PlantTFDB
PlantRegMap/PlantTFDB v5.0
Plant Transcription Factor Database
Triticum dicoccoides
LSD Family
Species TF ID Description
TRIDC1AG041580.1LSD family protein
TRIDC1AG041580.10LSD family protein
TRIDC1AG041580.11LSD family protein
TRIDC1AG041580.2LSD family protein
TRIDC1AG041580.3LSD family protein
TRIDC1AG041580.4LSD family protein
TRIDC1AG041580.5LSD family protein
TRIDC1AG041580.6LSD family protein
TRIDC1AG041580.7LSD family protein
TRIDC1AG041580.8LSD family protein
TRIDC1AG041580.9LSD family protein
TRIDC1BG047480.10LSD family protein
TRIDC1BG047480.11LSD family protein
TRIDC1BG047480.12LSD family protein
TRIDC1BG047480.13LSD family protein
TRIDC1BG047480.14LSD family protein
TRIDC1BG047480.15LSD family protein
TRIDC1BG047480.16LSD family protein
TRIDC1BG047480.17LSD family protein
TRIDC1BG047480.8LSD family protein
TRIDC1BG047480.9LSD family protein
TRIDC3AG032870.1LSD family protein
TRIDC3AG032870.2LSD family protein
TRIDC3AG032870.3LSD family protein
TRIDC3AG032870.4LSD family protein
TRIDC3AG032870.5LSD family protein
TRIDC3BG037360.1LSD family protein
TRIDC3BG037360.2LSD family protein
TRIDC3BG037360.3LSD family protein
TRIDC4BG051140.1LSD family protein
TRIDC4BG051140.3LSD family protein
TRIDC4BG051140.4LSD family protein
TRIDC5AG007580.1LSD family protein
TRIDC5AG007580.2LSD family protein
TRIDC5AG007580.3LSD family protein
TRIDC5AG007580.4LSD family protein
TRIDC5AG055120.1LSD family protein
TRIDC5AG055120.3LSD family protein
TRIDC5AG055120.4LSD family protein
TRIDC5AG055120.5LSD family protein
TRIDC5AG055120.6LSD family protein
TRIDC5AG055120.7LSD family protein
TRIDC5AG055120.8LSD family protein
TRIDC5BG009030.1LSD family protein
TRIDC5BG009030.2LSD family protein
TRIDC5BG009030.3LSD family protein
TRIDC5BG009030.4LSD family protein
TRIDC5BG059070.1LSD family protein
TRIDC5BG059070.10LSD family protein
TRIDC5BG059070.11LSD family protein
TRIDC5BG059070.3LSD family protein
TRIDC5BG059070.4LSD family protein
TRIDC5BG059070.5LSD family protein
TRIDC5BG059070.6LSD family protein
TRIDC5BG059070.7LSD family protein
TRIDC5BG059070.8LSD family protein
TRIDC7AG043290.1LSD family protein
TRIDC7AG043290.2LSD family protein
TRIDC7BG034560.1LSD family protein
TRIDC7BG034560.2LSD family protein
TRIDC7BG034560.3LSD family protein
LSD Family Introduction

Arabidopsis lsd1 mutants are hyperresponsive to cell death initiators and fail to limit the extent of cell death. Superoxide is a necessary and sufficient signal for cell death propagation. Thus, LSD1 monitors a superoxide-dependent signal and negatively regulates a plant cell death pathway. We isolated LSD1 via its map position. The predicted LSD1 protein contains three zinc finger domains, defined by CxxCxRxxLMYxxGASxVxCxxC. These domains are present in three additional Arabidopsis genes, suggesting that LSD1 defines a zinc finger protein subclass. LSD1 is constitutively expressed, consistent with the mutant phenotype. Alternate splicing gives rise to a low abundance mRNA encoding an extra five amino-terminal amino acids. We propose that LSD1 regulates transcription, via either repression of a prodeath pathway or activation of an antideath pathway, in response to signals emanating from cells undergoing pathogen-induced hypersensitive cell death.

Dietrich RA, Richberg MH, Schmidt R, Dean C, Dangl JL.
A novel zinc finger protein is encoded by the Arabidopsis LSD1 gene and functions as a negative regulator of plant cell death.
Cell, 1997. 88(5): p. 685-94.
PMID: 9054508


The most familiar form of plant programmed cell death is the hypersensitive response (HR) associated with successful plant immune responses. HR is preceded by an oxidative burst and the generation of both reactive oxygen intermediates (ROI) and NO. The Arabidopsis LSD1 gene encodes a negative regulator of plant programmed cell death that meets several criteria for a regulator of processes relevant to ROI management during pathogen responses. Here we demonstrate that a highly conserved LSD1 paralogue, LOL1, acts as a positive regulator of cell death. Manipulation of LOL1 expression alters both the superoxide-dependent, runaway cell death phenotype of lsd1 plants and the normal HR. We also show that LSD1 and LOL1 have antagonistic effects on copper-zinc superoxide dismutase accumulation, consistent with functions in cell death control via maintenance of ROI homeostasis.

Epple P, Mack AA, Morris VR, Dangl JL.
Antagonistic control of oxidative stress-induced cell death in Arabidopsis by two related, plant-specific zinc finger proteins.
Proc Natl Acad Sci U S A, 2003. 100(11): p. 6831-6.
PMID: 12732715