Overexpression of a cell wall damage induced transcription factor, OsWRKY42, leads to enhanced callose deposition and tolerance to salt stress but does not enhance tolerance to bacterial infection
Date
2018
Journal Title
Journal ISSN
Volume Title
Publisher
BioMed Central Ltd
Abstract
Background: Members of the WRKY gene family play important roles in regulating plant responses to abiotic and
biotic stresses. Treatment with either one of the two different cell wall degrading enzymes (CWDEs), LipaseA and
CellulaseA, induces immune responses and enhances the expression of OsWRKY42 in rice. However, the role
of OsWRKY42 in CWDE induced immune responses is not known.
Results: Expression of the rice transcription factor OsWRKY42 is induced upon treatment of rice leaves with CWDEs,
wounding and salt. Overexpression of OsWRKY42 leads to enhanced callose deposition in rice and Arabidopsis but this
does not enhance tolerance to bacterial infection. Upon treatment with NaCl, Arabidopsis transgenic plants expressing
OsWRKY42 exhibited high levels of anthocyanin and displayed enhanced tolerance to salt stress. Treatment with either
cellulase or salt induced the expression of several genes involved in JA biosynthesis and response in Arabidopsis.
Ectopic expression of OsWRKY42 results in reduced expression of cell wall damage and salt stress induced
jasmonic acid biosynthesis and response genes. OsWRKY42 expressing Arabidopsis lines exhibited enhanced
tolerance to methyl jasmonate mediated growth inhibition.
Conclusion: The results presented here suggest that OsWRKY42 regulates plant responses to either cell wall
damage or salinity stress by acting as a negative regulator of jasmonic acid mediated responses.
Description
Accepted date: 23 August 2018
Keywords
Cell wall degrading enzymes, WRKY transcription factor, OsWRKY42, Callose deposition, Salinity stress, Jasmonic acid
Citation
BMC Plant Biology, 18(1): 177
