Environmental stress poses a global threat to plant growth and reproduction, especially drought stress. Zinc finger proteins comprise a family of transcription factors that play essential roles in response to various abiotic stresses. Here, we found that ZAT18 (At3g53600), a nuclear C2H2 zinc finger protein, was transcriptionally induced by dehydration stress. Overexpression (OE) of ZAT18 in Arabidopsis improved drought tolerance while mutation of ZAT18 resulted in decreased plant tolerance to drought stress. ZAT18 was preferentially expressed in stems, siliques, and vegetative rosette leaves. Subcellular location results revealed that ZAT18 protein was predominantly localized in the nucleus. ZAT18 OE plants exhibited less leaf water loss, ...
AbstractC2H2-zinc finger proteins that contain the EAR repressor domain are thought to play a key ro...
Dehydration tolerance is a vital factor for land plant evolution and world agricultural production. ...
Dehydration tolerance is a vital factor for land plant evolution and world agricultural production. ...
Plant defense responses under unfavorable conditions are often associated with reduced growth. Howev...
AbstractC2H2-zinc finger proteins that contain the EAR repressor domain are thought to play a key ro...
Plant response to environmental stresses is regulated by a complicated network of regulatory and fun...
Dehydration tolerance is a vital factor for land plant evolution and world agricultural production. ...
Dehydration tolerance is a vital factor for land plant evolution and world agricultural production. ...
Dehydration tolerance is a vital factor for land plant evolution and world agricultural production. ...
Dehydration tolerance is a vital factor for land plant evolution and world agricultural production. ...
Dehydration tolerance is a vital factor for land plant evolution and world agricultural production. ...
Dehydration tolerance is a vital factor for land plant evolution and world agricultural production. ...
Dehydration tolerance is a vital factor for land plant evolution and world agricultural production. ...
Dehydration tolerance is a vital factor for land plant evolution and world agricultural production. ...
Dehydration tolerance is a vital factor for land plant evolution and world agricultural production. ...
AbstractC2H2-zinc finger proteins that contain the EAR repressor domain are thought to play a key ro...
Dehydration tolerance is a vital factor for land plant evolution and world agricultural production. ...
Dehydration tolerance is a vital factor for land plant evolution and world agricultural production. ...
Plant defense responses under unfavorable conditions are often associated with reduced growth. Howev...
AbstractC2H2-zinc finger proteins that contain the EAR repressor domain are thought to play a key ro...
Plant response to environmental stresses is regulated by a complicated network of regulatory and fun...
Dehydration tolerance is a vital factor for land plant evolution and world agricultural production. ...
Dehydration tolerance is a vital factor for land plant evolution and world agricultural production. ...
Dehydration tolerance is a vital factor for land plant evolution and world agricultural production. ...
Dehydration tolerance is a vital factor for land plant evolution and world agricultural production. ...
Dehydration tolerance is a vital factor for land plant evolution and world agricultural production. ...
Dehydration tolerance is a vital factor for land plant evolution and world agricultural production. ...
Dehydration tolerance is a vital factor for land plant evolution and world agricultural production. ...
Dehydration tolerance is a vital factor for land plant evolution and world agricultural production. ...
Dehydration tolerance is a vital factor for land plant evolution and world agricultural production. ...
AbstractC2H2-zinc finger proteins that contain the EAR repressor domain are thought to play a key ro...
Dehydration tolerance is a vital factor for land plant evolution and world agricultural production. ...
Dehydration tolerance is a vital factor for land plant evolution and world agricultural production. ...