| Authors | Mohmmad Hossein Aminifard |
| Journal | JOURNAL OF HORTICULTURE AND POSTHARVEST RESEARCH |
| Page number | 161-172 |
| Serial number | 3 |
| Volume number | 2 |
| Paper Type | Full Paper |
| Published At | 2020 |
| Journal Type | Electronic |
| Journal Country | Iran, Islamic Republic Of |
| Journal Index | isc،Scopus |
| Keywords | Antifungal Essential oils Gray mold Vitis vinifera |
|---|
Abstract
Purpose: The effect of abusing chemical biocides in controlling pests
and diseases has drawn the attention of policymakers to the
development of methods potentially available in nature for this
purpose. Research method: In the present study, the inhibitory
effects of four different essential oils against Botrytis cinerea were
tested at various concentrations (0, 200, 400, 600, and 800 μL L-1) in
in vitro and in vivo. Main findings: The in vitro results showed that
the growth of B. cinerea was completely inhibited by the application
of anise oil at concentrations of 800 μL L-1. The in vivo results
indicated that treated fruits with marjoram oil had more total
soluble solids, and anthocyanin content in comparison to anise,
chamomile, and black caraway oil. Furthermore, among essential
oils, treated fruits with black caraway essential oils had the lowest
pH, while anise, chamomile, and marjoram oil had the highest pH.
The highest anthocyanin content and pH were obtained at 200 and
400 μL L-1 concentration and lowest values were found at a control
treatment (respectively). The most total soluble solids were
observed at control treatment and the lowest values were recorded
at 600 μL L-1. The application of each essential oil decreased the
percentage loss in fresh weight significantly and increased the
storage-life of the fruit. Limitations: Higher cost of application was a
limitation. Originality/Value: This research confirms the antifungal
effects of anise, fennel, chamomile, and marjoram essential oils both
in vitro and in vivo on grape fruits postharvest. Therefore, these
essential oils could be an alternative to chemicals to control
postharvest phytopathogenic fungi on grape fruits.