Identification and expression patterns of alcohol dehydrogenase genes involving in ester volatile biosynthesis in pear fruit

Abstract: Alcohol dehydrogenase (ADH) catalyzes the interconversion of aldehydes and their corresponding alcohols, and is a key enzyme in volatile ester biosynthesis. However, little is known regarding ADH and ADH encoding genes (ADHs) in pear. We identified 8 ADHs in the pear's genome (PbrADHs...

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Main Authors: Gai-hua QIN, Xiao-xiao QI, Yong-jie QI, Zheng-hui GAO, Xing-kai YI, Hai-fa PAN, Yi-liu XU
Format: Article
Language:English
Published: Elsevier 2017-08-01
Series:Journal of Integrative Agriculture
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2095311917616861
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spelling doaj-5f4b8ef9e7f14d9dab794f30c0c7271f2021-06-08T04:38:52ZengElsevierJournal of Integrative Agriculture2095-31192017-08-0116817421750Identification and expression patterns of alcohol dehydrogenase genes involving in ester volatile biosynthesis in pear fruitGai-hua QIN0Xiao-xiao QI1Yong-jie QI2Zheng-hui GAO3Xing-kai YI4Hai-fa PAN5Yi-liu XU6Horticultural Research Institute, Anhui Academy of Agricultural Sciences, Hefei 230031, P.R.China; Anhui Key Laboratory of Genetic Improvement and Ecophysiology of Horticultural Crop, Hefei 230031, P.R.ChinaAnhui Key Laboratory of Genetic Improvement and Ecophysiology of Horticultural Crop, Hefei 230031, P.R.China; College of Agriculture, Medicine and Health, Anhui Radio and Television University, Hefei 230022, P.R.ChinaHorticultural Research Institute, Anhui Academy of Agricultural Sciences, Hefei 230031, P.R.China; Anhui Key Laboratory of Genetic Improvement and Ecophysiology of Horticultural Crop, Hefei 230031, P.R.ChinaHorticultural Research Institute, Anhui Academy of Agricultural Sciences, Hefei 230031, P.R.China; Anhui Key Laboratory of Genetic Improvement and Ecophysiology of Horticultural Crop, Hefei 230031, P.R.ChinaHorticultural Research Institute, Anhui Academy of Agricultural Sciences, Hefei 230031, P.R.China; Anhui Key Laboratory of Genetic Improvement and Ecophysiology of Horticultural Crop, Hefei 230031, P.R.ChinaHorticultural Research Institute, Anhui Academy of Agricultural Sciences, Hefei 230031, P.R.China; Anhui Key Laboratory of Genetic Improvement and Ecophysiology of Horticultural Crop, Hefei 230031, P.R.ChinaHorticultural Research Institute, Anhui Academy of Agricultural Sciences, Hefei 230031, P.R.China; Anhui Key Laboratory of Genetic Improvement and Ecophysiology of Horticultural Crop, Hefei 230031, P.R.China; Correspondence XU Yi-liu, Tel: +86-551-62160121, Fax: +86-551-65160937Abstract: Alcohol dehydrogenase (ADH) catalyzes the interconversion of aldehydes and their corresponding alcohols, and is a key enzyme in volatile ester biosynthesis. However, little is known regarding ADH and ADH encoding genes (ADHs) in pear. We identified 8 ADHs in the pear's genome (PbrADHs) by multiple sequences alignment. The PbrADHs were highly homologous in their coding regions, while were diversiform in structure. 9 introns were predicted in PbrADH3–PbrADH8, while 8 introns, generated through exon fusion and intron loss, were predicted in PbrADH1 and PbrADH2. To study the genetic regulation underlying aroma biogenesis in pear fruit, we determined the PbrADH transcripts, ADH activities and volatile contents of fruits during ripening stage for Nanguoli and Dangshansuli, two cultivars having different aroma characteristics. ADH activity was strongly associated with the transcription of ADH6 in the two cultivars during fruit ripening stage. The higher ester content paralleling to a higher ADH activity was detected in Nanguoli than in Dangshansuli, so it is induced that the lower ester content in Dangshansuli fruit may be the result of weak ADH activity. The present study revealed that total ADH activity and volatile ester production correlated with increased PbrADH6 transcript levels. PbrADH6 may contribute to ADH activity catalyzing aldehyde reduction and ester formation in pear fruit.http://www.sciencedirect.com/science/article/pii/S2095311917616861alcohol dehydrogenaseester volatilegene expressionpear
collection DOAJ
language English
format Article
sources DOAJ
author Gai-hua QIN
Xiao-xiao QI
Yong-jie QI
Zheng-hui GAO
Xing-kai YI
Hai-fa PAN
Yi-liu XU
spellingShingle Gai-hua QIN
Xiao-xiao QI
Yong-jie QI
Zheng-hui GAO
Xing-kai YI
Hai-fa PAN
Yi-liu XU
Identification and expression patterns of alcohol dehydrogenase genes involving in ester volatile biosynthesis in pear fruit
Journal of Integrative Agriculture
alcohol dehydrogenase
ester volatile
gene expression
pear
author_facet Gai-hua QIN
Xiao-xiao QI
Yong-jie QI
Zheng-hui GAO
Xing-kai YI
Hai-fa PAN
Yi-liu XU
author_sort Gai-hua QIN
title Identification and expression patterns of alcohol dehydrogenase genes involving in ester volatile biosynthesis in pear fruit
title_short Identification and expression patterns of alcohol dehydrogenase genes involving in ester volatile biosynthesis in pear fruit
title_full Identification and expression patterns of alcohol dehydrogenase genes involving in ester volatile biosynthesis in pear fruit
title_fullStr Identification and expression patterns of alcohol dehydrogenase genes involving in ester volatile biosynthesis in pear fruit
title_full_unstemmed Identification and expression patterns of alcohol dehydrogenase genes involving in ester volatile biosynthesis in pear fruit
title_sort identification and expression patterns of alcohol dehydrogenase genes involving in ester volatile biosynthesis in pear fruit
publisher Elsevier
series Journal of Integrative Agriculture
issn 2095-3119
publishDate 2017-08-01
description Abstract: Alcohol dehydrogenase (ADH) catalyzes the interconversion of aldehydes and their corresponding alcohols, and is a key enzyme in volatile ester biosynthesis. However, little is known regarding ADH and ADH encoding genes (ADHs) in pear. We identified 8 ADHs in the pear's genome (PbrADHs) by multiple sequences alignment. The PbrADHs were highly homologous in their coding regions, while were diversiform in structure. 9 introns were predicted in PbrADH3–PbrADH8, while 8 introns, generated through exon fusion and intron loss, were predicted in PbrADH1 and PbrADH2. To study the genetic regulation underlying aroma biogenesis in pear fruit, we determined the PbrADH transcripts, ADH activities and volatile contents of fruits during ripening stage for Nanguoli and Dangshansuli, two cultivars having different aroma characteristics. ADH activity was strongly associated with the transcription of ADH6 in the two cultivars during fruit ripening stage. The higher ester content paralleling to a higher ADH activity was detected in Nanguoli than in Dangshansuli, so it is induced that the lower ester content in Dangshansuli fruit may be the result of weak ADH activity. The present study revealed that total ADH activity and volatile ester production correlated with increased PbrADH6 transcript levels. PbrADH6 may contribute to ADH activity catalyzing aldehyde reduction and ester formation in pear fruit.
topic alcohol dehydrogenase
ester volatile
gene expression
pear
url http://www.sciencedirect.com/science/article/pii/S2095311917616861
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