- Information
- Symbol: ARF8
- MSU: LOC_Os02g41800
- RAPdb: Os02g0628600
- PSP score
- LOC_Os02g41800.1: 0.6182
- LOC_Os02g41800.2: 0.3366
- PLAAC score
- LOC_Os02g41800.1: 0
- LOC_Os02g41800.2: 0
- pLDDT score
- 67.5
- Protein Structure from AlphaFold and UniProt
- Publication
-
Genbank accession number
- Key message
- It was also shown that expression of OsGH3-2, an rice IAA-conjugating enzyme, was positively regulated by ARF8
- MicroRNA167 (miR167) was shown to cleave auxin responsive factor 8 (ARF8) mRNA in cultured rice cells
- When cells grew in auxin-free medium, miR167 level decreased, resulting in an increase in the level of ARF8 mRNA
- This study provides an evidence in which the exogeneous auxin signal is transduced to OsGH3-2 through miR167 and ARF8 in sequence
- This proposed auxin signal transduction pathway, auxin-miR167-ARF8-OsGH3-2, could be, in conjunction with the other microRNA-mediated auxin signals, an important one for responding to exogeneous auxin and for determining the cellular free auxin level which guides appropriate auxin responses
- ‘Evidence of an auxin signal pathway, microRNA167-ARF8-GH3, and its response to exogenous auxin in cultured rice cells’
- Connection
- ARF8, OsGH3-2, ‘Evidence of an auxin signal pathway, microRNA167-ARF8-GH3, and its response to exogenous auxin in cultured rice cells’, It was also shown that expression of OsGH3-2, an rice IAA-conjugating enzyme, was positively regulated by ARF8
- ARF8, OsGH3-2, ‘Evidence of an auxin signal pathway, microRNA167-ARF8-GH3, and its response to exogenous auxin in cultured rice cells’, Delivery of synthesized miR167 into cells led to decrease of both ARF8 mRNA and OsGH3-2 mRNA
- ARF8, OsGH3-2, ‘Evidence of an auxin signal pathway, microRNA167-ARF8-GH3, and its response to exogenous auxin in cultured rice cells’, This study provides an evidence in which the exogeneous auxin signal is transduced to OsGH3-2 through miR167 and ARF8 in sequence
- ARF8, OsGH3-2, ‘Evidence of an auxin signal pathway, microRNA167-ARF8-GH3, and its response to exogenous auxin in cultured rice cells’, This proposed auxin signal transduction pathway, auxin-miR167-ARF8-OsGH3-2, could be, in conjunction with the other microRNA-mediated auxin signals, an important one for responding to exogeneous auxin and for determining the cellular free auxin level which guides appropriate auxin responses
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