Here, we describe the isolation and characterization of a CIB1 homolog gene, Glycine max CIB1-LIKE10 (GmCIL10), from soybean genome.
First-pass extracted concept
Glycine max CIB1-LIKE10
Candidate: toolkit item1 source documents7 linked claims
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Aliases
GmCIL10
Evidence Snippets
Supporting Sources
Linked Claims
CIB-dependent regulation of flowering time is evolutionarily conserved across different plant species.
Quoted textsource-backed
implying that CIBs dependent regulation of flowering time is an evolutionarily conserved mechanism in different plant species
GmCIL10 mRNA in soybean unifoliate leaves shows a diurnal rhythm under both long-day and short-day photoperiods, but circadian oscillation only under long days.
Quoted textsource-backed
The mRNA expression of GmCIL10 in the unifoliate leaves shows a diunal rhythm in both long day (LD) and short day (SD) photoperiod, but it only oscillates with a circadian rhythm when the soybean is grown under LDs
GmCIL10 mRNA expression varies across tissues or organs and is influenced by developmental stage.
Quoted textsource-backed
its mRNA expression varies in different tissue or organs, influenced by the develpomental stage
Ectopic expression of GmCIL10 in transgenic Arabidopsis accelerates flowering under both long-day and short-day conditions.
Quoted textsource-backed
ectopically expression of GmCIL10 in transgenic Arabidopsis accelerates flowering under both LDs and SDs
GmCIL10 is a CIB1 homolog gene isolated and characterized from soybean.
Quoted textsource-backed
Here, we describe the isolation and characterization of a CIB1 homolog gene, Glycine max CIB1-LIKE10 (GmCIL10), from soybean genome.
Clock regulation of GmCIL10 transcription is long-day photoperiod-dependent.
Quoted textsource-backed
indicating that the clock regulation of GmCIL10 transcription is LD photoperiod-dependent
GmCIL10 is a nuclear protein.
Quoted textsource-backed
GmCIL10 was evident to be a nuclei protein