Matches in Ghent University Academic Bibliography for { <https://biblio.ugent.be/publication/01GS7XQ8D8RZ3J6ZFRSMXVDVT1> ?p ?o. }
Showing items 1 to 31 of
31
with 100 items per page.
- 01GS7XQ8D8RZ3J6ZFRSMXVDVT1 classification A1.
- 01GS7XQ8D8RZ3J6ZFRSMXVDVT1 date "2023".
- 01GS7XQ8D8RZ3J6ZFRSMXVDVT1 language "eng".
- 01GS7XQ8D8RZ3J6ZFRSMXVDVT1 type journalArticle.
- 01GS7XQ8D8RZ3J6ZFRSMXVDVT1 hasPart 01GS7XY64GR874B91SCAHCXEWB.pdf.
- 01GS7XQ8D8RZ3J6ZFRSMXVDVT1 hasPart 01GS7Y0GNHMQ5J7AKQR1XA3YA8.pdf.
- 01GS7XQ8D8RZ3J6ZFRSMXVDVT1 hasPart 01GZDTHN1XMANS7YGJ8DZPB0TY.pdf.
- 01GS7XQ8D8RZ3J6ZFRSMXVDVT1 subject "Biology and Life Sciences".
- 01GS7XQ8D8RZ3J6ZFRSMXVDVT1 doi "10.1093/plcell/koad028".
- 01GS7XQ8D8RZ3J6ZFRSMXVDVT1 issn "1040-4651".
- 01GS7XQ8D8RZ3J6ZFRSMXVDVT1 issn "1532-298X".
- 01GS7XQ8D8RZ3J6ZFRSMXVDVT1 issue "5".
- 01GS7XQ8D8RZ3J6ZFRSMXVDVT1 volume "35".
- 01GS7XQ8D8RZ3J6ZFRSMXVDVT1 abstract "Plant roots possess remarkable regenerative potential owing to their ability to replenish damaged or lost stem cells. ETHYLENE RESPONSE FACTOR 115 (ERF115), one of the key molecular elements linked to this potential, plays a predominant role in the activation of regenerative cell divisions. However, the downstream operating molecular machinery driving wound-activated cell division is largely unknown. Here, we biochemically and genetically identified the GRAS-domain transcription factor SCARECROW-LIKE 5 (SCL5) as an interaction partner of ERF115 in Arabidopsis thaliana. Although non-essential under control growth conditions, SCL5 acts redundantly with the related PHYTOCHROME A SIGNAL TRANSDUCTION 1 (PAT1) and SCL21 transcription factors to activate the expression of the DNA-BINDING ONE FINGER 3.4 (DOF3.4) transcription factor gene. DOF3.4 expression is wound-inducible in an ERF115-dependent manner, and in turn activates D3-type cyclin expression. Accordingly, ectopic DOF3.4 expression drives periclinal cell division, while its downstream D3-type cyclins are essential for the regeneration of a damaged root. Our data highlight the importance and redundant roles of the SCL5, SCL21 and PAT1 transcription factors in wound-activated regeneration processes and pinpoint DOF3.4 as a key downstream element driving regenerative cell division.".
- 01GS7XQ8D8RZ3J6ZFRSMXVDVT1 author 066A1CF4-54B7-11E4-B89F-D42BB5D1D7B1.
- 01GS7XQ8D8RZ3J6ZFRSMXVDVT1 author 11989B5C-F0EE-11E1-A9DE-61C894A0A6B4.
- 01GS7XQ8D8RZ3J6ZFRSMXVDVT1 author AF449894-5CBE-11E5-B64E-275DB5D1D7B1.
- 01GS7XQ8D8RZ3J6ZFRSMXVDVT1 author DC5A204C-B83D-11E7-A19C-8FBCAD28A064.
- 01GS7XQ8D8RZ3J6ZFRSMXVDVT1 author F49A569E-F0ED-11E1-A9DE-61C894A0A6B4.
- 01GS7XQ8D8RZ3J6ZFRSMXVDVT1 author F4C04C64-F0ED-11E1-A9DE-61C894A0A6B4.
- 01GS7XQ8D8RZ3J6ZFRSMXVDVT1 author F70470AE-F0ED-11E1-A9DE-61C894A0A6B4.
- 01GS7XQ8D8RZ3J6ZFRSMXVDVT1 author F9EFDA88-F0ED-11E1-A9DE-61C894A0A6B4.
- 01GS7XQ8D8RZ3J6ZFRSMXVDVT1 dateCreated "2023-02-14T12:17:19Z".
- 01GS7XQ8D8RZ3J6ZFRSMXVDVT1 dateModified "2024-12-12T17:49:08Z".
- 01GS7XQ8D8RZ3J6ZFRSMXVDVT1 editor urn:uuid:5c0c3f5f-28d0-454f-bb55-aa660a3e92c7.
- 01GS7XQ8D8RZ3J6ZFRSMXVDVT1 name "PAT1-type GRAS-domain proteins control regeneration by activating DOF3.4 to drive cell proliferation in Arabidopsis roots".
- 01GS7XQ8D8RZ3J6ZFRSMXVDVT1 pagination urn:uuid:e8338c92-27b7-400f-95fb-7aa3a4e22436.
- 01GS7XQ8D8RZ3J6ZFRSMXVDVT1 sameAs LU-01GS7XQ8D8RZ3J6ZFRSMXVDVT1.
- 01GS7XQ8D8RZ3J6ZFRSMXVDVT1 sourceOrganization urn:uuid:2a09d83b-9be6-4dc7-8444-d4d7d9c66e34.
- 01GS7XQ8D8RZ3J6ZFRSMXVDVT1 sourceOrganization urn:uuid:3830c4ff-e9e0-4a24-b602-6a230fb3b1cc.
- 01GS7XQ8D8RZ3J6ZFRSMXVDVT1 type A1.