Pathways Knowlegdes
Biological pathway database
| Pathway | DOIs | Note |
|---|---|---|
| Hormone signaling, transport, and metabolism Accession ID: Plant Reactome:R-PTI-2744341 |
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| Strigolactone biosynthesis Accession ID: Plant Reactome:R-PTI-5367729 |
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Cardoso C, Zhang Y, Jamil M, Hepworth J, Charnikhova T, Dimkpa SON, Meharg C, Wright MH, Liu J, Meng X, Wang Y, Li J, McCouch SR, Leyser O, Price AH, Bouwmeester HJ, Ruyter-Spira C. Natural variation of rice strigolactone biosynthesis is associated with the deletion of two MAX1 orthologs. Proc. Natl. Acad. Sci. U.S.A. 2014 Jan 24;111(6):2379–84. doi: 10.1073/pnas.1317360111.; Challis RJ, Hepworth J, Mouchel C, Waites R, Leyser O. A Role forMORE AXILLARY GROWTH1(MAX1) in Evolutionary Diversity in Strigolactone Signaling Upstream ofMAX2 . 2013 Feb 19;161(4):1885–902. doi: 10.1104/pp.112.211383.; Ruyter-Spira C, Al-Babili S, van der Krol S, Bouwmeester H. The biology of strigolactones. Trends Plant Sci. 2013 Feb;18(2):72–83. doi: 10.1016/j.tplants.2012.10.003. PMID: 23182342. |
| Metabolism and regulation Accession ID: Plant Reactome:R-GMA-2744345 |
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| Secondary metabolism Accession ID: Plant Reactome:R-GMA-2744344 |
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| Carotenoid biosynthesis Accession ID: Plant Reactome:R-GMA-1119449 |
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| Metabolism and regulation Accession ID: Plant Reactome:R-PDA-2744345 |
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| Metabolism and regulation Accession ID: Plant Reactome:R-PVU-2744345 |
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| Carotenoid biosynthesis Accession ID: Plant Reactome:R-PAB-1119449 |
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| Metabolism and regulation Accession ID: Plant Reactome:R-CSI-2744345 |
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| Secondary metabolism Accession ID: Plant Reactome:R-VAN-2744344 |
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| Carotenoid biosynthesis Accession ID: Plant Reactome:R-VAN-1119449 |
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| Hormone signaling, transport, and metabolism Accession ID: Plant Reactome:R-CSA-2744341 |
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| Strigolactone biosynthesis Accession ID: Plant Reactome:R-CSA-5367729 |
|
Cardoso C, Zhang Y, Jamil M, Hepworth J, Charnikhova T, Dimkpa SON, Meharg C, Wright MH, Liu J, Meng X, Wang Y, Li J, McCouch SR, Leyser O, Price AH, Bouwmeester HJ, Ruyter-Spira C. Natural variation of rice strigolactone biosynthesis is associated with the deletion of two MAX1 orthologs. Proc. Natl. Acad. Sci. U.S.A. 2014 Jan 24;111(6):2379–84. doi: 10.1073/pnas.1317360111.; Challis RJ, Hepworth J, Mouchel C, Waites R, Leyser O. A Role forMORE AXILLARY GROWTH1(MAX1) in Evolutionary Diversity in Strigolactone Signaling Upstream ofMAX2 . 2013 Feb 19;161(4):1885–902. doi: 10.1104/pp.112.211383.; Ruyter-Spira C, Al-Babili S, van der Krol S, Bouwmeester H. The biology of strigolactones. Trends Plant Sci. 2013 Feb;18(2):72–83. doi: 10.1016/j.tplants.2012.10.003. PMID: 23182342. |
| Hormone signaling, transport, and metabolism Accession ID: Plant Reactome:R-PPE-2744341 |
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| Strigolactone biosynthesis Accession ID: Plant Reactome:R-PPE-5367729 |
|
Cardoso C, Zhang Y, Jamil M, Hepworth J, Charnikhova T, Dimkpa SON, Meharg C, Wright MH, Liu J, Meng X, Wang Y, Li J, McCouch SR, Leyser O, Price AH, Bouwmeester HJ, Ruyter-Spira C. Natural variation of rice strigolactone biosynthesis is associated with the deletion of two MAX1 orthologs. Proc. Natl. Acad. Sci. U.S.A. 2014 Jan 24;111(6):2379–84. doi: 10.1073/pnas.1317360111.; Challis RJ, Hepworth J, Mouchel C, Waites R, Leyser O. A Role forMORE AXILLARY GROWTH1(MAX1) in Evolutionary Diversity in Strigolactone Signaling Upstream ofMAX2 . 2013 Feb 19;161(4):1885–902. doi: 10.1104/pp.112.211383.; Ruyter-Spira C, Al-Babili S, van der Krol S, Bouwmeester H. The biology of strigolactones. Trends Plant Sci. 2013 Feb;18(2):72–83. doi: 10.1016/j.tplants.2012.10.003. PMID: 23182342. |
| Metabolism and regulation Accession ID: Plant Reactome:R-MDO-2744345 |
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| Carotenoid biosynthesis Accession ID: Plant Reactome:R-MDO-1119449 |
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| Metabolism and regulation Accession ID: Plant Reactome:R-OLO-2744345 |
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| Metabolism and regulation Accession ID: Plant Reactome:R-ZMA-2744345 |
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| Secondary metabolism Accession ID: Plant Reactome:R-ZMA-2744344 |
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