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AP2-like ethylene-responsive transcription factor

Probably acts as a transcriptional activator. Binds to the GCC-box pathogenesis-related promoter element. May be involved in the regulation of gene expression by stress factors and by components of stress signal transduction pathways (By similarity).

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AP2-like ethylene-responsive transcription factor AIL1

Also known as AP2-like ethylene-responsive transcription factor AIL1 (Protein AINTEGUMENTA-LIKE 1).
Probably acts as a transcriptional activator. Binds to the GCC-box pathogenesis-related promoter element. May be involved in the regulation of gene expression by stress factors and by components of stress signal transduction pathways ().

AP2-like ethylene-responsive transcription factor AIL5

Also known as AP2-like ethylene-responsive transcription factor AIL5 (Protein AINTEGUMENTA-LIKE 5).
Encodes a member of the AP2 family of transcriptional regulators. May be involved in germination and seedling growth. Mutants are resistant to ABA analogs and are resistant to high nitrogen concentrations.essential for the developmental transition between the embryonic and vegetative phases in plants. Overexpression results in the formation of somatic embryos on cotyledons. It is also required to maintain high levels of PIN1 expression at the periphery of the meristem and modulate local auxin production in the central region of the SAM which underlies phyllotactic transitions.

AP2-like ethylene-responsive transcription factor AIL6

Also known as AP2-like ethylene-responsive transcription factor AIL6 (Protein AINTEGUMENTA-LIKE 6).
Encodes an AP2-domain transcription factor involved in root stem cell identity and root development. It is also required to maintain high levels of PIN1 expression at the periphery of the meristem and modulate local auxin production in the central region of the SAM which underlies phyllotactic transitions.

AP2-like ethylene-responsive transcription factor AIL7

Also known as AP2-like ethylene-responsive transcription factor AIL7 (Protein AINTEGUMENTA-LIKE 7).
Encodes one of three PLETHORA transcription factors required to maintain high levels of PIN1 expression at the periphery of the meristem and modulate local auxin production in the central region of the SAM which underlies phyllotactic transitions.

AP2-like ethylene-responsive transcription factor ANT

Also known as AP2-like ethylene-responsive transcription factor ANT (Complementing a protein kinase C mutant protein 1) (Protein AINTEGUMENTA) (Protein DRAGON) (Protein OVULE MUTANT).
ANT is required for control of cell proliferation and encodes a putative transcriptional regulator similar to AP2. Loss of function alleles have reduced fertility, abnormal ovules and abnormal lateral organs. Expressed specifically in the chalaza and in floral organ primordia.

AP2-like ethylene-responsive transcription factor BBM1

Also known as AP2-like ethylene-responsive transcription factor BBM1 (BnBBM1) (Protein BABY BOOM 1).
Transcription factor that promotes cell proliferation, differentiation and morphogenesis, especially during embryogenesis.

AP2-like ethylene-responsive transcription factor BBM2

Also known as AP2-like ethylene-responsive transcription factor BBM2 (BnBBM2) (Protein BABY BOOM 2).
Transcription factor that promotes cell proliferation, differentiation and morphogenesis, especially during embryogenesis.

AP2-like ethylene-responsive transcription factor PLT1

Also known as AP2-like ethylene-responsive transcription factor PLT1 (Protein AINTEGUMENTA-LIKE 3) (Protein PLETHORA 1).
Encodes a member of the AINTEGUMENTA-like (AIL) subclass of the AP2/EREBP family of transcription factors and is essential for quiescent center (QC) specification and stem cell activity. It is a key effector for establishment of the stem cell niche during embryonic pattern formation. It is transcribed in response to auxin accumulation and is dependent on auxin response transcription factors.

AP2-like ethylene-responsive transcription factor PLT2

Also known as AP2-like ethylene-responsive transcription factor PLT2 (Protein AINTEGUMENTA-LIKE 4) (Protein PLETHORA 2).
Encodes a member of the AINTEGUMENTA-like (AIL) subclass of the AP2/EREBP family of transcription factors and is essential for quiescent center (QC) specification and stem cell activity. It is a key effector for establishment of the stem cell niche during embryonic pattern formation. It is transcribed in response to auxin accumulation and is dependent on auxin response transcription factors.

AP2-like ethylene-responsive transcription factor SMZ

Also known as AP2-like ethylene-responsive transcription factor SMZ (Protein SCHLAFMUTZE).
Encodes a AP2 domain transcription factor that can repress flowering. SMZ and its paralogous gene, SNARCHZAPFEN (SNZ), share a signature with partial complementarity to the miR172 microRNA, whose precursor is induced upon flowering.

AP2-like ethylene-responsive transcription factor SNZ

Also known as AP2-like ethylene-responsive transcription factor SNZ (Protein SCHNARCHZAPFEN).
Encodes a AP2 domain transcription factor that can repress flowering. SNZ and its paralogous gene, SCHLAFMUTZE (SMZ), share a signature with partial complementarity to the miR172 microRNA, whose precursor is induced upon flowering.

AP2-like ethylene-responsive transcription factor TOE2

Also known as AP2-like ethylene-responsive transcription factor TOE2 (Protein TARGET OF EAT 2).
Probably acts as a transcriptional activator. Binds to the GCC-box pathogenesis-related promoter element. May be involved in the regulation of gene expression by stress factors and by components of stress signal transduction pathways (). Regulates negatively the transition to flowering time and confers flowering time delay.

AP2-like ethylene-responsive transcription factor TOE3

Also known as AP2-like ethylene-responsive transcription factor TOE3 (Protein TARGET OF EAT 3).
Probably acts as a transcriptional activator. Binds to the GCC-box pathogenesis-related promoter element. May be involved in the regulation of gene expression by stress factors and by components of stress signal transduction pathways (). May regulate negatively the transition to flowering time and confers flowering time delay.
Proteins Root Name Listing
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