Pathways Knowlegdes
Biological pathway database
| Pathway | DOIs | Note |
|---|---|---|
| Response to iron deficiency Accession ID: Plant Reactome:R-CME-9025714 |
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| Yang cycle Accession ID: Plant Reactome:R-TAE-1119624 |
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| Secondary metabolism Accession ID: Plant Reactome:R-TAE-2744344 |
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| Sterol biosynthesis Accession ID: Plant Reactome:R-TAE-1119370 |
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| Amino acid biosynthesis Accession ID: Plant Reactome:R-FVE-5655122 |
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| Beta-alanine betaine biosynthesis Accession ID: Plant Reactome:R-FVE-1119528 |
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Raman SB, Rathinasabapathi B. beta-alanine N-methyltransferase of Limonium latifolium. cDNA cloning and functional expression of a novel N-methyltransferase implicated in the synthesis of the osmoprotectant beta-alanine betaine. Plant Physiol. 2003 Jul;132(3):1642–51. PMID: 12857843; PMCID: PMC167101.; Rathinasabapathi B, Fouad WM, Sigua CA. ß-Alanine Betaine Synthesis in the Plumbaginaceae. Purification and Characterization of a Trifunctional,S-Adenosyl- |
| Amine and polyamine biosynthesis Accession ID: Plant Reactome:R-FVE-5096066 |
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Fuell C, Elliott KA, Hanfrey CC, Franceschetti M, Michael AJ. Polyamine biosynthetic diversity in plants and algae. Plant Physiol Biochem. 2010 Jul;48(7):513–20. doi: 10.1016/j.plaphy.2010.02.008. PMID: 20227886. |
| Spermidine biosynthesis Accession ID: Plant Reactome:R-FVE-1119343 |
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| Biotin biosynthesis II Accession ID: Plant Reactome:R-FVE-1119610 |
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| Ethylene biosynthesis and signaling Accession ID: Plant Reactome:R-FVE-5225808 |
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| Tricin biosynthesis Accession ID: Plant Reactome:R-FVE-9609573 |
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Lam PY, Liu H, Lo C. Completion of Tricin Biosynthesis Pathway in Rice: Cytochrome P450 75B4 Is a Unique Chrysoeriol 5'-Hydroxylase. Plant Physiol. 2015 Aug;168(4):1527–36. PMID: 26082402; PMCID: PMC4528758.; Lan W, Lu F, Regner M, Zhu Y, Rencoret J, Ralph SA, Zakai UI, Morreel K, Boerjan W, Ralph J. Tricin, a flavonoid monomer in monocot lignification. Plant Physiol. 2015 Apr;167(4):1284–95. PMID: 25667313; PMCID: PMC4378158.; Lam PY, Zhu FY, Chan WL, Liu H, Lo C. Cytochrome P450 93G1 Is a Flavone Synthase II That Channels Flavanones to the Biosynthesis of Tricin O-Linked Conjugates in Rice. Plant Physiol. 2014 Jul;165(3):1315–27. PMID: 24843076; PMCID: PMC4081339.; Moheb A, Grondin M, Ibrahim RK, Roy R, Sarhan F. Winter wheat hull (husk) is a valuable source for tricin, a potential selective cytotoxic agent. Food Chem. 2013 Jun 01;138(2-3):931–7. doi: 10.1016/j.foodchem.2012.09.129. PMID: 23411198.; Shalini V, Bhaskar S, Kumar KS, Mohanlal S, Jayalekshmy A, Helen A. Molecular mechanisms of anti-inflammatory action of the flavonoid, tricin from Njavara rice (Oryza sativa L.) in human peripheral blood mononuclear cells: possible role in the inflammatory signaling. Int Immunopharmacol. 2012 Sep;14(1):32–8. doi: 10.1016/j.intimp.2012.06.005. PMID: 22705359.; Chang CL, Wang GJ, Zhang LJ, Tsai WJ, Chen RY, Wu YC, Kuo YH. Cardiovascular protective flavonolignans and flavonoids from Calamus quiquesetinervius. Phytochemistry. 2010 Feb;71(2-3):271–9. doi: 10.1016/j.phytochem.2009.09.025. PMID: 20006366.; Shih CH, Chu H, Tang LK, Sakamoto W, Maekawa M, Chu IK, Wang M, Lo C. Functional characterization of key structural genes in rice flavonoid biosynthesis. Planta. 2008 Nov;228(6):1043–54. doi: 10.1007/s00425-008-0806-1. PMID: 18726614.; Kong CH, Zhao H, Xu XH, Wang P, Gu Y. Activity and allelopathy of soil of flavone o-glycosides from rice. J Agric Food Chem. 2007 Jul 25;55(15):6007–12. doi: 10.1021/jf0703912. PMID: 17602647.; Duarte-Almeida JM, Negri G, Salatino A, de Carvalho JE, Lajolo FM. Antiproliferative and antioxidant activities of a tricin acylated glycoside from sugarcane (Saccharum officinarum) juice. Phytochemistry. 2007 Apr;68(8):1165–71. doi: 10.1016/j.phytochem.2007.01.015. PMID: 17350657.; Cai H, Boocock DJ, Steward WP, Gescher AJ. Tissue distribution in mice and metabolism in murine and human liver of apigenin and tricin, flavones with putative cancer chemopreventive properties. Cancer Chemother Pharmacol. 2007 Jul;60(2):257–66. doi: 10.1007/s00280-006-0368-5. PMID: 17089164.; Kim BG, Lee Y, Hur HG, Lim Y, Ahn JH. Flavonoid 3'-O-methyltransferase from rice: cDNA cloning, characterization and functional expression. Phytochemistry. 2006 Feb;67(4):387–94. doi: 10.1016/j.phytochem.2005.11.022. PMID: 16412485.; Kong C, Xu X, Zhou B, Hu F, Zhang C, Zhang M. Two compounds from allelopathic rice accession and their inhibitory activity on weeds and fungal pathogens. Phytochemistry. 2004 Apr;65(8):1123–8. doi: 10.1016/j.phytochem.2004.02.017. PMID: 15110693. |
| Response to iron deficiency Accession ID: Plant Reactome:R-FVE-9025714 |
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| Metabolism and regulation Accession ID: Plant Reactome:R-MES-2744345 |
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| Amino acid metabolism Accession ID: Plant Reactome:R-MES-2744343 |
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| SMM cycle Accession ID: Plant Reactome:R-MES-1119349 |
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| Cofactor biosyntheses Accession ID: Plant Reactome:R-MES-2867929 |
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| Hormone signaling, transport, and metabolism Accession ID: Plant Reactome:R-MES-2744341 |
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| Mugineic acid biosynthesis Accession ID: Plant Reactome:R-MES-9025754 |
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Kobayashi T, Nakanishi H, Nishizawa NK. Recent insights into iron homeostasis and their application in graminaceous crops. Proc Jpn Acad Ser B Phys Biol Sci. 2010;86(9):900–13. PMID: 21084773; PMCID: PMC3035920.; Inoue H, Takahashi M, Kobayashi T, Suzuki M, Nakanishi H, Mori S, Nishizawa NK. Identification and localisation of the rice nicotianamine aminotransferase gene OsNAAT1 expression suggests the site of phytosiderophore synthesis in rice. Plant Mol Biol. 2008 Jan;66(1-2):193–203. doi: 10.1007/s11103-007-9262-8. PMID: 18034312.; Cheng L, Wang F, Shou H, Huang F, Zheng L, He F, Li J, Zhao FJ, Ueno D, Ma JF, Wu P. Mutation in nicotianamine aminotransferase stimulated the Fe(II) acquisition system and led to iron accumulation in rice. Plant Physiol. 2007 Dec;145(4):1647–57. PMID: 17951455; PMCID: PMC2151683.; Bashir K, Inoue H, Nagasaka S, Takahashi M, Nakanishi H, Mori S, Nishizawa NK. Cloning and Characterization of Deoxymugineic Acid Synthase Genes from Graminaceous Plants. Journal of Biological Chemistry. 2006 Oct;281(43):32395–402. doi: 10.1074/jbc.m604133200.; Inoue H, Higuchi K, Takahashi M, Nakanishi H, Mori S, Nishizawa NK. Three rice nicotianamine synthase genes, OsNAS1, OsNAS2, and OsNAS3 are expressed in cells involved in long-distance transport of iron and differentially regulated by iron. The Plant Journal. 2003 Oct 13;36(3):366–81. doi: 10.1046/j.1365-313x.2003.01878.x.; Takahashi M, Yamaguchi H, Nakanishi H, Shioiri T, Nishizawa NK, Mori S. Cloning two genes for nicotianamine aminotransferase, a critical enzyme in iron acquisition (Strategy II) in graminaceous plants. Plant Physiol. 1999 Nov;121(3):947–56. PMID: 10557244; PMCID: PMC59459. |
| Metabolism and regulation Accession ID: Plant Reactome:R-TDI-2744345 |
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| Amino acid metabolism Accession ID: Plant Reactome:R-TDI-2744343 |
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