Basic Information
Gene Structure
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Domain
| Database | EntryID | E-Value | Start | end | InterPro ID | Description |
|---|
Regulation&Interaction
Annotation
Orthologous Group
| Orthologous ID | Species Number | All hits in PereRegDB | Hits of this species | Orthologous Detail |
|---|
Expression Profile
| DataSet | Number of Samples expressed(TPM>1) | Mean | Min | Max | Standard deviation(SD) | Coeffcient variation(CV) |
|---|
Pathway
| GO Term | Description | GO Category |
|---|---|---|
| GO:0003674 | molecular_function | MF |
| GO:0005215 | transporter activity | MF |
| GO:0005216 | monoatomic ion channel activity | MF |
| GO:0005261 | monoatomic cation channel activity | MF |
| GO:0005262 | calcium channel activity | MF |
| GO:0005488 | binding | MF |
| GO:0005515 | protein binding | MF |
| GO:0005575 | cellular_component | CC |
| GO:0005622 | intracellular anatomical structure | CC |
| GO:0005623 | obsolete cell | CC |
| GO:0005634 | nucleus | CC |
| GO:0005635 | nuclear envelope | CC |
| GO:0006810 | transport | BP |
| GO:0006811 | monoatomic ion transport | BP |
| GO:0006812 | monoatomic cation transport | BP |
| GO:0006816 | calcium ion transport | BP |
| GO:0008150 | biological_process | BP |
| GO:0008324 | monoatomic cation transmembrane transporter activity | MF |
| GO:0009877 | nodulation | BP |
| GO:0012505 | endomembrane system | CC |
| GO:0015075 | monoatomic ion transmembrane transporter activity | MF |
| GO:0015085 | calcium ion transmembrane transporter activity | MF |
| GO:0015267 | channel activity | MF |
| GO:0015318 | inorganic molecular entity transmembrane transporter activity | MF |
| GO:0016020 | membrane | CC |
| GO:0022803 | passive transmembrane transporter activity | MF |
| GO:0022838 | channel activity | MF |
| GO:0022857 | transmembrane transporter activity | MF |
| GO:0022890 | inorganic cation transmembrane transporter activity | MF |
| GO:0030001 | metal ion transport | BP |
| GO:0031090 | organelle membrane | CC |
| GO:0031965 | nuclear membrane | CC |
| GO:0031967 | organelle envelope | CC |
| GO:0031975 | envelope | CC |
| GO:0034220 | monoatomic ion transmembrane transport | BP |
| GO:0036377 | arbuscular mycorrhizal association | BP |
| GO:0043226 | organelle | CC |
| GO:0043227 | membrane-bounded organelle | CC |
| GO:0043229 | intracellular organelle | CC |
| GO:0043231 | intracellular membrane-bounded organelle | CC |
| GO:0044325 | transmembrane transporter binding | MF |
| GO:0044403 | biological process involved in symbiotic interaction | BP |
| GO:0044419 | biological process involved in interspecies interaction between organisms | BP |
| GO:0044422 | obsolete organelle part | CC |
| GO:0044424 | obsolete intracellular part | CC |
| GO:0044428 | obsolete nuclear part | CC |
| GO:0044446 | obsolete intracellular organelle part | CC |
| GO:0044464 | obsolete cell part | CC |
| GO:0046873 | metal ion transmembrane transporter activity | MF |
| GO:0051179 | localization | BP |
| GO:0051234 | establishment of localization | BP |
| GO:0051704 | obsolete multi-organism process | BP |
| GO:0055085 | transmembrane transport | BP |
| GO:0070588 | calcium ion transmembrane transport | BP |
| GO:0070838 | metal ion transport | BP |
| GO:0072511 | inorganic cation transmembrane transport | BP |
| GO:0098655 | monoatomic cation transmembrane transport | BP |
| GO:0098660 | inorganic ion transmembrane transport | BP |
| GO:0098662 | inorganic cation transmembrane transport | BP |
| KEGG Term | Name | Description |
|---|---|---|
| map04626 | Plant-pathogen interaction | Plants lack animal-like adaptive immunity mechanisms, and therefore have evolved a specific system with multiple layers against invading pathogens. The primary response includes the perception of pathogens by cell-surface pattern-recognition receptors (PRRs) and is referred to as PAMP-triggered immunity (PTI). Activation of FLS2 and EFR triggers MAPK signaling pathway that activates defense genes for antimictobial compounds. The increase in the cytosolic Ca2+ concentration is also a regulator for production of reactive oxygen species and localized programmed cell death/hypersensitive response. The secondary response is called effector-triggered immunity (ETI). Pathogens can acquire the ability to suppress PTI by directly injecting effector proteins into the plant cell through secretion systems. In addition, pathogens can manipulate plant hormone signaling pathways to evade host immune responses using coronatine toxin. Some plants possess specific intracellular surveillance proteins (R proteins) to monitor the presence of pathogen virulence proteins. This ETI occurs with localized programmed cell death to arrest pathogen growth, resulting in cultivar-specific disease resistance. |

