PlantTFDB
PlantRegMap/PlantTFDB v5.0
Plant Transcription Factor Database
Rosa multiflora
G2-like Family
Species TF ID Description
Rmu_co7976220.1_g000001.1G2-like family protein
Rmu_co8024742.1_g000001.1G2-like family protein
Rmu_co8124068.1_g000001.1G2-like family protein
Rmu_co8136506.1_g000001.1G2-like family protein
Rmu_co8356799.1_g000001.1G2-like family protein
Rmu_co8376609.1_g000001.1G2-like family protein
Rmu_co8480485.1_g000001.1G2-like family protein
Rmu_co8500471.1_g000001.1G2-like family protein
Rmu_co8516769.1_g000001.1G2-like family protein
Rmu_sc0000047.1_g000016.1G2-like family protein
Rmu_sc0000051.1_g000016.1G2-like family protein
Rmu_sc0000058.1_g000004.1G2-like family protein
Rmu_sc0000271.1_g000010.1G2-like family protein
Rmu_sc0000766.1_g000026.1G2-like family protein
Rmu_sc0001329.1_g000016.1G2-like family protein
Rmu_sc0001684.1_g000008.1G2-like family protein
Rmu_sc0001875.1_g000015.1G2-like family protein
Rmu_sc0001969.1_g000009.1G2-like family protein
Rmu_sc0002093.1_g000035.1G2-like family protein
Rmu_sc0002406.1_g000009.1G2-like family protein
Rmu_sc0002520.1_g000011.1G2-like family protein
Rmu_sc0002549.1_g000009.1G2-like family protein
Rmu_sc0003242.1_g000001.1G2-like family protein
Rmu_sc0003642.1_g000002.1G2-like family protein
Rmu_sc0003684.1_g000001.1G2-like family protein
Rmu_sc0004311.1_g000014.1G2-like family protein
Rmu_sc0004311.1_g000015.1G2-like family protein
Rmu_sc0004311.1_g000016.1G2-like family protein
Rmu_sc0004662.1_g000005.1G2-like family protein
Rmu_sc0004790.1_g000005.1G2-like family protein
Rmu_sc0004976.1_g000035.1G2-like family protein
Rmu_sc0005625.1_g000002.1G2-like family protein
Rmu_sc0006201.1_g000002.1G2-like family protein
Rmu_sc0006214.1_g000011.1G2-like family protein
Rmu_sc0007223.1_g000004.1G2-like family protein
Rmu_sc0007332.1_g000003.1G2-like family protein
Rmu_sc0009474.1_g000002.1G2-like family protein
Rmu_sc0009615.1_g000002.1G2-like family protein
Rmu_sc0009800.1_g000002.1G2-like family protein
Rmu_sc0010532.1_g000005.1G2-like family protein
Rmu_sc0010665.1_g000023.1G2-like family protein
Rmu_sc0011056.1_g000003.1G2-like family protein
Rmu_sc0012980.1_g000001.1G2-like family protein
Rmu_sc0018344.1_g000004.1G2-like family protein
Rmu_sc0019012.1_g000004.1G2-like family protein
Rmu_sc0034955.1_g000002.1G2-like family protein
Rmu_sc0034955.1_g000003.1G2-like family protein
Rmu_sc0037241.1_g000002.1G2-like family protein
Rmu_ssc0000018.1_g000074.1G2-like family protein
Rmu_ssc0000050.1_g000098.1G2-like family protein
Rmu_ssc0000058.1_g000009.1G2-like family protein
Rmu_ssc0000107.1_g000003.1G2-like family protein
Rmu_ssc0000243.1_g000020.1G2-like family protein
Rmu_ssc0000243.1_g000024.1G2-like family protein
Rmu_ssc0000441.1_g000001.1G2-like family protein
G2-like Family Introduction

The GLK proteins are members of the recently categorized GARP superfamily of transcription factors (Riechmann et al., 2000) defined by G2 in maize; the Arabidopsis RESPONSE REGULATOR-B (ARR-B) proteins (Imamura et al., 1999); and the PHOSPHATE STARVATION RESPONSE1 (PSR1) protein of Chlamydomonas (Wykoff et al., 1999). In the case of G2, three of the four defining features of most transcription factors have been verified experimentally in heterologous systems. G2 is nuclearlocalized (Hall et al., 1998), is able to transactivate reporter gene expression, and can both homo-dimerize and heterodimerize with ZmGLK1 (Rossini et al., 2001). DNA-binding activity of GLK proteins has yet to be demonstrated,however, the putative DNA-binding domain is highly conserved with domains in other GARP proteins such as ARR1 and ARR2 (Riechmann et al., 2000). Notably, ARR1 and ARR2 have been shown to bind DNA (Sakai et al.,2000), thus it is likely that GLK proteins act as transcriptional regulators of chloroplast development.

The GLK proteins are members of the GARP superfamily of transcription factors, and phylogenetic analysis demonstrates that the maize, rice and Arabidopsis GLK gene pairs comprise a distinct group within the GARP superfamily. Further phylogenetic analysis suggests that the gene pairs arose through separate duplication events in the monocot and dicot lineages. As in rice, AtGLK1 and AtGLK2 are expressed in partially overlapping domains in photosynthetic tissue. GLK genes therefore regulate chloroplast development in diverse plant species.

Fitter DW, Martin DJ, Copley MJ, Scotland RW, Langdale JA.
GLK gene pairs regulate chloroplast development in diverse plant species.
Plant J. 2002 Sep;31(6):713-27.
PMID: 12220263