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- 01GQPCKQQEM8577KV3VPYJSD69 classification A1.
- 01GQPCKQQEM8577KV3VPYJSD69 date "2023".
- 01GQPCKQQEM8577KV3VPYJSD69 language "eng".
- 01GQPCKQQEM8577KV3VPYJSD69 type journalArticle.
- 01GQPCKQQEM8577KV3VPYJSD69 hasPart 01GQPD7R3EHFHY664MEMZEZ0R8.pdf.
- 01GQPCKQQEM8577KV3VPYJSD69 hasPart 01GQPDABY1PQJJTMA98AVGQWQD.pdf.
- 01GQPCKQQEM8577KV3VPYJSD69 hasPart 01H3V83V336KYA8ZX6C1XFPVQZ.pdf.
- 01GQPCKQQEM8577KV3VPYJSD69 subject "Biology and Life Sciences".
- 01GQPCKQQEM8577KV3VPYJSD69 doi "10.1111/nph.18763".
- 01GQPCKQQEM8577KV3VPYJSD69 issn "0028-646X".
- 01GQPCKQQEM8577KV3VPYJSD69 issn "1469-8137".
- 01GQPCKQQEM8577KV3VPYJSD69 issue "2".
- 01GQPCKQQEM8577KV3VPYJSD69 volume "239".
- 01GQPCKQQEM8577KV3VPYJSD69 abstract "Plants often protect themselves from their own bioactive defense metabolites by storing them in less active forms. Consequently, plants also need systems allowing correct spatiotemporal reactivation of such metabolites, for instance under pathogen or herbivore attack. Via co-expression analysis with public transcriptomes, we determined that the model legume Medicago truncatula has evolved a two-component system composed of a β-glucosidase, denominated G1, and triterpene saponins, which are physically separated from each other in intact cells. G1 expression is root-specific, stress-inducible, and coregulated with that of the genes encoding the triterpene saponin biosynthetic enzymes. However, the G1 protein is stored in the nucleolus and is released and united with its typically vacuolar-stored substrates only upon tissue damage, partly mediated by the surfactant action of the saponins themselves. Subsequently, enzymatic removal of carbohydrate groups from the saponins creates a pool of metabolites with an increased broad-spectrum antimicrobial activity. The evolution of this defense system benefited from both the intrinsic condensation abilities of the enzyme and the bioactivity properties of its substrates. We dub this two-component system the saponin bomb, in analogy with the mustard oil and cyanide bombs, commonly used to describe the renowned β-glucosidase-dependent defense systems for glucosinolates and cyanogenic glucosides.".
- 01GQPCKQQEM8577KV3VPYJSD69 author 0859C016-F0EE-11E1-A9DE-61C894A0A6B4.
- 01GQPCKQQEM8577KV3VPYJSD69 author 41F26692-39E6-11E8-8F08-6E3312A95AF2.
- 01GQPCKQQEM8577KV3VPYJSD69 author 53558796-013F-11E3-BF5A-807F10BDE39D.
- 01GQPCKQQEM8577KV3VPYJSD69 author 72C042FE-4D8B-11E8-A226-889411A95AF2.
- 01GQPCKQQEM8577KV3VPYJSD69 author 8A6C274C-2649-11E8-9669-B65412A95AF2.
- 01GQPCKQQEM8577KV3VPYJSD69 author 9850095E-3611-11E4-8697-FC36B5D1D7B1.
- 01GQPCKQQEM8577KV3VPYJSD69 author A0348FDA-FDEE-11E1-B8C9-1EA810BDE39D.
- 01GQPCKQQEM8577KV3VPYJSD69 author F478C59C-F0ED-11E1-A9DE-61C894A0A6B4.
- 01GQPCKQQEM8577KV3VPYJSD69 author F4EC29BA-F0ED-11E1-A9DE-61C894A0A6B4.
- 01GQPCKQQEM8577KV3VPYJSD69 author F77FA418-F0ED-11E1-A9DE-61C894A0A6B4.
- 01GQPCKQQEM8577KV3VPYJSD69 author urn:uuid:0d179f00-b9a0-4b42-acea-9255ab84e7a3.
- 01GQPCKQQEM8577KV3VPYJSD69 author urn:uuid:3ac35652-33d7-4d82-9e3c-7104fad28d17.
- 01GQPCKQQEM8577KV3VPYJSD69 author urn:uuid:c27e739e-7ef9-4460-9922-30a5191127b0.
- 01GQPCKQQEM8577KV3VPYJSD69 dateCreated "2023-01-26T06:35:30Z".
- 01GQPCKQQEM8577KV3VPYJSD69 dateModified "2024-12-12T17:51:03Z".
- 01GQPCKQQEM8577KV3VPYJSD69 name "The saponin bomb : a nucleolar-localized β‐glucosidase hydrolyzes triterpene saponins in Medicago truncatula".
- 01GQPCKQQEM8577KV3VPYJSD69 pagination urn:uuid:d65a96f2-82fd-4257-be0c-ed9516da1ff0.
- 01GQPCKQQEM8577KV3VPYJSD69 sameAs LU-01GQPCKQQEM8577KV3VPYJSD69.
- 01GQPCKQQEM8577KV3VPYJSD69 sourceOrganization urn:uuid:4f4a1291-a554-4ce0-8539-7e158a2e3de9.
- 01GQPCKQQEM8577KV3VPYJSD69 sourceOrganization urn:uuid:6a1467fb-c301-4363-bfd1-f5fe3b0d507b.
- 01GQPCKQQEM8577KV3VPYJSD69 sourceOrganization urn:uuid:a458cd0b-1f98-4f0c-b832-9d91a3b9da92.
- 01GQPCKQQEM8577KV3VPYJSD69 type A1.