A Small Compound, HYGIC, Promotes Hypocotyl Growth Through Ectopic Ethylene Response

Author:

Murao Mizuki12,Kato Rika23,Kusano Shuhei3,Hisamatsu Rina45,Endo Hitoshi5,Kawabata Yasuki12,Kimura Seisuke67ORCID,Sato Ayato5,Mori Hitoshi89ORCID,Itami Kenichiro25,Torii Keiko U510ORCID,Hagihara Shinya35,Uchida Naoyuki125ORCID

Affiliation:

1. Center for Gene Research, Nagoya University , Furo-cho, Chikusa-ku, Nagoya, 464-8602 Japan

2. Graduate School of Science, Nagoya University , Furo-cho, Chikusa-ku, Nagoya, 464-8602 Japan

3. Center for Sustainable Resource Science , 2-1 Hirosawa, Wako, Saitama, 351-0198 Japan

4. School of Science, Nagoya University , Furo-cho, Chikusa-ku, Nagoya, 464-8602 Japan

5. Institute of Transformative Bio-Molecules, Nagoya University , Furo-cho, Chikusa-ku, Nagoya, 464-8601 Japan

6. Faculty of Life Sciences, Kyoto Sangyo University , Motoyama, Kamigamo, Kita-ku, Kyoto, 603-8555 Japan

7. Center for Plant Sciences, Kyoto Sangyo University , Motoyama, Kamigamo, Kita-ku, Kyoto, 603-8555, Japan

8. Graduate School of Bioagricultural Sciences, Nagoya University , Furo-cho, Chikusa-ku, Nagoya, 464-8601 Japan

9. Institute for Glyco-core Research, Nagoya University , Furo-cho, Chikusa-ku, Nagoya, 464-8601 Japan

10. Department of Molecular Biosciences, Howard Hughes Medical Institute, The University of Texas at Austin , 2506 Speedway, Austin, TX 78712, USA

Abstract

Abstract Plant seedlings adjust the growth of the hypocotyl in response to surrounding environmental changes. Genetic studies have revealed key players and pathways in hypocotyl growth, such as phytohormones and light signaling. However, because of genetic redundancy in the genome, it is expected that not-yet-revealed mechanisms can be elucidated through approaches different from genetic ones. Here, we identified a small compound, HYGIC (HG), that simultaneously induces hypocotyl elongation and thickening, accompanied by increased nuclear size and enlargement of cortex cells. HG-induced hypocotyl growth required the ethylene signaling pathway activated by endogenous ethylene, involving CONSTITUTIVE PHOTOMORPHOGENIC 1, ETHYLENE INSENSITIVE 2 (EIN2) and redundant transcription factors for ethylene responses, ETHYLENE INSENSITIVE 3 (EIN3) and EIN3 LIKE 1. By using EBS:GUS, a transcriptional reporter of ethylene responses based on an EIN3-binding-cis-element, we found that HG treatment ectopically activates ethylene responses at the epidermis and cortex of the hypocotyl. RNA-seq and subsequent gene ontology analysis revealed that a significant number of HG-induced genes are related to responses to hypoxia. Indeed, submergence, a representative environment where the hypoxia response is induced in nature, promoted ethylene-signaling-dependent hypocotyl elongation and thickening accompanied by ethylene responses at the epidermis and cortex, which resembled the HG treatment. Collectively, the identification and analysis of HG revealed that ectopic responsiveness to ethylene promotes hypocotyl growth, and this mechanism is activated under submergence.

Funder

JST SPRING Program “Interdisciplinary Frontier Next-Generation Researcher Program of the Tokai Higher Education and Research System (Grant number JPMJSP2125),”

MEXT WISE Program “Graduate Program of Transformative Chem-Bio Research”

KAKENHI from Ministry of Education, Culture, Sports, Science and Technology/Japan Society for the Promotion of Science

Asahi Glass Foundation

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Plant Science,Physiology,General Medicine

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