首页> 中文期刊> 《作物学报:英文版》 >GmGPDH12,a mitochondrial FAD-GPDH from soybean, increases salt and osmotic stress resistance by modulating redox state and respiration

GmGPDH12,a mitochondrial FAD-GPDH from soybean, increases salt and osmotic stress resistance by modulating redox state and respiration

         

摘要

In plants,glycerol-3-phosphate dehydrogenase(GPDH)catalyzes the interconversion of glycerol-3-phosphate(G3P)and dihydroxyacetone phosphate(DHAP)coupled to the reduction/oxidation of the nicotinamide adenine dinucleotide(NADH)pool,and plays a central role in glycerolipid metabolism and stress response.Previous studies have focused mainly on the NAD+-dependent GPDH isoforms,neglecting the role of flavin adenine dinucleotide(FAD)-dependent GPDHs.We isolated and characterized three mitochondrialtargeted FAD-GPDHs in soybean,of which one isoform(GmGPDH12)showed a significant transcriptional response to NaCl and mannitol treatments,suggesting the existence of a major FAD-GPDH isoform acting in soybean responses to salt and osmotic stress.An enzyme kinetic assay showed that the purified GmGPDH12 protein possessed the capacity to oxidize G3P to DHAP in the presence of FAD.Overexpression and RNA interference of GmGPDH12 in soybean hairy roots resulted in elevated tolerance and sensitivity to salt and osmotic stress,respectively.G3P contents were significantly lower in GmGPDH12-overexpressing hair roots and higher in knockdown hair roots,indicating that GmGPDH12 was essential for G3P catabolism.A significant perturbation in redox status of NADH,ascorbic acid(ASA)and glutathione(GSH)pools was observed in GmGPDH12-knockdown plants under stress conditions.The impaired redox balance was manifested by higher reactive oxygen species generation and consequent cell damage or death;however,overexpressing plants showed the opposite results for these traits.GmGPDH12 overexpression contributed to maintaining constant respiration rates under salt or osmotic stress by regulating mRNA levels of key mitochondrial respiratory enzymes.This study provides new evidence for the roles of mitochondria-localized GmGPDH12 in conferring resistance to salt or osmotic stress by maintaining cellular redox homeostasis,protecting cells and respiration from oxidative injury.

著录项

  • 来源
    《作物学报:英文版》 |2021年第1期|P.79-94|共16页
  • 作者单位

    College of Agriculture Northeast Agricultural University Harbin 150030 Heilongjiang China;

    Key Lab of Maize Genetics and Breeding Heilongjiang Academy of Agricultural Sciences Harbin 150030 Heilongjiang ChinaCollege of Agriculture Heilongjiang Bayi Agricultural University Daqing 163319 Heilongjiang China;

    College of Agriculture Northeast Agricultural University Harbin 150030 Heilongjiang China;

    College of Agriculture Northeast Agricultural University Harbin 150030 Heilongjiang China;

    College of Agriculture Northeast Agricultural University Harbin 150030 Heilongjiang China;

    College of Agriculture Northeast Agricultural University Harbin 150030 Heilongjiang China;

    College of Agriculture Northeast Agricultural University Harbin 150030 Heilongjiang China;

    College of Agriculture Northeast Agricultural University Harbin 150030 Heilongjiang China;

    College of Agriculture Northeast Agricultural University Harbin 150030 Heilongjiang China;

    College of Agriculture Northeast Agricultural University Harbin 150030 Heilongjiang China;

    College of Agriculture Northeast Agricultural University Harbin 150030 Heilongjiang China;

    College of Agriculture Northeast Agricultural University Harbin 150030 Heilongjiang China;

    College of Agriculture Northeast Agricultural University Harbin 150030 Heilongjiang China;

    College of Agriculture Northeast Agricultural University Harbin 150030 Heilongjiang China;

  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 有机化学;
  • 关键词

    Redox homeostasis; Respiration characteristics; GmGPDH12; Salt stress; Osmotic stress;

    机译:氧化还原稳态;呼吸特性;GMGPDH12;盐胁迫;渗透压;
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