First-pass extracted concept

Glycine max CIB1-LIKE10

Candidate: toolkit item1 source documents7 linked claims
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Aliases

GmCIL10

Evidence Snippets

Here, we describe the isolation and characterization of a CIB1 homolog gene, Glycine max CIB1-LIKE10 (GmCIL10), from soybean genome.
Evidence 1Source 1DOIprovenance

Supporting Sources

Linked Claims

Claim 1conservationsupports2003Source 1DOI

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
Claim 2expression patternsupports2003Source 1DOI

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
Claim 3expression variationsupports2003Source 1DOI

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
Claim 4functional effectsupports2003Source 1DOI

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
Claim 5gene characterizationsupports2003Source 1DOI

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.
Claim 6photoperiod dependencesupports2003Source 1DOI

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
Claim 7subcellular localizationsupports2003Source 1DOI

GmCIL10 is a nuclear protein.

Quoted textsource-backed
GmCIL10 was evident to be a nuclei protein