Diminished Auxin Signaling Triggers Cellular Reprogramming by Inducing a Regeneration Factor in the Liverwort Marchantia polymorpha

Author:

Ishida Sakiko1,Suzuki Hidemasa1ORCID,Iwaki Aya12,Kawamura Shogo1,Yamaoka Shohei1,Kojima Mikiko3ORCID,Takebayashi Yumiko3,Yamaguchi Katsushi4,Shigenobu Shuji4,Sakakibara Hitoshi35ORCID,Kohchi Takayuki1ORCID,Nishihama Ryuichi12ORCID

Affiliation:

1. Graduate School of Biostudies, Kyoto University, Sakyo-ku, Kyoto, 606-8502 Japan

2. Department of Applied Biological Science, Faculty of Science and Technology, Tokyo University of Science, Noda, Chiba, 278-8510 Japan

3. RIKEN Center for Sustainable Resource Science, Tsurumi-ku, Yokohama, 230-0045 Japan

4. Functional Genomics Facility, National Institute for Basic Biology, Okazaki, Aichi, 444-8585 Japan

5. Graduate School of Bioagricultural Sciences, Nagoya University, Chikusa-ku, Nagoya, 464-8601 Japan

Abstract

Abstract Regeneration in land plants is accompanied by the establishment of new stem cells, which often involves reactivation of the cell division potential in differentiated cells. The phytohormone auxin plays pivotal roles in this process. In bryophytes, regeneration is enhanced by the removal of the apex and repressed by exogenously applied auxin, which has long been proposed as a form of apical dominance. However, the molecular basis behind these observations remains unexplored. Here, we demonstrate that in the liverwort Marchantia polymorpha, the level of endogenous auxin is transiently decreased in the cut surface of decapitated explants, and identify by transcriptome analysis a key transcription factor gene, LOW-AUXIN RESPONSIVE (MpLAXR), which is induced upon auxin reduction. Loss of MpLAXR function resulted in delayed cell cycle reactivation, and transient expression of MpLAXR was sufficient to overcome the inhibition of regeneration by exogenously applied auxin. Furthermore, ectopic expression of MpLAXR caused cell proliferation in normally quiescent tissues. Together, these data indicate that decapitation causes a reduction of auxin level at the cut surface, where, in response, MpLAXR is up-regulated to trigger cellular reprogramming. MpLAXR is an ortholog of Arabidopsis ENHANCER OF SHOOT REGENERATION 1/DORNRÖSCHEN, which has dual functions as a shoot regeneration factor and a regulator of axillary meristem initiation, the latter of which requires a low auxin level. Thus, our findings provide insights into stem cell regulation as well as apical dominance establishment in land plants.

Funder

Japan Society for the Promotion of Science

National Institute for Basic Biology

Kyoto University

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Plant Science,Physiology,General Medicine

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