Complex epistatic interactions between ELF3, PRR9, and PRR7 regulates the circadian clock and plant physiology

Author:

Yuan Li1ORCID,Avello Paula23,Zhu Zihao4ORCID,Lock Sarah C L5ORCID,McCarthy Kayla5,Redmond Ethan J5,Davis Amanda M5,Song Yang1ORCID,Ezer Daphne5ORCID,Pitchford Jonathan W25,Quint Marcel4ORCID,Xie Qiguang1ORCID,Xu Xiaodong1ORCID,Davis Seth J15ORCID,Ronald James56ORCID

Affiliation:

1. State Key Laboratory of Crop Stress Biology, School of Life Sciences, Henan University , Kaifeng 475004 , China

2. Department of Mathematics, University of York , Heslington, York YO10 5DD, UK

3. School of Biology, Faculty of Biological Sciences, University of Leeds , Leeds LS2 9JT, UK

4. Institute of Agricultural and Nutritional Sciences, Martin Luther University Halle-Wittenberg , 06108 Halle (Saale) , Germany

5. Department of Biology, University of York , Heslington, York YO10 5DD, UK

6. School of Molecular Biosciences, College of Medical, Veterinary and Life Sciences, University of Glasgow , Glasgow G12 8QQ, UK

Abstract

Abstract Circadian clocks are endogenous timekeeping mechanisms that coordinate internal physiological responses with the external environment. EARLY FLOWERING3 (ELF3), PSEUDO RESPONSE REGULATOR (PRR9), and PRR7 are essential components of the plant circadian clock and facilitate entrainment of the clock to internal and external stimuli. Previous studies have highlighted a critical role for ELF3 in repressing the expression of PRR9 and PRR7. However, the functional significance of activity in regulating circadian clock dynamics and plant development is unknown. To explore this regulatory dynamic further, we firstly employed mathematical modelling to simulate the effect of the prr9/prr7 mutation on the elf3 circadian phenotype. These simulations suggested that simultaneous mutations in prr9/prr7 could rescue the elf3 circadian arrythmia. Following these simulations, we generated all Arabidopsis elf3/prr9/prr7 mutant combinations and investigated their circadian and developmental phenotypes. Although these assays could not replicate the results from the mathematical modelling, our results have revealed a complex epistatic relationship between ELF3 and PRR9/7 in regulating different aspects of plant development. ELF3 was essential for hypocotyl development under ambient and warm temperatures, while PRR9 was critical for root thermomorphogenesis. Finally, mutations in prr9 and prr7 rescued the photoperiod insensitive flowering phenotype of the elf3 mutant. Together, our results highlight the importance of investigating the genetic relationship amongst plant circadian genes.

Publisher

Oxford University Press (OUP)

Subject

Genetics

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