PlantTFDB
PlantRegMap/PlantTFDB v5.0
Plant Transcription Factor Database
Rosa multiflora
C3H Family
Species TF ID Description
Rmu_co8141282.1_g000001.1C3H family protein
Rmu_co8301593.1_g000001.1C3H family protein
Rmu_co8338923.1_g000001.1C3H family protein
Rmu_co8369329.1_g000001.1C3H family protein
Rmu_co8376349.1_g000001.1C3H family protein
Rmu_co8381953.1_g000001.1C3H family protein
Rmu_co8418355.1_g000001.1C3H family protein
Rmu_co8436737.1_g000001.1C3H family protein
Rmu_co8470117.1_g000001.1C3H family protein
Rmu_co8476507.1_g000001.1C3H family protein
Rmu_co8493965.1_g000001.1C3H family protein
Rmu_sc0000064.1_g000020.1C3H family protein
Rmu_sc0000359.1_g000003.1C3H family protein
Rmu_sc0000384.1_g000012.1C3H family protein
Rmu_sc0000401.1_g000006.1C3H family protein
Rmu_sc0000401.1_g000007.1C3H family protein
Rmu_sc0000401.1_g000014.1C3H family protein
Rmu_sc0000401.1_g000026.1C3H family protein
Rmu_sc0000401.1_g000028.1C3H family protein
Rmu_sc0000459.1_g000001.1C3H family protein
Rmu_sc0000609.1_g000001.1C3H family protein
Rmu_sc0001195.1_g000002.1C3H family protein
Rmu_sc0001308.1_g000010.1C3H family protein
Rmu_sc0001322.1_g000021.1C3H family protein
Rmu_sc0001656.1_g000001.1C3H family protein
Rmu_sc0001788.1_g000009.1C3H family protein
Rmu_sc0001809.1_g000062.1C3H family protein
Rmu_sc0002014.1_g000008.1C3H family protein
Rmu_sc0002126.1_g000014.1C3H family protein
Rmu_sc0002316.1_g000012.1C3H family protein
Rmu_sc0002348.1_g000009.1C3H family protein
Rmu_sc0002530.1_g000012.1C3H family protein
Rmu_sc0002531.1_g000041.1C3H family protein
Rmu_sc0002532.1_g000007.1C3H family protein
Rmu_sc0002532.1_g000008.1C3H family protein
Rmu_sc0003317.1_g000025.1C3H family protein
Rmu_sc0003579.1_g000008.1C3H family protein
Rmu_sc0004329.1_g000008.1C3H family protein
Rmu_sc0004677.1_g000020.1C3H family protein
Rmu_sc0004744.1_g000012.1C3H family protein
Rmu_sc0005162.1_g000002.1C3H family protein
Rmu_sc0005292.1_g000027.1C3H family protein
Rmu_sc0005510.1_g000002.1C3H family protein
Rmu_sc0005594.1_g000015.1C3H family protein
Rmu_sc0005656.1_g000004.1C3H family protein
Rmu_sc0005969.1_g000008.1C3H family protein
Rmu_sc0009637.1_g000002.1C3H family protein
Rmu_sc0009816.1_g000006.1C3H family protein
Rmu_sc0010181.1_g000001.1C3H family protein
Rmu_sc0010181.1_g000004.1C3H family protein
Rmu_sc0010181.1_g000009.1C3H family protein
Rmu_sc0010734.1_g000006.1C3H family protein
Rmu_sc0011021.1_g000013.1C3H family protein
Rmu_sc0011758.1_g000001.1C3H family protein
Rmu_sc0012005.1_g000009.1C3H family protein
Rmu_sc0014003.1_g000016.1C3H family protein
Rmu_sc0016750.1_g000003.1C3H family protein
Rmu_sc0021911.1_g000011.1C3H family protein
Rmu_sc0029975.1_g000003.1C3H family protein
Rmu_sc0040156.1_g000001.1C3H family protein
Rmu_sc0040875.1_g000001.1C3H family protein
Rmu_sc0042157.1_g000001.1C3H family protein
Rmu_ssc0000133.1_g000002.1C3H family protein
Rmu_ssc0000192.1_g000011.1C3H family protein
C3H Family Introduction

One gene isolated by virtual subtraction is PEI. It encodes a protein containing a Cys3His zinc finger domain associated with a number of animal and fungal transcription factors. In situ hybridization results showed that PEI1 is expressed throughout the embryo from globular to late cotyledon stage. Transgenic Arabidopsis plants expressing a PEI1 antisense gene produced white seeds in which embryo development did not progress through heart stage. Aberrant embryos failed to form cotyledons, but the embryonic root appeared to be normal. Aberrant embryos did not turn green, and the expression of genes involved in photomorphogenesis was drastically attenuated. In culture, aberrant embryos did not form true leaves, but root formation was apparently normal. These results suggest that PEI1 is an embryo-specific transcription factor that plays an important role during Arabidopsis embryogenesis, functioning primarily in the apical domain of the embryo.

we used a random binding site selection method to show that recombinant PEI1 protein purified from Escherichia coli can bind to specific DNA sequences. This DNA binding activity supports the prediction that PEI1 is an embryo-specific transcription factor.

Z Li and T L Thomas.
PEI1, an embryo-specific zinc finger protein gene required for heart-stage embryo formation in Arabidopsis.
Plant Cell, 1998. 10(3): p. 383-98.
PMID: 9501112