Matches in SemOpenAlex for { <https://semopenalex.org/work/W2978235613> ?p ?o ?g. }
- W2978235613 abstract "To investigate how the integrity of the mitochondrial electron transport chain (mETC) influences susceptibility of Arabidopsis towards C. higginsianum, we have selected previously characterized mutants with defects at different stages of the mETC, namely the complex I mutant ndufs4, the complex II mutant sdh2-1, the complex III mutant ucr8-1 and a mutant of the uncoupling protein, ucp1-2. Relative to wild type, the selected complex I, II and III mutants showed decreased total respiration, increased alternative respiration as well as increased redox charge of the NADP(H) pool and decreased redox charge of the NAD(H) pool in the dark. In the light, mETC mutants accumulated free amino acids, albeit to varying degrees. Predominantly glycine and serine, which are involved in carbon recycling from photorespiration, and N-rich amino acids were increased in mETC mutants compared to the wild type. Taking together the physiological phenotypes of all examined mutants, our results suggest a connection between the limitation in the re-oxidation of reducing equivalents in the mitochondrial matrix and the induction of nitrate assimilation into free amino acids in the cytosol, which seems to be engaged as an additional sink for reducing power. The sdh2-1 mutant was less susceptible to C. higginsianum and did not show hampered salicylic acid (SA) accumulation as previously reported for SDH1 knockdown plants. Succinate accumulation was less pronounced in sdh2-1 compared to mutants defective in SDH1 activity. The ROS burst remained unaffected in sdh2-1, demonstrating that subunit SDH2 is not involved in the control of ROS production and SA signaling by complex II. The ndufs4 mutant showed only 20% of C. higginsianum colonization compared to wild type. The ROS burst and the production of callose papillae was significantly increased in ndufs4, indicating that the restriction of respiratory metabolism positively affects pre-penetration resistance of Arabidopsis. Taking metabolite profiling data from all investigated mETC mutants, a strong positive correlation of NADPH pool size, pyruvate contents and other metabolites associated with redox poise and energy charge with resistance towards C. higginsianum was evident, indicating that limitations in the mETC can also support resistance at post-penetration stages by improving the availability of metabolic power." @default.
- W2978235613 created "2019-10-10" @default.
- W2978235613 creator A5003558592 @default.
- W2978235613 creator A5012871882 @default.
- W2978235613 creator A5026976466 @default.
- W2978235613 creator A5035624467 @default.
- W2978235613 creator A5055777252 @default.
- W2978235613 date "2019-10-17" @default.
- W2978235613 modified "2023-09-24" @default.
- W2978235613 title "Deficiencies in the Mitochondrial Electron Transport Chain Affect Redox Poise and Resistance Toward Colletotrichum higginsianum" @default.
- W2978235613 cites W1571943513 @default.
- W2978235613 cites W1583881973 @default.
- W2978235613 cites W1638404651 @default.
- W2978235613 cites W1931712295 @default.
- W2978235613 cites W1932590773 @default.
- W2978235613 cites W1965182432 @default.
- W2978235613 cites W1965286936 @default.
- W2978235613 cites W1972054938 @default.
- W2978235613 cites W1974201715 @default.
- W2978235613 cites W1978631832 @default.
- W2978235613 cites W1979454431 @default.
- W2978235613 cites W1982377654 @default.
- W2978235613 cites W1988607504 @default.
- W2978235613 cites W2001790145 @default.
- W2978235613 cites W2003371798 @default.
- W2978235613 cites W2003613761 @default.
- W2978235613 cites W2003748109 @default.
- W2978235613 cites W2016952838 @default.
- W2978235613 cites W2017517044 @default.
- W2978235613 cites W2018202875 @default.
- W2978235613 cites W2024614642 @default.
- W2978235613 cites W2026025289 @default.
- W2978235613 cites W2039516505 @default.
- W2978235613 cites W2039731523 @default.
- W2978235613 cites W2053125707 @default.
- W2978235613 cites W2058495284 @default.
- W2978235613 cites W2060623124 @default.
- W2978235613 cites W2072800448 @default.
- W2978235613 cites W2076685684 @default.
- W2978235613 cites W2079513267 @default.
- W2978235613 cites W2081501649 @default.
- W2978235613 cites W2086334942 @default.
- W2978235613 cites W2090822193 @default.
- W2978235613 cites W2093297788 @default.
- W2978235613 cites W2095175639 @default.
- W2978235613 cites W2101829014 @default.
- W2978235613 cites W2103595901 @default.
- W2978235613 cites W2105272465 @default.
- W2978235613 cites W2109324504 @default.
- W2978235613 cites W2110868527 @default.
- W2978235613 cites W2115776862 @default.
- W2978235613 cites W2115788921 @default.
- W2978235613 cites W2116976888 @default.
- W2978235613 cites W2117304629 @default.
- W2978235613 cites W2122406233 @default.
- W2978235613 cites W2128644227 @default.
- W2978235613 cites W2132334247 @default.
- W2978235613 cites W2133629746 @default.
- W2978235613 cites W2135414906 @default.
- W2978235613 cites W2135594259 @default.
- W2978235613 cites W2152360790 @default.
- W2978235613 cites W2155629947 @default.
- W2978235613 cites W2157239070 @default.
- W2978235613 cites W2160164736 @default.
- W2978235613 cites W2160768024 @default.
- W2978235613 cites W2169375351 @default.
- W2978235613 cites W2170238711 @default.
- W2978235613 cites W2298711480 @default.
- W2978235613 cites W2314745444 @default.
- W2978235613 cites W2413435660 @default.
- W2978235613 cites W2563591862 @default.
- W2978235613 cites W2589059674 @default.
- W2978235613 cites W2623279534 @default.
- W2978235613 cites W2741825469 @default.
- W2978235613 cites W2789207181 @default.
- W2978235613 cites W2791638825 @default.
- W2978235613 doi "https://doi.org/10.3389/fpls.2019.01262" @default.
- W2978235613 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/6812661" @default.
- W2978235613 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/31681368" @default.
- W2978235613 hasPublicationYear "2019" @default.
- W2978235613 type Work @default.
- W2978235613 sameAs 2978235613 @default.
- W2978235613 citedByCount "1" @default.
- W2978235613 countsByYear W29782356132023 @default.
- W2978235613 crossrefType "journal-article" @default.
- W2978235613 hasAuthorship W2978235613A5003558592 @default.
- W2978235613 hasAuthorship W2978235613A5012871882 @default.
- W2978235613 hasAuthorship W2978235613A5026976466 @default.
- W2978235613 hasAuthorship W2978235613A5035624467 @default.
- W2978235613 hasAuthorship W2978235613A5055777252 @default.
- W2978235613 hasBestOaLocation W29782356131 @default.
- W2978235613 hasConcept C104317684 @default.
- W2978235613 hasConcept C143065580 @default.
- W2978235613 hasConcept C181199279 @default.
- W2978235613 hasConcept C185592680 @default.
- W2978235613 hasConcept C207583985 @default.
- W2978235613 hasConcept C24840226 @default.
- W2978235613 hasConcept C2776414213 @default.
- W2978235613 hasConcept C2777756961 @default.
- W2978235613 hasConcept C2778858093 @default.