Gene: CSS0018995

General Information

Structural Information

  • Species Camellia sinensis var. sinensis
  • Gene Identifier CSS0018995
  • Transcript Identifier CSS0018995.1
  • Gene Type Coding gene
  • Location Chr6 : 13715174-13718077 : positive

Gene Family Information

  • ID HOM05D000001
  • #Genes/#Species 35287/100
  • Phylogenetic origin

Gene Duplication Information

Labels

Identifiers

  • tid CSS0018995.1

Descriptions

  • Description RNase NE [Nicotiana alata]
  • Loading (ortholog descriptions from ath)...

Functional Annotation

Biological Process

GO termEvidence(s)Provider(s)DescriptionSource(s)
GO:0009718
ISO
PLAZA Integrative Orthologyanthocyanin-containing compound biosynthetic process AT2G02990
GO:0010150
ISO
PLAZA Integrative Orthologyleaf senescence Solyc05g007940.3
GO:0060866
ISO
PLAZA Integrative Orthologyleaf abscission Solyc05g007940.3
GO:0009611
ISO
PLAZA Integrative Orthologyresponse to wounding AT2G02990
GO:0007568
ISO
PLAZA Integrative Orthologyaging AT2G02990
GO:0016036
ISO
PLAZA Integrative Orthologycellular response to phosphate starvation AT2G02990
GO:0009867
ISO
PLAZA Integrative Orthologyjasmonic acid mediated signaling pathway AT2G02990

Molecular Function

GO termEvidence(s)Provider(s)DescriptionSource(s)
GO:0003723
IEA
InterProRNA binding
GO:0033897
IEA
InterProribonuclease T2 activity
GO:0005515
ISO
PLAZA Homology (enrichment)protein binding HOM05D000001
GO:0004540
ISO
PLAZA Integrative Orthologyribonuclease activity AT2G02990

Cellular Component

GO termEvidence(s)Provider(s)DescriptionSource(s)
GO:0005576
ISO
PLAZA Integrative Orthologyextracellular region AT2G02990
GO:0005886
ISO
PLAZA Integrative Orthologyplasma membrane AT2G02990

Color Legend

Experimental Evidence
Computational Reviewed Evidence
Electronic Evidence
GO Sources: Primary Orthology Homology
Show redundant parents:
InterPro Description
IPR036430 Ribonuclease T2-like superfamily
IPR001568 Ribonuclease T2-like
IPR033697 Ribonuclease T2, eukaryotic
Mapman id Description
16.5.11.1 RNA processing.RNA modification.tRNA-derived fragment biogenesis.T2-type RNase (RNS)