REGULATION OF CHLOROPHY LL DEGRADATION IN PLANT TISSUES
The purpose of the review was to analyze the basic biochemical processes leading to the chlorophyll degradation and ways to control this process in plant product storage. First of all, this is a complex of enzymatic reactions starting with the hydrolysis of chlorophyll with the formation of acyclic...
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National Academy of Sciences of Ukraine and Palladin Institute of Biochemistry of the National Academy of Sciences of Ukraine.
2017-06-01
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Online Access: | http://biotechnology.kiev.ua/images/storage/3_2017/syvash_3_2017.pdf |
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doaj-5ef1e678298840b487d326661c4f5a6d2020-11-24T20:57:07ZengNational Academy of Sciences of Ukraine and Palladin Institute of Biochemistry of the National Academy of Sciences of Ukraine.Biotechnologia Acta2410-77512410-776X2017-06-01103203010.15407/biotech10.03.020REGULATION OF CHLOROPHY LL DEGRADATION IN PLANT TISSUESSyvash O. O.0Zolotareva O. K. 1Kholodny Institute of Botany of the National Academy of Sciences of Ukraine, KyivKholodny Institute of Botany of the National Academy of Sciences of Ukraine, KyivThe purpose of the review was to analyze the basic biochemical processes leading to the chlorophyll degradation and ways to control this process in plant product storage. First of all, this is a complex of enzymatic reactions starting with the hydrolysis of chlorophyll with the formation of acyclic diterpene phytol and water-soluble chlorophyllide. An alternative primary reaction is the removal of magnesium from the chlorophyll tetrapyrrole ring to form pheophytin with the participation of Mg2+-dechelatase and/or low-molecular Mg2+-dechelating substances. The chlorophyll breakdown can also be caused by free radicals formed in the peroxidase-catalyzed reaction of Н2О2 with phenolic compounds or fatty acids. The unstable product of chlorophyll peroxidation, C132 –hydroxychlorophyll a decomposes to colorless low-molecular compounds. Expression of the genes of chlorophyll catabolism enzymes is controlled by phytohormones. Methods for controlling the pigment decomposition during storage of plant products are associated with the use of activators and inhibitors of chlorophyll decomposition. The best known inductor of the synthesis of catabolic enzymes is ethylene, widely used to accelerate fruit ripening. Gibberellins, cytokinins and nitric oxide, on the contrary, slow down the loss of chlorophyll.http://biotechnology.kiev.ua/images/storage/3_2017/syvash_3_2017.pdfchlorophyllchlorophyllasepheophytinperoxidasephytohormonesethylene |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Syvash O. O. Zolotareva O. K. |
spellingShingle |
Syvash O. O. Zolotareva O. K. REGULATION OF CHLOROPHY LL DEGRADATION IN PLANT TISSUES Biotechnologia Acta chlorophyll chlorophyllase pheophytin peroxidase phytohormones ethylene |
author_facet |
Syvash O. O. Zolotareva O. K. |
author_sort |
Syvash O. O. |
title |
REGULATION OF CHLOROPHY LL DEGRADATION IN PLANT TISSUES |
title_short |
REGULATION OF CHLOROPHY LL DEGRADATION IN PLANT TISSUES |
title_full |
REGULATION OF CHLOROPHY LL DEGRADATION IN PLANT TISSUES |
title_fullStr |
REGULATION OF CHLOROPHY LL DEGRADATION IN PLANT TISSUES |
title_full_unstemmed |
REGULATION OF CHLOROPHY LL DEGRADATION IN PLANT TISSUES |
title_sort |
regulation of chlorophy ll degradation in plant tissues |
publisher |
National Academy of Sciences of Ukraine and Palladin Institute of Biochemistry of the National Academy of Sciences of Ukraine. |
series |
Biotechnologia Acta |
issn |
2410-7751 2410-776X |
publishDate |
2017-06-01 |
description |
The purpose of the review was to analyze the basic biochemical processes leading to the chlorophyll degradation and ways to control this process in plant product storage. First of all, this is a complex of enzymatic reactions starting with the hydrolysis of chlorophyll with the formation of acyclic diterpene phytol and water-soluble chlorophyllide. An alternative primary reaction is the removal of magnesium from the chlorophyll tetrapyrrole ring to form pheophytin with the participation of Mg2+-dechelatase and/or low-molecular Mg2+-dechelating substances. The chlorophyll breakdown can also be caused by free radicals formed in the peroxidase-catalyzed reaction of Н2О2 with phenolic compounds or fatty acids. The unstable product of chlorophyll peroxidation, C132 –hydroxychlorophyll a decomposes to colorless low-molecular compounds. Expression of the genes of chlorophyll catabolism enzymes is controlled by phytohormones. Methods for controlling the pigment decomposition during storage of plant products are associated with the use of activators and inhibitors of chlorophyll decomposition. The best known inductor of the synthesis of catabolic enzymes is ethylene, widely used to accelerate fruit ripening. Gibberellins, cytokinins and nitric oxide, on the contrary, slow down the loss of chlorophyll. |
topic |
chlorophyll chlorophyllase pheophytin peroxidase phytohormones ethylene |
url |
http://biotechnology.kiev.ua/images/storage/3_2017/syvash_3_2017.pdf |
work_keys_str_mv |
AT syvashoo regulationofchlorophylldegradationinplanttissues AT zolotarevaok regulationofchlorophylldegradationinplanttissues |
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1716788782832812032 |