Abstract:
:ABSTRACT Application of salicylic acid induces systemic acquired resistance in tobacco. pchA and pchB, which encode for the biosynthesis of salicylic acid in Pseudomonas aeruginosa, were cloned into two expression vectors, and these constructs were introduced into two root-colonizing strains of P. fluorescens. Introduction of pchBA into strain P3, which does not produce salicylic acid, rendered this strain capable of salicylic acid production in vitro and significantly improved its ability to induce systemic resistance in tobacco against tobacco necrosis virus. Strain CHA0 is a well-described biocontrol agent that naturally produces salicylic acid under conditions of iron limitation. Introduction of pchBA into CHA0 increased the production of salicylic acid in vitro and in the rhizosphere of tobacco, but did not improve the ability of CHA0 to induce systemic resistance in tobacco. In addition, these genes did not improve significantly the capacity of strains P3 and CHA0 to suppress black root rot of tobacco in a gnotobiotic system.
journal_name
Phytopathologyjournal_title
Phytopathologyauthors
Maurhofer M,Reimmann C,Schmidli-Sacherer P,Heeb S,Haas D,Défago Gdoi
10.1094/PHYTO.1998.88.7.678subject
Has Abstractpub_date
1998-07-01 00:00:00pages
678-84issue
7eissn
0031-949Xissn
1943-7684journal_volume
88pub_type
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