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ERF5 drought and salt in tomato
ORIGINAL PAPER
An ethylene response factor (ERF5) promoting adaptation
to drought and salt tolerance in tomato
Yu Pan ? Graham B. Seymour ? Chungui Lu ?
Zongli Hu ? Xuqing Chen ? Guoping Chen
Received: 2 August 2011 / Revised: 28 September 2011 / Accepted: 5 October 2011 / Published online: 22 October 2011
Springer-Verlag 2011
Abstract A novel member of the AP2/ERF transcription
factor family, SlERF5, was identified from a tomato mature
leaf cDNA library screen. The complete DNA sequence of
SlERF5 encodes a putative 244-amino acid DNA-binding
protein which most likely acts as a transcriptional regulator
and is a member of the ethylene responsive factor (ERF)
superfamily. Analysis of the deduced SlERF5 protein
sequence showed that it contained an ERF domain and
belonged to the class III group of ERFs proteins. Expression
of SlERF5 was induced by abiotic stress, such as high
salinity, drought, flooding, wounding and cold temperatures.
Over-expression of SlERF5 in transgenic tomato plants
resulted in high tolerance to drought and salt stress and
increased levels of relative water content compared with
wild-type plants. This study indicates that SlERF5 is mainly
involved in the responses to abiotic stress in tomato.
Keywords Drought stress Ethylene response factor
SlERF5 Salt stress Solanum lycopersicum
Introduction
Plant adaptation to environmental stresses relies upon the
activation of molecular networks involved in stress per-
ception, signal transduction, and the expression of specific
stress-related genes and metabolites (Vinocur and Altman
2005). Candidate genes for stress tolerance include stress
sensors, histidine kinases, receptor-like protein kinases,
calcium sensors, calcium-binding proteins, calcium-
dependent protein kinases (CDPKs), mitogen-activated
The accession number for the ethylene response factor5 (ERF5)
cDNA nucleotide sequence is AY559315, which was previously
named tomato ERF5 gene (LeERF5), is now renamed SlERF5; the
accession number f
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