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Compensatory Mutations in GI and ZTL May Modulate Temperature Compensation in the Circadian Clock
Kim, Tae-Sung; Wang, Lei2; Kim, Yeon Jeong; Somers, David E.
2020
发表期刊PLANT PHYSIOLOGY
ISSN0032-0889
卷号182期号:2页码:1130-1141
摘要Circadian systems share the three properties of entrainment, free-running period, and temperature compensation (TC). TC ensures nearly the same period over a broad range of physiologically relevant temperatures; however, the mechanisms behind TC remain poorly understood. Here, we identify single point mutations in two key elements of the Arabidopsis circadian clock, GIGANTEA (GI) and ZEITLUPE (ZTL), which likely act as compensatory substitutions to establish a remarkably constant free-running period over a wide range of temperatures. Using near-isogenic lines generated from the introgression of the Cape Verde Islands (Cvi) alleles of GI and ZTL into the Landsberg erecta (Ler) background, we show how longer periods in the Cvi background at higher temperatures correlate with a difference in strength of the GI/ZTL interaction. Pairwise interaction testing of all GI/ZTL allelic combinations shows similar affinities for isogenic alleles at 22 degrees C, but very poor interaction between GI (Cvi) and ZTL (Cvi) at higher temperature. In vivo, this would result in lower ZTL levels at high temperatures leading to longer periods in the Cvi background. Mismatched allelic combinations result in extremely strong or weak GI/ZTL interactions, indicating how the corresponding natural variants likely became fixed through epistatic selection. Additionally, molecular characterization of GI (Cvi) reveals a novel functional motif that can modulate the GI/ZTL interaction as well as nucleocytoplasmic partitioning. Taken together, these results identify a plausible temperature-dependent molecular mechanism, which contributes to the robustness of TC through natural variation in GI and ZTL alleles found on the Cape Verde Islands.
学科领域Plant Sciences
DOI10.1104/pp.19.01120
收录类别SCI
语种英语
WOS关键词ARABIDOPSIS-THALIANA ; POSTTRANSLATIONAL REGULATION ; EPISTATIC INTERACTIONS ; MOLECULAR-MECHANISMS ; PHOSPHORYLATION ; ZEITLUPE ; GIGANTEA ; RESPONSES ; GENES ; LOOP
WOS研究方向Plant Sciences
WOS记录号WOS:000513631100034
出版者AMER SOC PLANT BIOLOGISTS
文献子类Article
出版地ROCKVILLE
EISSN1532-2548
资助机构National Institutes of HealthUnited States Department of Health & Human ServicesNational Institutes of Health (NIH) - USA [R01GM093285] ; Next-Generation BioGreen21 ProgramRural Development Administration (RDA) [PJ01327305] ; Rural Development Administration, Republic of KoreaRural Development Administration (RDA) ; Korea Institute of Planning and Evaluation for Technology in Food, Agriculture, Forestry and Fisheries through Export Promotion Technology Development Program, Ministry of Agriculture, Food and Rural Affairs [117033-03-1-HD030]
作者邮箱somers.24@osu.edu
引用统计
被引频次:16[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符http://ir.ibcas.ac.cn/handle/2S10CLM1/21909
专题中科院植物分子生理学重点实验室
作者单位1.[Kim, Tae-Sung; Wang, Lei; Kim, Yeon Jeong; Somers, David E.] Ohio State Univ, Dept Mol Genet, Columbus, OH 43210 USA
2.Korea Natl Open Univ, Dept Agr Sci, Seoul 03087, South Korea
3.Chinese Acad Sci, Inst Bot, Key Lab Plant Mol Physiol, Beijing 100049, Peoples R China
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GB/T 7714
Kim, Tae-Sung,Wang, Lei,Kim, Yeon Jeong,et al. Compensatory Mutations in GI and ZTL May Modulate Temperature Compensation in the Circadian Clock[J]. PLANT PHYSIOLOGY,2020,182(2):1130-1141.
APA Kim, Tae-Sung,Wang, Lei,Kim, Yeon Jeong,&Somers, David E..(2020).Compensatory Mutations in GI and ZTL May Modulate Temperature Compensation in the Circadian Clock.PLANT PHYSIOLOGY,182(2),1130-1141.
MLA Kim, Tae-Sung,et al."Compensatory Mutations in GI and ZTL May Modulate Temperature Compensation in the Circadian Clock".PLANT PHYSIOLOGY 182.2(2020):1130-1141.
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