Events1st International Online Conference on Agriculture - Advances in Agricultural Science and Technology
Published
This submission belongs to the session 14. Poster Session of the event 1st International Online Conference on Agriculture - Advances in Agricultural Science and Technology
Published date
10 Feb, 2022
Academic Editor
author-avatarBin Gao
Citation
Azam Ranjbar, Asghar Ramezanian, Effects of thymol on the morphology of the main fungi causing pomegranate fruit rot, in Proceedings of 1st International Online Conference on Agriculture - Advances in Agricultural Science and Technology, 10 February–25 February 2022, MDPI: Basel, Switzerland, doi: 10.3390/IOCAG2022-12195
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Effects of thymol on the morphology of the main fungi causing pomegranate fruit rot

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1. PhD candidate , Department of Horticultural Science, School of Agriculture, Shiraz University, Shiraz, Iran, China
2. Professor,Department of Horticultural Science, School of Agriculture, Shiraz University, Shiraz, Iran
Abstract

Pomegranate fruit rot leads to lose of significant quantity of fruit worldwide. In present study, the antifungal effects of thymol on the morphology of Aspergillus niger and Penicillium commune as the main fungi causing pomegranate fruit rot investigated in in vitro conditions. Examination of cell morphology using scanning electron microscope (SEM) in Aspergillus niger colony showed that cell deformation was observed due to destruction of the cell membrane and loss of cell wall strength at concentration of 250 µg mL-1 (FC50) after 168 h. Produced hyphae had irregular branching and no spore production was observed. Evaluation of Penicillium commune colony cell morphology using SEM showed that thymol at concentration of 250 µg mL-1 (FC50) caused superficial wrinkles, bifurcation of hyphal apex and no spore production was observed.

Keywords
Antifungal effects
Aspergillus niger
Penicillium commune
Scanning electron microscopy
Oral Presentation
Antifungal activity of thymol against the main fungi causing fruit rot in in vitro conditions
Patent landscape analysis of seaweed-based biofertilizers