Application of gaseous chlorine dioxide for control of fungal fruit rot disease of harvested ‘Daw’ longan

© 2016 Elsevier B.V. Longan (Dimocarpus longan Lour.) fruit decay caused by microbial infection during storage is the main problem that results in a great loss of its market value. The objective of this study was to investigate the application of gaseous chlorine dioxide (ClO2) to control fruit rot...

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Main Authors: Nitiya Guntiya, Boonsom Bussaban, Bualuang Faiyue, Jamnong Uthaibutra, Kobkiat Saengnil
Format: Journal
Published: 2018
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http://cmuir.cmu.ac.th/jspui/handle/6653943832/54922
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spelling th-cmuir.6653943832-549222018-09-05T02:50:04Z Application of gaseous chlorine dioxide for control of fungal fruit rot disease of harvested ‘Daw’ longan Nitiya Guntiya Boonsom Bussaban Bualuang Faiyue Jamnong Uthaibutra Kobkiat Saengnil Agricultural and Biological Sciences © 2016 Elsevier B.V. Longan (Dimocarpus longan Lour.) fruit decay caused by microbial infection during storage is the main problem that results in a great loss of its market value. The objective of this study was to investigate the application of gaseous chlorine dioxide (ClO2) to control fruit rot disease caused by three fungi: Cladosporium sp., Fusarium sp., and Lasiodiplodia sp. in longan fruit. The effect of ClO2fumigation at 10 mg L-1for 10 min on the onset of disease and the activities of two defense enzymes, chitinase and glucanase, in the harvested longan fruits during storage at 25 ± 3 °C for 7 days were investigated. The inhibition of fungal growth and spore germination, and oxidative damage to fungal membrane by gaseous ClO2were also studied. It was found that ClO2fumigation could significantly reduce disease incidence (by 20–75%) and disease index (by 28–38%) of the inoculated longans and markedly increased chitinase and glucanase activities during 7 days of storage. ClO2stimulated the activity of chitinase and glucanase which were increased by 29.45–58.89% and 68.98–78.12%, respectively higher than those in the inoculated controls. ClO2was more efficient in stimulating the activity of glucanase than that of chitinase. ClO2also increased fungal membrane damage by causing an increase in malondialdehyde and conjugated diene contents, lipoxygenase activity and electrolyte leakage. The increase in the activities of both enzymes in fruits and the increase in fungal membrane damage causes by ClO2, were in accordance with the inhibition of fungal growth and spore germination, leading to the reduction of fruit rot disease suggesting that it is the response mechanism of longan to reduce fungal fruit rot caused by the pathogens. 2018-09-05T02:50:04Z 2018-09-05T02:50:04Z 2016-12-14 Journal 03044238 2-s2.0-84994059804 10.1016/j.scienta.2016.10.019 https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84994059804&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/54922
institution Chiang Mai University
building Chiang Mai University Library
country Thailand
collection CMU Intellectual Repository
topic Agricultural and Biological Sciences
spellingShingle Agricultural and Biological Sciences
Nitiya Guntiya
Boonsom Bussaban
Bualuang Faiyue
Jamnong Uthaibutra
Kobkiat Saengnil
Application of gaseous chlorine dioxide for control of fungal fruit rot disease of harvested ‘Daw’ longan
description © 2016 Elsevier B.V. Longan (Dimocarpus longan Lour.) fruit decay caused by microbial infection during storage is the main problem that results in a great loss of its market value. The objective of this study was to investigate the application of gaseous chlorine dioxide (ClO2) to control fruit rot disease caused by three fungi: Cladosporium sp., Fusarium sp., and Lasiodiplodia sp. in longan fruit. The effect of ClO2fumigation at 10 mg L-1for 10 min on the onset of disease and the activities of two defense enzymes, chitinase and glucanase, in the harvested longan fruits during storage at 25 ± 3 °C for 7 days were investigated. The inhibition of fungal growth and spore germination, and oxidative damage to fungal membrane by gaseous ClO2were also studied. It was found that ClO2fumigation could significantly reduce disease incidence (by 20–75%) and disease index (by 28–38%) of the inoculated longans and markedly increased chitinase and glucanase activities during 7 days of storage. ClO2stimulated the activity of chitinase and glucanase which were increased by 29.45–58.89% and 68.98–78.12%, respectively higher than those in the inoculated controls. ClO2was more efficient in stimulating the activity of glucanase than that of chitinase. ClO2also increased fungal membrane damage by causing an increase in malondialdehyde and conjugated diene contents, lipoxygenase activity and electrolyte leakage. The increase in the activities of both enzymes in fruits and the increase in fungal membrane damage causes by ClO2, were in accordance with the inhibition of fungal growth and spore germination, leading to the reduction of fruit rot disease suggesting that it is the response mechanism of longan to reduce fungal fruit rot caused by the pathogens.
format Journal
author Nitiya Guntiya
Boonsom Bussaban
Bualuang Faiyue
Jamnong Uthaibutra
Kobkiat Saengnil
author_facet Nitiya Guntiya
Boonsom Bussaban
Bualuang Faiyue
Jamnong Uthaibutra
Kobkiat Saengnil
author_sort Nitiya Guntiya
title Application of gaseous chlorine dioxide for control of fungal fruit rot disease of harvested ‘Daw’ longan
title_short Application of gaseous chlorine dioxide for control of fungal fruit rot disease of harvested ‘Daw’ longan
title_full Application of gaseous chlorine dioxide for control of fungal fruit rot disease of harvested ‘Daw’ longan
title_fullStr Application of gaseous chlorine dioxide for control of fungal fruit rot disease of harvested ‘Daw’ longan
title_full_unstemmed Application of gaseous chlorine dioxide for control of fungal fruit rot disease of harvested ‘Daw’ longan
title_sort application of gaseous chlorine dioxide for control of fungal fruit rot disease of harvested ‘daw’ longan
publishDate 2018
url https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84994059804&origin=inward
http://cmuir.cmu.ac.th/jspui/handle/6653943832/54922
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