Roles of Protein Synthesis Elongation Factor EF-Tu in Heat Tolerance in Plants

Author:

Fu Jianming1ORCID,Momčilović Ivana2,Prasad P. V. Vara3

Affiliation:

1. USDA-ARS-Hard Winter Wheat Genetics Research Unit, 4008 Throckmorton Hall, Kansas State University, Manhattan, KS 66506, USA

2. Department of Plant Physiology, Institute for Biological Research “Siniša Stanković”, University of Belgrade, Bul. despota Stefana 142, Belgrade 11060, Serbia

3. Department of Agronomy, Kansas State University, Manhattan, KS 66506, USA

Abstract

EF-Tu proteins of plastids, mitochondria, and the cytosolic counterpart EF-1α in plants, as well as EF-Tu proteins of bacteria, are highly conserved and multifunctional. The functions of EF-Tu include transporting the aminoacyl-tRNA complex to the A site of the ribosome during protein biosynthesis; chaperone activity in protecting other proteins from aggregation caused by environmental stresses, facilitating renaturation of proteins when conditions return to normal; displaying a protein disulfide isomerase activity; participating in the degradation of N-terminally blocked proteins by the proteasome; eliciting innate immunity and triggering resistance to pathogenic bacteria in plants; participating in transcription when an E. coli host is infected with phages. EF-Tu genes are upregulated by abiotic stresses in plants, and EF-Tu plays important role in stress responses. Expression of a plant EF-Tu gene confers heat tolerance in E. coli, maize knock-out EF-Tu null mutants are heat susceptible, and over-expression of an EF-Tu gene improves heat tolerance in crop plants. This review paper summarizes the current knowledge of EF-Tu proteins in stress responses in plants and progress on application of EF-Tu for developing crop varieties tolerant to abiotic stresses, such as high temperatures.

Publisher

Hindawi Limited

Subject

Plant Science

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