- Information
- Symbol: OsAOS3,OsHPL2
- MSU: LOC_Os02g12680
- RAPdb: Os02g0218700
- Publication
- Role of hydroperoxide lyase in white-backed planthopper Sogatella furcifera Horvath-induced resistance to bacterial blight in rice, Oryza sativa L, 2010, Plant J.
- Phytochrome-mediated transcriptional up-regulation of ALLENE OXIDE SYNTHASE in rice seedlings, 2004, Plant Cell Physiol.
- Rice HYDROPEROXIDE LYASES with unique expression patterns generate distinct aldehyde signatures in Arabidopsis, 2006, Plant Physiol.
- Cloning and functional identification of a Chilo suppressalis-inducible promoter of rice gene, OsHPL2., 2020, Pest Manag Sci.
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Genbank accession number
- Key message
- OsHPL1 is ubiquitously expressed, OsHPL2 is expressed in the leaves and leaf sheaths, whereas OsHPL3 is wound inducible and expressed exclusively in leaves
- OsHPL2-overexpressing transgenic rice plants exhibited increased resistance to bacterial blight
- Connection
- OsAOS3~OsHPL2, OsAOS4~OsHPL1, Rice HYDROPEROXIDE LYASES with unique expression patterns generate distinct aldehyde signatures in Arabidopsis, OsHPL1 is ubiquitously expressed, OsHPL2 is expressed in the leaves and leaf sheaths, whereas OsHPL3 is wound inducible and expressed exclusively in leaves
- OsAOS3~OsHPL2, OsAOS4~OsHPL1, Rice HYDROPEROXIDE LYASES with unique expression patterns generate distinct aldehyde signatures in Arabidopsis, OsHPL1 and OsHPL2 metabolize 9-/13-hydroperoxides, whereas OsHPL3 metabolizes 13-hydroperoxy linolenic acid exclusively
- OsAOS3~OsHPL2, OsHPL3, Rice HYDROPEROXIDE LYASES with unique expression patterns generate distinct aldehyde signatures in Arabidopsis, OsHPL1 is ubiquitously expressed, OsHPL2 is expressed in the leaves and leaf sheaths, whereas OsHPL3 is wound inducible and expressed exclusively in leaves
- OsAOS3~OsHPL2, OsHPL3, Rice HYDROPEROXIDE LYASES with unique expression patterns generate distinct aldehyde signatures in Arabidopsis, OsHPL1 and OsHPL2 metabolize 9-/13-hydroperoxides, whereas OsHPL3 metabolizes 13-hydroperoxy linolenic acid exclusively
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