectroscopic analysis using Salkowski’s re...
Article
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Objective To assess the anticancer potential of biosynthesized silver nanoparticles using marine derived fungi Hamigera pallida with their antibacterial and antioxidant activities. Results The biosynthesis of silver nanoparticles (AgNPs) was assessed by the change in color from bright yellow to dark brown. UV–Visible spectroscopy revealed its stab...
Article
Full-text available
Aim: To biosynthesize silver nanoparticles (AgNPs) using fungal isolates [DS-2 (Penicillium oxalicum) and DW-8 (Fusarium hainanense)] as well as their mixed cell free filtrate (CFF) acting as a consortium (DSW-28) and their bio-potentials. Methods and results: The fungi (DS-2 and DW-8) were harvested and CFF was prepared. CFF of each fungus and...
Preprint
Full-text available
Objectives To assess the anticancer potential of biosynthesized silver nanoparticles using marine derived fungi Hamigera pallida with their antibacterial and antioxidant activities. Results The biosynthesis of silver nanoparticles (AgNPs) was assessed by the change in color from bright yellow to dark brown. UV-Visible spectroscopy revealed its sta...
Chapter
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Desulfovibrio species known for its sulfur-reducing characteristics plays very specific and significant role in biological fixation of nitrogen. They also help in plant growth promotion. In this chapter, easy and detailed steps have been described for the isolation and identification of Desulfovibrio spp. from rice soil sample. Specific biochemical...
Preprint
Full-text available
The silver nanoparticles were biosynthesized using fungal isolates as well as their mixed cell free filtrate acting as a consortium namely, DS-2 ( Penicillium oxalicum ), DW-8 ( Fusarium hainanense ) and DSW-28, respectively. The UV-Visible spectra determined the surface plasmon resonance at 438, 441 and 437 nm for the silver nanoparticles synthesi...
Chapter
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Trichoderma can be isolated from soil, water, plant root, and decaying plant. Trichoderma plays key role in biocontrol of plant pathogens, plant growth promotion, and acts as a biofertilizer. In this chapter, easy and detailed steps have been described for the isolation and identification of Trichoderma spp. from different sources. Trichoderma can...
Chapter
Full-text available
Nitrogen is the most important element for all the organisms. It is beneficial for the growth and development of plants. Biological nitrogen fixation is found to be an efficient approach for the availability of nitrogen to the plants using diazotrophic bacteria such as Azoarcus species. The present chapter focuses on the methods for the isolation o...
Article
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A novel approach had been carried out to develop fungal consortium, namely, RH-2, containing two marine procured fungal isolates in order to evaluate biodegradation of recalcitrant diazo dye Congo red. The fungi were isolated from the seacoast of Diu, India. According to the ITS sequencing, the strains were identified as Penicillium oxalicum (DS-2)...
Article
Full-text available
Objectives: To assess the extracellular synthesis of silver nanoparticles using marine derived fungi Aspergillus brunneoviolaceus with their antibacterial and antioxidant activities. Results: The biosynthesis of silver nanoparticles was estimated by the change in color from light yellow to dark brown within 36 h as the reaction progressed. UV-Vi...

Questions

Questions (3)
Question
Hello all.
I Dr. Harsh Mistry, working at Genexplore Diagnostics and Research Centre Pvt. Ltd. as an Academic Head.
At Genexplore we provide hiring services at best academic prices. Kindly contact me for hiring services (e.g., 16S rRNA & ITS sequencing, Metagenomics, Whole Genome Sequencing and Cytotoxicity by MTT assay.
Contact No.: +91-8200336646
Company website: www.genexplore.co.in
Address: 1201-1210, 12th Floor, Iconic Shyamal, Shyamal Cross Road, Satellite, Ahmedabad-380015, Gujarat, India.
Question
if yes then please help me. I want to search some patents. Thank you in advance.
Question
Dear researchers
I hope you are doing well. We got an invitation from Elsevier for the contribution in their upcoming book entitled "Natural Remedies and Drug Discovery: Nanotechnology and In Silico Tools". if you wish to join us we would like to include you as an author. I also like to inform you that there are not any publication charges. If you are ready to join us as an author then please let us know as soon as possible.
Thank you.
"Title of the chapter: Biogenically efficient production and characterization of silver nanoparticles using the marine fungus Hamigera terricola along with their antimicrobial and antioxidative efficacy"

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