STRINGSTRING
OJ1734_E02.23 OJ1734_E02.23 Q9LE46_ORYSJ Q9LE46_ORYSJ Q943Q0_ORYSJ Q943Q0_ORYSJ LAC3 LAC3 RCN1 RCN1 OsJ_014458 OsJ_014458 A0A0N7KQU7 A0A0N7KQU7 Q6Z0A5_ORYSJ Q6Z0A5_ORYSJ OsJ_015951 OsJ_015951 OsJ_019849 OsJ_019849 B1267B06.3 B1267B06.3 B9GCL3_ORYSJ B9GCL3_ORYSJ Q0D699_ORYSJ Q0D699_ORYSJ LAC25 LAC25 LAC8 LAC8 Q10N68_ORYSJ Q10N68_ORYSJ LAC24 LAC24 LAC23 LAC23 LAC20 LAC20 B1147B12.21 B1147B12.21 NIP2-1 NIP2-1 LAC19 LAC19 LAC17 LAC17 LAC15 LAC15 LAC18 LAC18 LAC6 LAC6 LAC7 LAC7 NIP2-2 NIP2-2 A0A0P0Y8N9 A0A0P0Y8N9 A0A0P0XYE9 A0A0P0XYE9 A0A0P0WFZ7 A0A0P0WFZ7 A0A0P0VWD5 A0A0P0VWD5 A0A0P0VQE6 A0A0P0VQE6
Nodes:
Network nodes represent proteins
splice isoforms or post-translational modifications are collapsed, i.e. each node represents all the proteins produced by a single, protein-coding gene locus.
Node Color
colored nodes:
query proteins and first shell of interactors
white nodes:
second shell of interactors
Node Content
empty nodes:
proteins of unknown 3D structure
filled nodes:
a 3D structure is known or predicted
Edges:
Edges represent protein-protein associations
associations are meant to be specific and meaningful, i.e. proteins jointly contribute to a shared function; this does not necessarily mean they are physically binding to each other.
Known Interactions
from curated databases
experimentally determined
Predicted Interactions
gene neighborhood
gene fusions
gene co-occurrence
Others
textmining
co-expression
protein homology
Your Input:
OJ1734_E02.23Casparian strip membrane protein 4; Regulates membrane-cell wall junctions and localized cell wall deposition. Required for establishment of the Casparian strip membrane domain (CSD) and the subsequent formation of Casparian strips, a cell wall modification of the root endodermis that determines an apoplastic barrier between the intraorganismal apoplasm and the extraorganismal apoplasm and prevents lateral diffusion (By similarity). (201 aa)
Q9LE46_ORYSJcDNA clone:J023096E14, full insert sequence. (94 aa)
Q943Q0_ORYSJDirigent protein; Dirigent proteins impart stereoselectivity on the phenoxy radical-coupling reaction, yielding optically active lignans from two molecules of coniferyl alcohol in the biosynthesis of lignans, flavonolignans, and alkaloids and thus plays a central role in plant secondary metabolism. (340 aa)
LAC3Laccase-3; Lignin degradation and detoxification of lignin-derived products; Belongs to the multicopper oxidase family. (567 aa)
RCN1ABC transporter G family member 5; Essential transporter for growth and development under abiotic stress. Mediates shoot branching by promoting the outgrowth of lateral shoots. Required for salt tolerance via Na/K homeostasis, at least partly by regulating SKC1/OsHKT1;5. Necessary for hypodermal suberization of roots, which contributes to formation of the apoplastic barrier. Belongs to the ABC transporter superfamily. ABCG family. Eye pigment precursor importer (TC 3.A.1.204) subfamily. (787 aa)
OsJ_014458Casparian strip membrane protein 5; Regulates membrane-cell wall junctions and localized cell wall deposition. Required for establishment of the Casparian strip membrane domain (CSD) and the subsequent formation of Casparian strips, a cell wall modification of the root endodermis that determines an apoplastic barrier between the intraorganismal apoplasm and the extraorganismal apoplasm and prevents lateral diffusion (By similarity). (186 aa)
A0A0N7KQU7Os09g0431300 protein. (445 aa)
Q6Z0A5_ORYSJcDNA clone:J023093J22, full insert sequence. (316 aa)
OsJ_015951Casparian strip membrane protein 1; Regulates membrane-cell wall junctions and localized cell wall deposition. Required for establishment of the Casparian strip membrane domain (CSD) and the subsequent formation of Casparian strips, a cell wall modification of the root endodermis that determines an apoplastic barrier between the intraorganismal apoplasm and the extraorganismal apoplasm and prevents lateral diffusion (By similarity). (224 aa)
OsJ_019849Casparian strip membrane protein 3; Regulates membrane-cell wall junctions and localized cell wall deposition. Required for establishment of the Casparian strip membrane domain (CSD) and the subsequent formation of Casparian strips, a cell wall modification of the root endodermis that determines an apoplastic barrier between the intraorganismal apoplasm and the extraorganismal apoplasm and prevents lateral diffusion (By similarity). (184 aa)
B1267B06.3Casparian strip membrane protein 7; Regulates membrane-cell wall junctions and localized cell wall deposition. Required for establishment of the Casparian strip membrane domain (CSD) and the subsequent formation of Casparian strips, a cell wall modification of the root endodermis that determines an apoplastic barrier between the intraorganismal apoplasm and the extraorganismal apoplasm and prevents lateral diffusion (By similarity). (201 aa)
B9GCL3_ORYSJOs11g0323860 protein. (88 aa)
Q0D699_ORYSJOs07g0498400 protein; Belongs to the protein kinase superfamily. Ser/Thr protein kinase family. (1275 aa)
LAC25Laccase-25; Lignin degradation and detoxification of lignin-derived products; Belongs to the multicopper oxidase family. (577 aa)
LAC8Laccase-8; Lignin degradation and detoxification of lignin-derived products; Belongs to the multicopper oxidase family. (554 aa)
Q10N68_ORYSJDirigent protein; Dirigent proteins impart stereoselectivity on the phenoxy radical-coupling reaction, yielding optically active lignans from two molecules of coniferyl alcohol in the biosynthesis of lignans, flavonolignans, and alkaloids and thus plays a central role in plant secondary metabolism. (318 aa)
LAC24Laccase-24; Lignin degradation and detoxification of lignin-derived products; Belongs to the multicopper oxidase family. (579 aa)
LAC23Laccase-23; Lignin degradation and detoxification of lignin-derived products; Belongs to the multicopper oxidase family. (567 aa)
LAC20Laccase-20; Lignin degradation and detoxification of lignin-derived products; Belongs to the multicopper oxidase family. (580 aa)
B1147B12.21Casparian strip membrane protein 2; Regulates membrane-cell wall junctions and localized cell wall deposition. Required for establishment of the Casparian strip membrane domain (CSD) and the subsequent formation of Casparian strips, a cell wall modification of the root endodermis that determines an apoplastic barrier between the intraorganismal apoplasm and the extraorganismal apoplasm and prevents lateral diffusion (By similarity). (237 aa)
NIP2-1Aquaporin NIP2-1; Silicon influx transporter responsible for silicon transport from the external solution to the root cells. Is coupled with the silicon efflux transporter LSI2 in both exodermal and endodermal root cells for an efficient silicon transport across the cells into the stele. Silicon is beneficial to plant growth and helps plants to overcome abiotic and biotic stresses by preventing lodging (falling over) and increasing resistance to pests and diseases, as well as other stresses. Is coupled with LSI2 transporter in roots for efficient uptake of arsenite, which is further di [...] (298 aa)
LAC19Laccase-19; Lignin degradation and detoxification of lignin-derived products; Belongs to the multicopper oxidase family. (590 aa)
LAC17Putative laccase-17; Lignin degradation and detoxification of lignin-derived products; Belongs to the multicopper oxidase family. (567 aa)
LAC15Laccase-15; Lignin degradation and detoxification of lignin-derived products; Belongs to the multicopper oxidase family. (599 aa)
LAC18Laccase-18; Lignin degradation and detoxification of lignin-derived products; Belongs to the multicopper oxidase family. (595 aa)
LAC6Laccase-6; Lignin degradation and detoxification of lignin-derived products; Belongs to the multicopper oxidase family. (580 aa)
LAC7Laccase-7; Lignin degradation and detoxification of lignin-derived products; Belongs to the multicopper oxidase family. (559 aa)
NIP2-2Aquaporin NIP2-2; Silicon transporter involved in the distribution of silicon in shoots. Is responsible for the transport of silicon from the xylem to the leaf tissues. Silicon is beneficial to plant growth and helps plants to overcome abiotic and biotic stresses by preventing lodging (falling over) and increasing resistance to pests and diseases, as well as other stresses. In the nodes, involved with LSI2 and LSI3 in silicon intervascular transfer, which is required for the preferential distribution of silicon, such as hyperaccumulation of silicon in the husk. (298 aa)
A0A0P0Y8N9Laccase; Lignin degradation and detoxification of lignin-derived products; Belongs to the multicopper oxidase family. (571 aa)
A0A0P0XYE9Os11g0108650 protein. (201 aa)
A0A0P0WFZ7Os04g0666000 protein. (102 aa)
A0A0P0VWD5Os03g0297900 protein. (646 aa)
A0A0P0VQE6Os02g0786400 protein. (436 aa)
Your Current Organism:
Oryza sativa Japonica
NCBI taxonomy Id: 39947
Other names: Japanese rice, Japonica rice, O. sativa Japonica Group, Oryza sativa (japonica cultivar-group), Oryza sativa Japonica Group, Oryza sativa subsp. japonica
Server load: low (22%) [HD]