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PLANT PHYSIOLOGY , Vol 114, Issue 3 1085-1093, Copyright © 1997 by American Society of Plant Biologists
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PLANT-MICROBE AND PLANT-INSECT INTERACTIONS |
A Gene Encoding a Chloroplast-Targeted Lipoxygenase in Tomato Leaves Is Transiently Induced by Wounding, Systemin, and Methyl Jasmonate
T. Heitz, D. R. Bergey and C. A. Ryan
Institute of Biological Chemistry, Washington State University, Pullman, Washington 99164-6340 (T.H., D.R.B., C.A.R.)
We investigated the relationship between the expression of lipoxygenase
(LOX) genes and the systemin-dependent wound response in tomato
(Lycopersicon esculentum) leaves. A polymerase chain reaction-based
approach was used to isolate two tomato Lox cDNAs, called TomLoxC and
TomLoxD. Both TomLOXC and TomLOXD amino acid sequences possess an
N-terminal extension of about 60 residues that were shown by in vitro
uptake to function as transit peptides, targeting these proteins into the
chloroplast. Within 30 to 50 min following wounding or systemin or methyl
jasmonate treatments, the TomLoxD mRNA level increased and reached a
maximum between 1 and 2 h. TomLoxC mRNA was not detectable in leaves and
was not found following wounding, but it was found in ripening fruits,
indicating that the two tomato Lox genes are regulated in different tissues
by different processes. The results suggest that the TomLoxD gene is
up-regulated in leaves in response to wounding and encodes a chloroplast
LOX that may play a role as a component of the octadecanoid
defense-signaling pathway.
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