WUSCHEL-RELATED HOMEOBOX 13 suppresses de novo shoot regeneration via cell fate control of pluripotent callus.


Journal

Science advances
ISSN: 2375-2548
Titre abrégé: Sci Adv
Pays: United States
ID NLM: 101653440

Informations de publication

Date de publication:
07 07 2023
Historique:
medline: 10 7 2023
pubmed: 7 7 2023
entrez: 7 7 2023
Statut: ppublish

Résumé

Plants can regenerate their bodies via de novo establishment of shoot apical meristems (SAMs) from pluripotent callus. Only a small fraction of callus cells is eventually specified into SAMs but the molecular mechanisms underlying fate specification remain obscure. The expression of WUSCHEL (WUS) is an early hallmark of SAM fate acquisition. Here, we show that a WUS paralog, WUSCHEL-RELATED HOMEOBOX 13 (WOX13), negatively regulates SAM formation from callus in

Identifiants

pubmed: 37418524
doi: 10.1126/sciadv.adg6983
pmc: PMC10328406
doi:

Substances chimiques

Arabidopsis Proteins 0
Homeodomain Proteins 0
WUSCHEL protein, Arabidopsis 0
WOX13 protein, Arabidopsis 0

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

eadg6983

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Auteurs

Nao Ogura (N)

Division of Biological Sciences, Graduate School of Science and Technology, Nara Institute of Science and Technology, 8916-5, Takayama-cho, Ikoma, Nara 630-0192, Japan.
Department of Biology, Faculty of Science, Niigata University, Niigata, Niigata 950-2181, Japan.

Yohei Sasagawa (Y)

Department of Functional Genome Informatics, Division of Medical Genomics, Medical Research Institute, Tokyo Medical and Dental University, Bunkyo, Tokyo, Japan.
RIKEN Center for Biosystems Dynamics Research, Wako, Saitama 351-0198, Japan.

Tasuku Ito (T)

Department of Biology, Faculty of Science, Niigata University, Niigata, Niigata 950-2181, Japan.
Institute of Science and Technology Austria, Am Campus 1, 3400 Klosterneuburg, Austria.

Toshiaki Tameshige (T)

Division of Biological Sciences, Graduate School of Science and Technology, Nara Institute of Science and Technology, 8916-5, Takayama-cho, Ikoma, Nara 630-0192, Japan.
Kihara Institute for Biological Research, Yokohama City University, 641-12 Maioka, Yokohama 244-0813, Japan.

Satomi Kawai (S)

Department of Biology, Faculty of Science, Niigata University, Niigata, Niigata 950-2181, Japan.

Masaki Sano (M)

Department of Biology, Faculty of Science, Niigata University, Niigata, Niigata 950-2181, Japan.

Yuki Doll (Y)

Division of Biological Sciences, Graduate School of Science and Technology, Nara Institute of Science and Technology, 8916-5, Takayama-cho, Ikoma, Nara 630-0192, Japan.

Akira Iwase (A)

RIKEN Center for Sustainable Resource Science, Yokohama, Kanagawa 230-0045, Japan.

Ayako Kawamura (A)

RIKEN Center for Sustainable Resource Science, Yokohama, Kanagawa 230-0045, Japan.

Takamasa Suzuki (T)

Department of Biological Chemistry, College of Biosciences and Biotechnology, Chubu University, Kasugai, Aichi 487-8501, Japan.

Itoshi Nikaido (I)

Department of Functional Genome Informatics, Division of Medical Genomics, Medical Research Institute, Tokyo Medical and Dental University, Bunkyo, Tokyo, Japan.
RIKEN Center for Biosystems Dynamics Research, Wako, Saitama 351-0198, Japan.

Keiko Sugimoto (K)

RIKEN Center for Sustainable Resource Science, Yokohama, Kanagawa 230-0045, Japan.
Department of Biological Sciences, The University of Tokyo, Bunkyo-ku, Tokyo 119-0033, Japan.

Momoko Ikeuchi (M)

Division of Biological Sciences, Graduate School of Science and Technology, Nara Institute of Science and Technology, 8916-5, Takayama-cho, Ikoma, Nara 630-0192, Japan.
Department of Biology, Faculty of Science, Niigata University, Niigata, Niigata 950-2181, Japan.
RIKEN Center for Sustainable Resource Science, Yokohama, Kanagawa 230-0045, Japan.

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