4.6 Article

Mitochondrial energy-dissipation pathway and cellular redox disruption compromises Arabidopsis resistance to turnip crinkle virus infection

Journal

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.bbrc.2016.03.023

Keywords

Alternative oxidase; Cyanide-resistant respiration; Proton gradient regulation 5; Redox homeostasis; Turnip crinkle virus; Uncoupling protein

Funding

  1. National Natural Science Foundation of China [31570231, 31470342, 31400211]
  2. National Basic Research Program of China (973 Program) [2015CB150100]
  3. National Research and Development Project of Transgenic Crops of China [2016ZX08009-003-002]
  4. Sichuan Natural Science Foundation [2015JY0101, 2015JY0223]

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Members of the plant mitochondrial energy-dissipation pathway (MEDP) coordinate cellular energy metabolism, redox homeostasis and the balance of ROS production. However, the roles of MEDP members, particularly uncoupling protein (UCP), in resistance to turnip crinkle virus infection (TCV) are poorly understood. Here, we showed that disrupting some MEDP genes compromises plant resistance to TCV viral infection and this is partly associated with damaged photosynthetic characteristics, altered cellular redox and increased ROS production. Experiments using mutant plants with impaired cellular compartment redox poising further demonstrated that impaired chloroplast/mitochondria and cystosol redox increases the susceptibility of plants to viral infection. Our results illustrate a mechanism by which MEDP and cellular compartment redox act in concert to regulate plant resistance to viral infections. (C) 2016 Elsevier Inc. All rights reserved.

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