Arabidopsis thaliana PRR7 Provides Circadian Input to the CCA1 Promoter in Shoots but not Roots

被引:3
作者
Nimmo, Hugh G. [1 ]
Laird, Janet [1 ]
机构
[1] Univ Glasgow, Inst Mol Cell & Syst Biol, Glasgow, Lanark, Scotland
来源
FRONTIERS IN PLANT SCIENCE | 2021年 / 12卷
基金
英国生物技术与生命科学研究理事会;
关键词
Arabidopsis; circadian; light dark cycles; luciferase imaging; PRR7; PSEUDO-RESPONSE REGULATORS; EVENING COMPLEX; CLOCK; FITNESS; SYSTEM;
D O I
10.3389/fpls.2021.750367
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
The core of the plant circadian clock involves multiple interlocking gene expression loops and post-translational controls along with inputs from light and metabolism. The complexity of the interactions is such that few specific functions can be ascribed to single components. In previous work, we reported differences in the operation of the clocks in Arabidopsis shoots and roots, including the effects of mutations of key clock components. Here, we have used luciferase imaging to study prr7 mutants expressing CCA1::LUC and GI::LUC markers. In mature shoots expressing CCA1::LUC, loss of PRR7 radically altered behaviour in light:dark cycles and caused loss of rhythmicity in constant light but had little effect on roots. In contrast, in mature plants expressing GI::LUC, loss of PRR7 had little effect in light:dark cycles but in constant light increased the circadian period in shoots and reduced it in roots. We conclude that most or all of the circadian input to the CCA1 promoter in shoots is mediated by PRR7 and that loss of PRR7 has organ-specific effects. The results emphasise the differences in operation of the shoot and root clocks, and the importance of studying clock mutants in both light:dark cycles and constant light.</p>
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页数:8
相关论文
共 38 条
[1]   Organ specificity in the plant circadian system is explained by different light inputs to the shoot and root clocks [J].
Bordage, Simon ;
Sullivan, Stuart ;
Laird, Janet ;
Millar, Andrew J. ;
Nimmo, Hugh G. .
NEW PHYTOLOGIST, 2016, 212 (01) :136-149
[2]   Global transcriptome analysis reveals circadian regulation of key pathways in plant growth and development [J].
Covington, Michael F. ;
Maloof, Julin N. ;
Straume, Marty ;
Kay, Steve A. ;
Harmer, Stacey L. .
GENOME BIOLOGY, 2008, 9 (08)
[3]  
de los Reyes P, 2020, ATTRACTOR ARABIDOPSI, DOI 10.5381/zenodo.3780022
[4]   Plant circadian clocks increase photosynthesis, growth, survival, and competitive advantage [J].
Dodd, AN ;
Salathia, N ;
Hall, A ;
Kévei, E ;
Tóth, R ;
Nagy, F ;
Hibberd, JM ;
Millar, AJ ;
Webb, AAR .
SCIENCE, 2005, 309 (5734) :630-633
[5]   Tissue-specific circadian clocks in plants [J].
Endo, Motomu .
CURRENT OPINION IN PLANT BIOLOGY, 2016, 29 :44-49
[6]   Overlapping and distinct roles of PRR7 and PRR9 in the Arabidopsis circadian clock [J].
Farré, EM ;
Harmer, SL ;
Harmon, FG ;
Yanovsky, MJ ;
Kay, SA .
CURRENT BIOLOGY, 2005, 15 (01) :47-54
[7]   The Circadian Clock Sets the Time of DNA Replication Licensing to Regulate Growth in Arabidopsis [J].
Fung-Uceda, Jorge ;
Lee, Kyounghee ;
Seo, Pil Joon ;
Polyn, Stefanie ;
De Veylder, Lieven ;
Mas, Paloma .
DEVELOPMENTAL CELL, 2018, 45 (01) :101-+
[8]  
Gould PD, 2018, ELIFE, V7, DOI [10.7554/eLife.31700, 10.7554/elife.31700]
[9]   Circadian rhythms confer a higher level of fitness to Arabidopsis plants [J].
Green, RM ;
Tingay, S ;
Wang, ZY ;
Tobin, EM .
PLANT PHYSIOLOGY, 2002, 129 (02) :576-584
[10]   Integrating circadian dynamics with physiological processes in plants [J].
Greenham, Kathleen ;
McClung, C. Robertson .
NATURE REVIEWS GENETICS, 2015, 16 (10) :598-610