Pathways Knowlegdes
Biological pathway database
| Pathway | DOIs | Note |
|---|---|---|
| phosphatidylcholine acyl editing Accession ID: PlantCyc:CHLAMY_PWY-6803 |
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| phospholipases Accession ID: PlantCyc:CHLAMY_LIPASYN-PWY |
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Awasthi M, Batra J, Kateriya S. Disulphide Bridges of Phospholipase C of Chlamydomonas reinhardtii Modulates Lipid Interaction and Dimer Stability. PLoS ONE. 2012 Jun 21;7(6):e39258. doi: 10.1371/journal.pone.0039258.; Arisz SA, Munnik T. The salt stress-induced LPA response in Chlamydomonas is produced via PLA2 hydrolysis of DGK-generated phosphatidic acid. Journal of Lipid Research. 2011 Nov;52(11):2012–20. doi: 10.1194/jlr.m016873.; Gaude N, Nakamura Y, Scheible WR, Ohta H, Dörmann P. Phospholipase C5 (NPC5) is involved in galactolipid accumulation during phosphate limitation in leaves of Arabidopsis. Plant J. 2008 Oct;56(1):28–39. doi: 10.1111/j.1365-313x.2008.03582.x. PMID: 18564386.; Ryu SB, Lee HY, Doelling JH, Palta JP. Characterization of a cDNA encoding Arabidopsis secretory phospholipase A2-a, an enzyme that generates bioactive lysophospholipids and free fatty acids. Biochimica et Biophysica Acta (BBA) - Molecular and Cell Biology of Lipids. 2005 Sep;1736(2):144–51. doi: 10.1016/j.bbalip.2005.08.005.; Noiriel A, Benveniste P, Banas A, Stymne S, Bouvier-Navé P. Expression in yeast of a novel phospholipase A1 cDNA from Arabidopsis thaliana. European Journal of Biochemistry. 2004 Aug 26;271(18):3752–64. doi: 10.1111/j.1432-1033.2004.04317.x.; Ryu SB. Phospholipid-derived signaling mediated by phospholipase A in plants. Trends Plant Sci. 2004 May;9(5):229–35. doi: 10.1016/j.tplants.2004.03.004. PMID: 15130548.; Holk A, Rietz S, Zahn M, Quader H, Scherer GF. Molecular identification of cytosolic, patatin-related phospholipases A from Arabidopsis with potential functions in plant signal transduction. Plant Physiol. 2002 Sep;130(1):90–101. PMID: 12226489; PMCID: PMC166542.; Kwon Park S, Ro Lee J, Sik Lee S, Jin Son H, Young Yoo J, Chan Moon J, Young Kwon H, Oh Lim C, Dong Bahk J, Je Cho M, Yeol Lee S. Partial Purification and Properties of a Phosphatidylinositol 4,5-Bisphosphate Hydrolyzing Phospholipase C from the Soluble Fraction of Soybean Sprouts. Molecules and Cells. 2002 Jun;13(3):377–84. doi: 10.1016/s1016-8478(23)15048-5.; Wang C, Wang X. A novel phospholipase D of Arabidopsis that is activated by oleic acid and associated with the plasma membrane. Plant Physiol. 2001 Nov;127(3):1102–12. PMID: 11706190; PMCID: PMC129279.; Ishiguro S, Kawai-Oda A, Ueda J, Nishida I, Okada K. The DEFECTIVE IN ANTHER DEHISCIENCE gene encodes a novel phospholipase A1 catalyzing the initial step of jasmonic acid biosynthesis, which synchronizes pollen maturation, anther dehiscence, and flower opening in Arabidopsis. Plant Cell. 2001 Oct;13(10):2191–209. PMID: 11595796; PMCID: PMC139153.; Otterhag L, Sommarin M, Pical C. N-terminal EF-hand-like domain is required for phosphoinositide-specific phospholipase C activity in Arabidopsis thaliana. FEBS Lett. 2001 May 25;497(2-3):165–70. doi: 10.1016/s0014-5793(01)02453-x. PMID: 11377433.; Abousalham A, Teissere M, Gardies AM, Verger R, Noat G. Phospholipase D from soybean (Glycine max L.) suspension-cultured cells: purification, structural and enzymatic properties. Plant Cell Physiol. 1995 Sep;36(6):989–96. doi: 10.1093/oxfordjournals.pcp.a078871. PMID: 8528610.; Scherer GFE, André B. A rapid response to a plant hormone: Auxin stimulates phospholipase A2in vivo and in vitro. Biochemical and Biophysical Research Communications. 1989 Aug;163(1):111–7. doi: 10.1016/0006-291x(89)92106-2.; Yoshida S, Sakai A. Phospholipid degradation in frozen plant cells associated with freezing injury. Plant Physiol. 1974 Mar;53(3):509–11. PMID: 16658734; PMCID: PMC543271. |
| triacylglycerol degradation Accession ID: PlantCyc:CZOFINGIENSIS_LIPAS-PWY |
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| ceramide degradation (generic) Accession ID: PlantCyc:CZOFINGIENSIS_PWY-6483 |
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| ceramide degradation (generic) Accession ID: PlantCyc:OTHOMAEUM_PWY-6483 |
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| phosphatidylcholine acyl editing Accession ID: PlantCyc:PAPAYA_PWY-6803 |
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| triacylglycerol degradation Accession ID: PlantCyc:PAPAYA_LIPAS-PWY |
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| fatty acid α-oxidation I (plants) Accession ID: PlantCyc:PINEAPPLE_PWY-2501 |
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| triacylglycerol degradation Accession ID: PlantCyc:PINEAPPLE_LIPAS-PWY |
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| phosphatidylcholine acyl editing Accession ID: PlantCyc:BLACKPEPPER_PWY-6803 |
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| triacylglycerol degradation Accession ID: PlantCyc:BLACKPEPPER_LIPAS-PWY |
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| fatty acid α-oxidation I (plants) Accession ID: PlantCyc:SELAGINELLA_PWY-2501 |
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| phosphatidylcholine acyl editing Accession ID: PlantCyc:SPIRODELA_PWY-6803 |
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| phosphatidylcholine acyl editing Accession ID: PlantCyc:VCARTERI_PWY-6803 |
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| triacylglycerol degradation Accession ID: PlantCyc:ZMARINA_LIPAS-PWY |
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| fatty acid α-oxidation I (plants) Accession ID: PlantCyc:CGIGANTEA_PWY-2501 |
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| triacylglycerol degradation Accession ID: PlantCyc:CHLAMY_LIPAS-PWY |
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Li X, Benning C, Kuo MH. Rapid triacylglycerol turnover in Chlamydomonas reinhardtii requires a lipase with broad substrate specificity. Eukaryot Cell. 2012 Dec;11(12):1451–62. PMID: 23042128; PMCID: PMC3536278.; Eastmond PJ. SUGAR-DEPENDENT1 encodes a patatin domain triacylglycerol lipase that initiates storage oil breakdown in germinating Arabidopsis seeds. Plant Cell. 2006 Mar;18(3):665–75. PMID: 16473965; PMCID: PMC1383641. |
| ceramide degradation (generic) Accession ID: PlantCyc:CHLAMY_PWY-6483 |
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| triacylglycerol degradation Accession ID: PlantCyc:GARLIC_LIPAS-PWY |
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| phosphatidylcholine acyl editing Accession ID: PlantCyc:ROSEMARY_PWY-6803 |
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