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Identification and biochemical characterization of the glutathione reductase family from Populus trichocarpa.

Identifieur interne : 000340 ( Main/Exploration ); précédent : 000339; suivant : 000341

Identification and biochemical characterization of the glutathione reductase family from Populus trichocarpa.

Auteurs : Hai-Jing Liu [République populaire de Chine] ; Xin Wang [République populaire de Chine] ; Zhi-Ling Yang [République populaire de Chine] ; Lin-Ling Ren [République populaire de Chine] ; Ting-Ting Qian [République populaire de Chine]

Source :

RBID : pubmed:32234218

Abstract

Glutathione reductase (GR; EC 1.6.4.2) is a key NADPH-dependent flavo-protein oxidoreductase which can catalyze the oxidized glutathione (GSSG) to reduced glutathione (GSH) to protect plant cells from oxidative damage induced by Reactive oxygen species (ROS) burst. To investigate the biochemical characteristics and functional divergence of Populus GR family, three GR genes (PtGR1.1/1.2/2) were cloned from Populus trichocarpa and their biochemical characteristics were analyzed in this study. All the three genes were expressed in root, stem, leaf and bud, and the expression of PtGR genes were general upregulated under salicylic acid and alamethicin treatment. PtGR1.1 and PtGR1.2 were localized in cytoplasm, while PtGR2 was in chloroplast. The three PtGR proteins showed different enzymatic activities, apparent kinetic characteristic and thermal stability profiles. However, they have similar bivalent metal ions (Cu2+, Cd2+, Zn2+ and Pb2+) sensitivity and optimum pH profiles. Our study sheds light on a comprehensive information of glutathione reductase family in P. trichocarpa, and proved PtGR genes play critical roles when suffering different stresses.

DOI: 10.1016/j.plantsci.2020.110459
PubMed: 32234218


Affiliations:


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<sup>2+</sup>
, Cd
<sup>2+</sup>
, Zn
<sup>2+</sup>
and Pb
<sup>2+</sup>
) sensitivity and optimum pH profiles. Our study sheds light on a comprehensive information of glutathione reductase family in P. trichocarpa, and proved PtGR genes play critical roles when suffering different stresses.</div>
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<sup>2+</sup>
, Cd
<sup>2+</sup>
, Zn
<sup>2+</sup>
and Pb
<sup>2+</sup>
) sensitivity and optimum pH profiles. Our study sheds light on a comprehensive information of glutathione reductase family in P. trichocarpa, and proved PtGR genes play critical roles when suffering different stresses.</AbstractText>
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