Cytokinin oxidase PpCKX1 plays regulatory roles in development and enhances dehydration and salt tolerance in Physcomitrella patens

Sujin Hyoung, Sung Hyun Cho, Joo Hee Chung, Won Mi So, Mei Hua Cui, Jeong Sheop Shin

    Research output: Contribution to journalArticlepeer-review

    46 Citations (Scopus)

    Abstract

    Key message: PpCKX1 localizes to vacuoles and is dominantly expressed in the stem cells. PpCKX1 regulates developmental changes with increased growth of the rhizoid and enhances dehydration and salt tolerance. Abstract: Cytokinins (CKs) are plant hormones that regulate plant development as well as many physiological processes, such as cell division, leaf senescence, control of shoot/root ratio, and reproductive competence. Cytokinin oxidases/dehydrogenases (CKXs) control CK concentrations by degradation, and thereby influence plant growth and development. In the moss Physcomitrella patens, an evolutionarily early divergent plant, we identified six putative CKXs that, by phylogenetic analysis, form a monophyletic clade. We also observed that ProPpCKX1:GUS is expressed specifically in the stem cells and surrounding cells and that CKX1 localizes to vacuoles, as indicated by Pro35S:PpCKX1-smGFP. Under normal growth conditions, overexpression of PpCKX1 caused many phenotypic changes at different developmental stages, and we suspected that increased growth of the rhizoid could affect those changes. In addition, we present evidence that the PpCKX1-overexpressor plants show enhanced dehydration and salt stress tolerance. Taken together, we suggest that PpCKX1 plays regulatory roles in development and adaptation to abiotic stresses in this evolutionarily early land plant species.

    Original languageEnglish
    Pages (from-to)419-430
    Number of pages12
    JournalPlant Cell Reports
    Volume39
    Issue number3
    DOIs
    Publication statusPublished - 2020 Mar 1

    Bibliographical note

    Funding Information:
    We thank the Korea Basic Science Institute (Seoul) for helping with cytokinin analysis with HPLC-MS/MS. This research was supported by two grants (PJ011065 and PJ01367001) from the Next-Generation BioGreen 21 Program funded by the Rural Development Administration, Republic of Korea. This work was also partially supported by Korea University.

    Funding Information:
    We thank the Korea Basic Science Institute (Seoul) for helping with cytokinin analysis with HPLC-MS/MS. This research was supported by two grants (PJ011065 and PJ01367001) from the Next-Generation BioGreen 21 Program funded by the Rural Development Administration, Republic of Korea. This work was also partially supported by Korea University.

    Publisher Copyright:
    © 2019, Springer-Verlag GmbH Germany, part of Springer Nature.

    Keywords

    • Abiotic stress tolerance
    • Cytokinin oxidase
    • Development
    • Evolution
    • Hormone
    • Physcomitrella patens

    ASJC Scopus subject areas

    • Agronomy and Crop Science
    • Plant Science

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