Abscisic Acid Regulates Carbohydrate Metabolism, Redox Homeostasis and Hormonal Regulation to Enhance Cold Tolerance in Spring Barley

被引:2
|
作者
Guo, Junhong [1 ,2 ]
Beemster, Gerrit T. S. [3 ]
Liu, Fulai [4 ]
Wang, Zongming [1 ]
Li, Xiangnan [1 ,2 ]
机构
[1] Chinese Acad Sci, Northeast Inst Geog & Agroecol, Key Lab Black Soil Conservat & Utilizat, Changchun 130102, Peoples R China
[2] Univ Chinese Acad Sci, Coll Adv Agr Sci, Beijing 100049, Peoples R China
[3] Univ Antwerp, Dept Biol, Lab Integrated Mol Plant Physiol Res IMPRES, Groenenborgerlaan 171, B-2020 Antwerp, Belgium
[4] Univ Copenhagen, Fac Sci, Dept Plant & Environm Sci, Hojbakkegard Alle 13, DK-2630 Tastrup, Denmark
关键词
low temperature; abscisic acid; carbohydrate metabolism; 4D-proteomics; reactive oxygen species metabolism; Hordeum vulgare; LOW-TEMPERATURE; PHOTOSYNTHETIC RESPONSES; CHLOROPHYLL FLUORESCENCE; FREEZING TOLERANCE; PHOTOSYSTEM-I; STRESS; WINTER; ACCLIMATION; CHLOROPLAST; EXPRESSION;
D O I
10.3390/ijms241411348
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Abscisic acid (ABA) plays a vital role in the induction of low temperature tolerance in plants. To understand the molecular basis of this phenomenon, we performed a proteomic analysis on an ABA-deficit mutant barley (Az34) and its wild type (cv Steptoe) under control conditions (25/18 & DEG;C) and after exposure to 0 & DEG;C for 24 h. Most of the differentially abundant proteins were involved in the processes of photosynthesis and metabolisms of starch, sucrose, carbon, and glutathione. The chloroplasts in Az34 leaves were more severely damaged, and the decrease in Fv/Fm was larger in Az34 plants compared with WT under low temperature. Under low temperature, Az34 plants possessed significantly higher activities of ADP-glucose pyrophosphorylase, fructokinase, monodehydroascorbate reductase, and three invertases, but lower UDP-glucose pyrophosphorylase activity than WT. In addition, concentrations of proline and soluble protein were lower, while concentration of H2O2 was higher in Az34 plants compared to WT under low temperature. Collectively, the results indicated that ABA deficiency induced modifications in starch and sucrose biosynthesis and sucrolytic pathway and overaccumulation of reactive oxygen species were the main reason for depressed low temperature tolerance in barley, which provide novel insights to the response of barley to low temperature under future climate change.
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页数:23
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