USE OF A GENE-EXPRESSION SYSTEM BASED ON POTATO-VIRUS-X TO RAPIDLY IDENTIFY AND CHARACTERIZE A TOMATO PTO HOMOLOG THAT CONTROLS FENTHION SENSITIVITY

被引:72
作者
ROMMENS, CMT
SALMERON, JM
BAULCOMBE, DC
STASKAWICZ, BJ
机构
[1] UNIV CALIF BERKELEY,DEPT PLANT BIOL,BERKELEY,CA 94720
[2] SAINSBURY LAB,NORWICH NR4 7UH,NORFOLK,ENGLAND
关键词
D O I
10.1105/tpc.7.3.249
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
A novel transient gene expression system was used to study both the tomato disease resistance gene Pto and a Pto homolog designated Fan. The gene expression system was based on potato virus X (PVX). Tomato plants that were both susceptible to strains of Pseudomonas syringae pv tomato carrying the corresponding avirulence gene awPto and insensitive to the insecticide fenthion were infected with in vitro-generated transcripts of PVX derivatives containing either Pto or Fan. Expression of the Pto gene from the virus genome failed to elicit P. s. tomato resistance, indicating that the PVX system is not suitable for the study of Pto. However, expression of the Fen gene resulted in sensitivity to fenthion. The utility of the PVX gene expression system was further demonstrated through structure/function studies of the Fen gene. A correlation was shown between Pen protein kinase activity and the ability of this protein to confer fenthion sensitivity to tomato, Furthermore, it was demonstrated that mutation of a putative N-terminal myristoylation site, proposed to be involved in membrane targeting, rendered the Fen protein inactive, Analysis of a Pto Fen chimeric gene allowed the fenthion sensitivity domain to be localized to the C-terminal part of the Fen protein. Interestingly, expression of the Fen kinase from the PVX genome in Nicotiana spp resulted in a fenthion-independent necrotic response, Our results support the involvement of the Fen gene in a signal transduction pathway(s).
引用
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页码:249 / 257
页数:9
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