Oryza sativa subsp. japonica subsp. indica (Rice; Oryza punctata (Red rice)) cell death associated protein OSD4 SA-DEFICIENT GENE 4
Salicylic acid (SA) is a pivotal phytohormone for plant responses to biotic and abiotic stresses. Plants have evolved two pathways to produce SA: the isochorismate synthase and phenylalanine ammonia lyase (PAL) pathways. In the PAL pathway, benzyl salicylate is hydrolysed to salicylic acid by the cytoplasmic carboxylesterase OSD4. This enayme is present in most plants except Arabidopsis. Other strains: Oryza sativa subsp. japonica subsp. indica (Rice)\; Oryza punctata (Red rice)\; Oryza nivara (Indian wild rice) (Oryza sativa f. spontanea)\; Oryza rufipogon (Brownbeard rice) (Asian wild rice\; Oryza glumipatula\; Oryza meridionalis
Family : Plant_carboxylesterase
Block : H
Position in NCBI Life Tree : Oryza sativa
(Below N is a link to NCBI taxonomic web page and E link to ESTHER at designed phylum.)
> cellular organisms N E > Eukaryota N E > Viridiplantae N E > Streptophyta N E > Streptophytina N E > Embryophyta N E > Tracheophyta N E > Euphyllophyta N E > Spermatophyta N E > Magnoliophyta N E > Mesangiospermae N E > Liliopsida N E > Petrosaviidae N E > commelinids N E > Poales N E > Poaceae N E > BOP clade N E > Oryzoideae N E > Oryzeae N E > Oryzinae N E > Oryza N E > Oryza sativa N EMAIATESQQA QVQAAATDAV AAAAVGRKVV DEVSGWLRVF DDGTVDRTWT GPPEVLPLMQ PVPAYAEPRD GHTLHDLPGE PNLRVYLPEV ALAERRLPVV VQLHGGGFCI SHPSWLMYHH FYARLACALP AVVVAVELPL APERRLPAHI DTGVDGLRRL RSIALSDAAA LGDPAAELLR TAADFSRVFL IGDSSGGNLV HHVGARVGED GADSWAPLRV AGGIPLHPGF VHATRSKSEL EPRPDSVFFT LDMLDKFLAM ALPEGATKDH PYTCPMGPNA PPLESVPLPP LLVAVAEHDL IRDTNLEYCD ALRTAGKDVE VLVNRGMSHS FYLNKYAVDM DPATGERTRE LVDAIKSFVD RH
| Title : Complete biosynthesis of salicylic acid from phenylalanine in plants - Zhu_2025_Nature__ |
| Author(s) : Zhu B , Zhang Y , Gao R , Wu Z , Zhang W , Zhang C , Zhang P , Ye C , Yao L , Jin Y , Mao H , Tou P , Huang P , Zhao J , Zhao Q , Liu CJ , Zhang K |
| Ref : Nature , : , 2025 |
| Abstract : |
| PubMedSearch : Zhu_2025_Nature__ |
| PubMedID: 40702181 |
| Gene_locus related to this paper: orysa-q6j657 |
| Title : Deciphering phenylalanine-derived salicylic acid biosynthesis in plants - Wang_2025_Nature__ |
| Author(s) : Wang Y , Song S , Zhang W , Deng Q , Feng Y , Tao M , Kang M , Zhang Q , Yang L , Wang X , Zhu C , Zhu W , Zhu Y , Cao P , Chen J , Pan J , Feng S , Chen X , Dai H , Yang J , Zhao T , Cao F , Tao Z , Shen X , Last RL , Hu J , Yu J , Fan P , Pan R |
| Ref : Nature , : , 2025 |
| Abstract : |
| PubMedSearch : Wang_2025_Nature__ |
| PubMedID: 40702180 |
| Gene_locus related to this paper: orysa-q6j657 |
| Title : Chloroplast genome sequence confirms distinctness of Australian and Asian wild rice - Waters_2012_Ecol.Evol_2_211 |
| Author(s) : Waters DL , Nock CJ , Ishikawa R , Rice N , Henry RJ |
| Ref : Ecol Evol , 2 :211 , 2012 |
| Abstract : |
| PubMedSearch : Waters_2012_Ecol.Evol_2_211 |
| PubMedID: 22408737 |
| Gene_locus related to this paper: orysa-Q0JK71 , orysa-q2rat1 , orysa-q6j657 , orysj-q6yse8 , 9oryz-a0a0e0aui2 , orysi-b8bly4 , orysj-b9gbs1 |