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Effect of 24-epibrassinolide on Brassica napus alternative respiratory pathway, guard cells movements and phospholipid signaling under salt stress
M. Derevyanchuk, S. Kretynin, O. Iakovenko, R. Litvinovskaya, V. Zhabinskii, J. Martinec, Y. Blume, V. Khripach, V. Kravets,
Jazyk angličtina Země Spojené státy americké
Typ dokumentu časopisecké články
- MeSH
- Brassica napus účinky léků enzymologie metabolismus MeSH
- brassinosteroidy farmakologie MeSH
- diglyceridy metabolismus MeSH
- kořeny rostlin účinky léků enzymologie metabolismus MeSH
- kyseliny fosfatidové metabolismus MeSH
- listy rostlin účinky léků enzymologie metabolismus MeSH
- mitochondriální proteiny metabolismus MeSH
- oxidoreduktasy metabolismus MeSH
- průduchy rostlin účinky léků enzymologie metabolismus MeSH
- rostlinné proteiny metabolismus MeSH
- steroidy heterocyklické farmakologie MeSH
- Publikační typ
- časopisecké články MeSH
Using Brassica napus roots we observed statistically significant increase in alternative respiratory pathway in response to exogenous 24-epibrassinolide (EBL) under optimal conditions and salinity. Also we observed activation of phospholipid signaling under the same conditions in response to EBL by measuring levels of lipid second messengers - diacylglycerol (DAG) and phosphatidic acid (PA). We found that brassinosteroids cause closure of stomata in isolated leaf disks while inhibitors of alternative oxidase cancelled these effects. This study demonstrates that BRs activate total respiration rate, alternative respiratory pathway, production of PA and DAG, stimulate stomata closure and growth under optimal conditions and salinity. Also, specific inhibitor of brassinosteroids biosynthesis decreased alternative respiratory pathway and production of lipid messengers in rape plants.
Citace poskytuje Crossref.org
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- $a Using Brassica napus roots we observed statistically significant increase in alternative respiratory pathway in response to exogenous 24-epibrassinolide (EBL) under optimal conditions and salinity. Also we observed activation of phospholipid signaling under the same conditions in response to EBL by measuring levels of lipid second messengers - diacylglycerol (DAG) and phosphatidic acid (PA). We found that brassinosteroids cause closure of stomata in isolated leaf disks while inhibitors of alternative oxidase cancelled these effects. This study demonstrates that BRs activate total respiration rate, alternative respiratory pathway, production of PA and DAG, stimulate stomata closure and growth under optimal conditions and salinity. Also, specific inhibitor of brassinosteroids biosynthesis decreased alternative respiratory pathway and production of lipid messengers in rape plants.
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- $a Kravets, Volodymyr $u Department of the Molecular Mechanisms of Cell Metabolism Regulation, Institute of Bioorganic Chemistry and Petrochemistry, The National Academy of Sciences of Ukraine, 02660, Murmanska str., 1, Kyiv, Ukraine. Electronic address: kravets@bpci.kiev.ua.
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