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Analysis of Terpene Synthase Family Genes in Camellia sinensis with an Emphasis on Abiotic Stress Conditions
by
Zhou, Han-Chen
, Shamala, Lubobi Ferdinand
, Yi, Xing-Kai
, Wei, Shu
, Yan, Zhen
in
38/43
/ 38/77
/ 631/449/2661
/ 631/449/2667
/ Abiotic stress
/ Acclimation
/ Acclimatization
/ Acclimatization - genetics
/ Acetates
/ Alkyl and Aryl Transferases - genetics
/ Biosynthesis
/ Camellia sinensis
/ Camellia sinensis - enzymology
/ Camellia sinensis - genetics
/ Camellia sinensis - metabolism
/ Cold acclimation
/ Cold Temperature
/ Cyclopentanes
/ Flowers & plants
/ Flowers - enzymology
/ Flowers - genetics
/ Flowers - metabolism
/ Gene Expression Regulation, Plant
/ Genes
/ Humanities and Social Sciences
/ Leaves
/ Methyl jasmonate
/ multidisciplinary
/ Multigene Family - genetics
/ Oxylipins
/ Plant Leaves - enzymology
/ Plant Leaves - genetics
/ Plant Leaves - metabolism
/ Polyethylene glycol
/ Science
/ Science (multidisciplinary)
/ Stress, Physiological - genetics
/ Tea
/ Terpene synthase
/ Terpenes - metabolism
/ Transcription
/ Transcription, Genetic - genetics
/ Transcriptome - genetics
2020
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Analysis of Terpene Synthase Family Genes in Camellia sinensis with an Emphasis on Abiotic Stress Conditions
by
Zhou, Han-Chen
, Shamala, Lubobi Ferdinand
, Yi, Xing-Kai
, Wei, Shu
, Yan, Zhen
in
38/43
/ 38/77
/ 631/449/2661
/ 631/449/2667
/ Abiotic stress
/ Acclimation
/ Acclimatization
/ Acclimatization - genetics
/ Acetates
/ Alkyl and Aryl Transferases - genetics
/ Biosynthesis
/ Camellia sinensis
/ Camellia sinensis - enzymology
/ Camellia sinensis - genetics
/ Camellia sinensis - metabolism
/ Cold acclimation
/ Cold Temperature
/ Cyclopentanes
/ Flowers & plants
/ Flowers - enzymology
/ Flowers - genetics
/ Flowers - metabolism
/ Gene Expression Regulation, Plant
/ Genes
/ Humanities and Social Sciences
/ Leaves
/ Methyl jasmonate
/ multidisciplinary
/ Multigene Family - genetics
/ Oxylipins
/ Plant Leaves - enzymology
/ Plant Leaves - genetics
/ Plant Leaves - metabolism
/ Polyethylene glycol
/ Science
/ Science (multidisciplinary)
/ Stress, Physiological - genetics
/ Tea
/ Terpene synthase
/ Terpenes - metabolism
/ Transcription
/ Transcription, Genetic - genetics
/ Transcriptome - genetics
2020
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Analysis of Terpene Synthase Family Genes in Camellia sinensis with an Emphasis on Abiotic Stress Conditions
by
Zhou, Han-Chen
, Shamala, Lubobi Ferdinand
, Yi, Xing-Kai
, Wei, Shu
, Yan, Zhen
in
38/43
/ 38/77
/ 631/449/2661
/ 631/449/2667
/ Abiotic stress
/ Acclimation
/ Acclimatization
/ Acclimatization - genetics
/ Acetates
/ Alkyl and Aryl Transferases - genetics
/ Biosynthesis
/ Camellia sinensis
/ Camellia sinensis - enzymology
/ Camellia sinensis - genetics
/ Camellia sinensis - metabolism
/ Cold acclimation
/ Cold Temperature
/ Cyclopentanes
/ Flowers & plants
/ Flowers - enzymology
/ Flowers - genetics
/ Flowers - metabolism
/ Gene Expression Regulation, Plant
/ Genes
/ Humanities and Social Sciences
/ Leaves
/ Methyl jasmonate
/ multidisciplinary
/ Multigene Family - genetics
/ Oxylipins
/ Plant Leaves - enzymology
/ Plant Leaves - genetics
/ Plant Leaves - metabolism
/ Polyethylene glycol
/ Science
/ Science (multidisciplinary)
/ Stress, Physiological - genetics
/ Tea
/ Terpene synthase
/ Terpenes - metabolism
/ Transcription
/ Transcription, Genetic - genetics
/ Transcriptome - genetics
2020
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Analysis of Terpene Synthase Family Genes in Camellia sinensis with an Emphasis on Abiotic Stress Conditions
Journal Article
Analysis of Terpene Synthase Family Genes in Camellia sinensis with an Emphasis on Abiotic Stress Conditions
2020
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Overview
For a better understanding terpenoid volatile production in
Camellia sinensis
, global terpenoid synthase gene (
TPS
) transcription analysis was conducted based on transcriptomic data combined with terpenoid metabolic profiling under different abiotic stress conditions. Totally 80
TPS
-like genes were identified. Twenty-three
CsTPS
genes possessed a complete coding sequence and most likely were functional. The remaining 57 in the currently available database lack essential gene structure or full-length transcripts. Distinct tempo-spatial expression patterns of
CsTPS
genes were found in tea plants. 17 genes were substantially expressed in all the tested organs with a few exceptions. The other 17 were predominantly expressed in leaves whereas additional eight were primarily expressed in flowers. Under the treatments of cold acclimation, salt and polyethylene glycol,
CsTPS67
,
-69
and -
71
were all suppressed and the inhibited expression of many others were found in multiple stress treatments. However, methyl jasmonate resulted in the enhanced expression of the majority of
CsTPS
genes. These transcription data were largely validated using qPCR. Moreover, volatile terpenoid profiling with leaves, flowers and stress-treated plants revealed a general association between the abundances of mono- and sesqui-terpenoids and some
CsTPS
genes. These results provide vital information for future studies on
CsTPS
regulation of terpenoid biosynthesis.
Publisher
Nature Publishing Group UK,Nature Publishing Group
Subject
/ 38/77
/ Acetates
/ Alkyl and Aryl Transferases - genetics
/ Camellia sinensis - enzymology
/ Camellia sinensis - genetics
/ Camellia sinensis - metabolism
/ Gene Expression Regulation, Plant
/ Genes
/ Humanities and Social Sciences
/ Leaves
/ Science
/ Stress, Physiological - genetics
/ Tea
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