Effector Genes ofXanthamonas axonopodispv.vesicatoriaPromote Transmission and Enhance Other Fitness Traits in the Field
- 1 February 2004
- journal article
- Published by Oxford University Press (OUP) in Genetics
- Vol. 166 (2) , 693-706
- https://doi.org/10.1534/genetics.166.2.693
Abstract
Establishing durable disease resistance in agricultural crops, where much of the plant defense is provided through effector-R gene interactions, is complicated by the ability of pathogens to overcome R gene resistance by losing the corresponding effector gene. Many proposed methods to maintain disease resistance in the field depend on the idea that effector gene loss results in a fitness cost to the pathogen. In this article we test for fitness costs of effector gene function loss. We created directed knockouts of up to four effector genes from the bacterial plant pathogen Xanthomonas axonopodis pv. vesicatoria (Xav) and examined the effect of the loss of a functional gene product on several important fitness parameters in the field. These traits included transmission, lesion development, and epiphytic survival. We found that the products of all four effector genes had significant and often additive effects on fitness traits. Additional greenhouse tests revealed costs of effector gene loss on in planta growth and further showed that the effects on lesion development were separable from the effects on growth. Observable fitness effects of the three plasmid-borne effector genes were dependent upon the loss of functional avrBs2, indicating that complex functional interactions exist among effector genes with Xav.Keywords
This publication has 69 references indexed in Scilit:
- Arabidopsis RIN4 Is a Target of the Type III Virulence Effector AvrRpt2 and Modulates RPS2-Mediated ResistanceCell, 2003
- Plant pathogens and integrated defence responses to infectionNature, 2001
- avrPto Enhances Growth and Necrosis Caused by Pseudomonas syringae pv. tomato in Tomato Lines Lacking Either Pto or PrfMolecular Plant-Microbe Interactions®, 2000
- Posttranslational Quality Control: Folding, Refolding, and Degrading ProteinsScience, 1999
- Mutation in the avrBs1 Avirulence Gene of Xanthomonas campestris pv. vesicatoria Influences Survival of the Bacterium in Soil and Detached Leaf TissuePhytopathology®, 1997
- avrAandavrEinPseudomonas syringaepv.tomatoPT23 Play a Role in Virulence on Tomato PlantsMolecular Plant-Microbe Interactions®, 1994
- Coevolutionary genetics of plants and pathogensEvolutionary Ecology, 1993
- Models of plant-pathogen coevolutionTrends in Genetics, 1992
- Application of Electroporation for Efficient Transformation ofXanthomonas campestrispv.oryzaePhytopathology®, 1991
- Allelism Tests of Three Dominant Genes for Hypersensitive Resistance to Bacterial Spot of PepperPhytopathology®, 1987