FLOWERING HTH1 is involved in CONSTANS-mediated flowering regulation in Arabidopsis

被引:0
作者
Soon Ae Sim
Su Gyeong Woo
Dae Yeon Hwang
Jin-Hong Kim
Seung Sik Lee
Chae Oh Lim
Jong Chan Hong
Young Hun Song
机构
[1] Gyeongsang National University,Division of Life Science, Applied Life Science (BK21 Plus Program), Plant Molecular Biology and Biotechnology Research Center
[2] Gyeongnam Agricultural Research and Extension Services,Department of Life Sciences
[3] Ajou University,Advanced Radiation Technology Institute
[4] Korea Atomic Energy Research Institute,Department of Radiation Science and Technology
[5] University of Science and Technology,Division of Plant Sciences
[6] University of Missouri,undefined
来源
Applied Biological Chemistry | 2019年 / 62卷
关键词
Flowering time; CONSTANS; Photoperiod; Myb-like helix turn helix transcriptional regulator; Chimeric repressor;
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摘要
Flowering at the right time is essential for maximum reproductive fitness. In Arabidopsis thaliana, the CONSTANS (CO) protein facilitates the transition from the vegetative phase to the reproductive phase under long-day conditions. The formation of heterodimeric complexes between CO and DNA binding domain-containing transcription factors is important for the induction of day length-dependent flowering. Here, we report a myb-like helix turn helix (HTH) transcriptional regulator family protein as a new modulator of floral transition, which we have named FLOWERING HTH1 (FHTH1). We isolated FHTH1 as a CO-interacting protein by a yeast two-hybrid screen using an Arabidopsis transcription factor library. Our analysis showed that FHTH1 presented in the nucleus and the FHTH1-CO complex was formed in the same subcellular location. We also observed the expression of a FHTH1:GUS construct in the leaf vasculature, where CO exists. Transgenic plants overexpressing FHTH1 fused with the plant-specific repression domain SRDX showed a delayed flowering phenotype in long days, resembling the phenotype of the co mutant. Our results suggest that FHTH1 may contribute to CO-mediated photoperiodic flowering regulation.
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