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1
Circadian clock-regulated expression of phytochrome and cryptochrome genes in Arabidopsis.
Plant Physiol. 2001 Dec;127(4):1607-16. doi: 10.1104/pp.010467.
2
Cryptochromes are required for phytochrome signaling to the circadian clock but not for rhythmicity.
Plant Cell. 2000 Dec;12(12):2499-2510. doi: 10.1105/tpc.12.12.2499.
3
Phytochromes and cryptochromes in the entrainment of the Arabidopsis circadian clock.
Science. 1998 Nov 20;282(5393):1488-90. doi: 10.1126/science.282.5393.1488.
4
Functional interaction of phytochrome B and cryptochrome 2.
Nature. 2000 Nov 9;408(6809):207-11. doi: 10.1038/35041583.
6
Resetting of the circadian clock by phytochromes and cryptochromes in Arabidopsis.
J Biol Rhythms. 2001 Dec;16(6):523-30. doi: 10.1177/074873001129002213.
7
A quadruple photoreceptor mutant still keeps track of time.
Curr Biol. 2000 Aug 24;10(16):1013-5. doi: 10.1016/s0960-9822(00)00651-5.
9
Photoreceptors in Arabidopsis thaliana: light perception, signal transduction and entrainment of the endogenous clock.
Planta. 2002 Nov;216(1):1-16. doi: 10.1007/s00425-002-0831-4. Epub 2002 Nov 12.
10
An Arabidopsis circadian clock component interacts with both CRY1 and phyB.
Nature. 2001 Mar 22;410(6827):487-90. doi: 10.1038/35068589.

引用本文的文献

2
Genome-wide identification and expression analysis of phytochrome gene family in Aikang58 wheat ( L.).
Front Plant Sci. 2025 Jan 21;15:1520457. doi: 10.3389/fpls.2024.1520457. eCollection 2024.
3
Circadian- and Light-Driven Rhythmicity of Interconnected Gene Networks in Olive Tree.
Int J Mol Sci. 2025 Jan 3;26(1):361. doi: 10.3390/ijms26010361.
4
Decoding the plant clock: a review of mathematical models for the circadian regulatory network.
Plant Mol Biol. 2024 Aug 29;114(5):93. doi: 10.1007/s11103-024-01493-2.
5
Unlocking Nature's Rhythms: Insights into Secondary Metabolite Modulation by the Circadian Clock.
Int J Mol Sci. 2024 Jul 3;25(13):7308. doi: 10.3390/ijms25137308.
8
The blue light signal transduction module FaCRY1-FaCOP1-FaHY5 regulates anthocyanin accumulation in cultivated strawberry.
Front Plant Sci. 2023 Jun 9;14:1144273. doi: 10.3389/fpls.2023.1144273. eCollection 2023.
9
Shade-induced lncRNA PUAR promotes shade response by repressing PHYA expression.
EMBO Rep. 2023 May 4;24(5):e56105. doi: 10.15252/embr.202256105. Epub 2023 Mar 27.
10
Genetic analysis of grapevine root system architecture and loci associated gene networks.
Front Plant Sci. 2023 Feb 2;13:1083374. doi: 10.3389/fpls.2022.1083374. eCollection 2022.

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Multiple DNA-Protein Complexes at a Circadian-Regulated Promoter Element.
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The Tissue-Specific Expression of a Tobacco Phytochrome B Gene.
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An Arabidopsis circadian clock component interacts with both CRY1 and phyB.
Nature. 2001 Mar 22;410(6827):487-90. doi: 10.1038/35068589.
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Microarray analysis of diurnal and circadian-regulated genes in Arabidopsis.
Plant Cell. 2001 Jan;13(1):113-23. doi: 10.1105/tpc.13.1.113.
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Circadian regulation of the light input pathway in Neurospora crassa.
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Cryptochromes are required for phytochrome signaling to the circadian clock but not for rhythmicity.
Plant Cell. 2000 Dec;12(12):2499-2510. doi: 10.1105/tpc.12.12.2499.
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The ELF3 zeitnehmer regulates light signalling to the circadian clock.
Nature. 2000 Dec 7;408(6813):716-20. doi: 10.1038/35047079.
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Orchestrated transcription of key pathways in Arabidopsis by the circadian clock.
Science. 2000 Dec 15;290(5499):2110-3. doi: 10.1126/science.290.5499.2110.
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Functional interaction of phytochrome B and cryptochrome 2.
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