CFinderM000177's details annotation
1.Tissue preferential analysis
root  culm  leaf  shoot  sheath  rhizome  bud  panicle  
     
2.Stress differential analysis
     
     

Protein:Yellow color--query protein     Green color--interaction proteins.
Interaction line:
Pink--proteins own interaction and positive co-expression relationship with target protein     Blue--proteins own interaction and negative co-expression relationship with target protein     Orange--proteins own interaction and protein-protein relationship with target protein
This network produced by cytoscapeweb

1.Module annotation (GSEA enrichment result)

Function AnnotationFDRGene Ontolog
microtubule_severing0.003936515GO:0051013
katanin_complex0.003936515GO:0008352
microtubule-based movement,0.025697309GO:0007018
microtubule associated complex,0.027083322GO:0005875
microtubule binding,0.043667344GO:0008017

2.Module member annotation

Gene IDAnnotationArabidopsis ortholog (Blast e-value)
PH01000253G0540-- (-)
PH01000649G00802-oxoglutarate (2OG) and Fe(II)-dependent oxygenase superfamily proteinAT3G63290 (5.00E-76)
PH01001523G0630ARG1-like 1AT1G24120 (1.00E-139)
PH01002245G0100kinesin 5AT4G05190 (0.00E+00)
PH01003560G0120Transducin/WD40 repeat-like superfamily proteinAT5G08390 (0.00E+00)
PH01004534G0130-- (-)

3.Direct connection functional modules

Module IDFunction AnnotationOverlap condition
CFinderM000446microtubule associated complex,
microtubule-based movement,
microtubule motor activity,
katanin_complex
microtubule_severing
microtubule binding,
serine-type peptidase activity,
details
CFinderM000899glucose-6-phosphate dehydrogenase activity,
glucose metabolic process,
galactosyltransferase activity,
NADP binding,
Glutathione_metabolism
Pentose_phosphate_pathway
Glycine,_serine_and_threonine_metabolism
Phenylalanine,_tyrosine_and_tryptophan_biosynthesis
Glycosaminoglycan_biosynthesis_-_chondroitin_sulfate_/_dermatan_sulfate
Glycosaminoglycan_biosynthesis_-_heparan_sulfate_/_heparin
protein glycosylation,
phosphoserine phosphatase activity,
hydrolase activity, acting on carbon-nitrogen (but not peptide) bonds, in linear amides,
chorismate mutase activity,
chorismate metabolic process,
details

4.Expression profilings