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Overexpression of a peroxiredoxin Q gene, SsPrxQ, in Eustoma grandiflorum Shinn enhances its tolerance to salt and high light intensity
by
Liu, Xingwang
, Wang, Gang
, Ji, Jing
, Song, Xinyu
, Guan, Chunfeng
, Jin, Chao
in
Abiotic stress
/ antioxidant activity
/ Antioxidants
/ Biomedical and Life Sciences
/ Biosynthesis
/ Biotechnology
/ engineering
/ Eustoma exaltatum subsp. russellianum
/ Eustoma grandiflorum
/ Eustoma russellianum
/ gene overexpression
/ genes
/ Life Sciences
/ Light intensity
/ Luminous intensity
/ Molecular biology
/ Oxidative stress
/ Peroxidase
/ Peroxiredoxin
/ Plant biology
/ Plant Genetics and Genomics
/ Plant Pathology
/ Plant Physiology
/ Plant protection
/ Plant Sciences
/ Reactive oxygen species
/ salt tolerance
/ Salts
/ Scavenging
/ Suaeda
/ Suaeda salsa
/ temperature
/ Thioredoxin
2014
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Overexpression of a peroxiredoxin Q gene, SsPrxQ, in Eustoma grandiflorum Shinn enhances its tolerance to salt and high light intensity
by
Liu, Xingwang
, Wang, Gang
, Ji, Jing
, Song, Xinyu
, Guan, Chunfeng
, Jin, Chao
in
Abiotic stress
/ antioxidant activity
/ Antioxidants
/ Biomedical and Life Sciences
/ Biosynthesis
/ Biotechnology
/ engineering
/ Eustoma exaltatum subsp. russellianum
/ Eustoma grandiflorum
/ Eustoma russellianum
/ gene overexpression
/ genes
/ Life Sciences
/ Light intensity
/ Luminous intensity
/ Molecular biology
/ Oxidative stress
/ Peroxidase
/ Peroxiredoxin
/ Plant biology
/ Plant Genetics and Genomics
/ Plant Pathology
/ Plant Physiology
/ Plant protection
/ Plant Sciences
/ Reactive oxygen species
/ salt tolerance
/ Salts
/ Scavenging
/ Suaeda
/ Suaeda salsa
/ temperature
/ Thioredoxin
2014
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Overexpression of a peroxiredoxin Q gene, SsPrxQ, in Eustoma grandiflorum Shinn enhances its tolerance to salt and high light intensity
by
Liu, Xingwang
, Wang, Gang
, Ji, Jing
, Song, Xinyu
, Guan, Chunfeng
, Jin, Chao
in
Abiotic stress
/ antioxidant activity
/ Antioxidants
/ Biomedical and Life Sciences
/ Biosynthesis
/ Biotechnology
/ engineering
/ Eustoma exaltatum subsp. russellianum
/ Eustoma grandiflorum
/ Eustoma russellianum
/ gene overexpression
/ genes
/ Life Sciences
/ Light intensity
/ Luminous intensity
/ Molecular biology
/ Oxidative stress
/ Peroxidase
/ Peroxiredoxin
/ Plant biology
/ Plant Genetics and Genomics
/ Plant Pathology
/ Plant Physiology
/ Plant protection
/ Plant Sciences
/ Reactive oxygen species
/ salt tolerance
/ Salts
/ Scavenging
/ Suaeda
/ Suaeda salsa
/ temperature
/ Thioredoxin
2014
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Overexpression of a peroxiredoxin Q gene, SsPrxQ, in Eustoma grandiflorum Shinn enhances its tolerance to salt and high light intensity
Journal Article
Overexpression of a peroxiredoxin Q gene, SsPrxQ, in Eustoma grandiflorum Shinn enhances its tolerance to salt and high light intensity
2014
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Overview
Abiotic stress, such as salt, high light intensity and extreme temperature, can result in enhanced production of reactive oxygen species (ROS). One of the major ROS-scavenging enzymes of plants is peroxiredoxin (Prx). Peroxiredoxin Q (PrxQ), a member of the Prx gene family, was recently cloned from plants. To investigate the protective role of PrxQ during abiotic stress, we increased the capacity for its biosynthesis in Eustoma grandiflorum Shinn by overexpression of the PrxQ gene (SsPrxQ) from Suaeda salsa. The SsPrxQ gene driven by CaMV 35S promoter was expressed via E. grandiflorum. The rPrxQ protein shows antioxidant activity and thioredoxin-dependent peroxidase activity in vitro. Additionally, overexpression of SsPrxQ in E. grandiflorum leads to an increase in salt and high light intensity tolerance. These results indicate that SsPrxQ might act as an oxidative stress defensive gene in plants and could be useful for engineering stress-resistant plants.
Publisher
Springer-Verlag,Springer Netherlands,Springer Nature B.V
Subject
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