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Plant Physiol


Title:BOTRYTIS-INDUCED KINASE1 Modulates Arabidopsis Resistance to Green Peach Aphids via PHYTOALEXIN DEFICIENT4
Author(s):Lei J; Finlayson A; Salzman RA; Shan L; Zhu-Salzman K;
Address:"Department of Entomology (J.L., R.A.S., K.Z.-S.), Department of Soil and Crop Sciences (S.A.F.), Department of Plant Pathology and Microbiology (L.S.), and Molecular and Environmental Plant Sciences Program (J.L., S.A.F., L.S., K.Z.-S.), Texas A&M University, College Station, Texas 77843; andStoller Enterprises, Houston, Texas 77043 (R.A.S.). Department of Entomology (J.L., R.A.S., K.Z.-S.), Department of Soil and Crop Sciences (S.A.F.), Department of Plant Pathology and Microbiology (L.S.), and Molecular and Environmental Plant Sciences Program (J.L., S.A.F., L.S., K.Z.-S.), Texas A&M University, College Station, Texas 77843; andStoller Enterprises, Houston, Texas 77043 (R.A.S.) ksalzman@tamu.edu"
Journal Title:Plant Physiol
Year:2014
Volume:20140624
Issue:4
Page Number:1657 - 1670
DOI: 10.1104/pp.114.242206
ISSN/ISBN:1532-2548 (Electronic) 0032-0889 (Print) 0032-0889 (Linking)
Abstract:"BOTRYTIS-INDUCED KINASE1 (BIK1) plays important roles in induced defense against fungal and bacterial pathogens in Arabidopsis (Arabidopsis thaliana). Its tomato (Solanum lycopersicum) homolog is required for host plant resistance to a chewing insect herbivore. However, it remains unknown whether BIK1 functions in plant defense against aphids, a group of insects with a specialized phloem sap-feeding style. In this study, the potential role of BIK1 was investigated in Arabidopsis infested with the green peach aphid (Myzus persicae). In contrast to the previously reported positive role of intact BIK1 in defense response, loss of BIK1 function adversely impacted aphid settling, feeding, and reproduction. Relative to wild-type plants, bik1 displayed higher aphid-induced hydrogen peroxide accumulation and more severe lesions, resembling a hypersensitive response (HR) against pathogens. These symptoms were limited to the infested leaves. The bik1 mutant showed elevated basal as well as induced salicylic acid and ethylene accumulation. Intriguingly, elevated salicylic acid levels did not contribute to the HR-like symptoms or to the heightened aphid resistance associated with the bik1 mutant. Elevated ethylene levels in bik1 accounted for an initial, short-term repellence. Introducing a loss-of-function mutation in the aphid resistance and senescence-promoting gene PHYTOALEXIN DEFICIENT4 (PAD4) into the bik1 background blocked both aphid resistance and HR-like symptoms, indicating bik1-mediated resistance to aphids is PAD4 dependent. Taken together, Arabidopsis BIK1 confers susceptibility to aphid infestation through its suppression of PAD4 expression. Furthermore, the results underscore the role of reactive oxygen species and cell death in plant defense against phloem sap-feeding insects"
Keywords:
Notes:"PubMed-not-MEDLINELei, Jiaxin A Finlayson, Scott Salzman, Ron A Shan, Libo Zhu-Salzman, Keyan eng 2014/06/26 Plant Physiol. 2014 Aug; 165(4):1657-1670. doi: 10.1104/pp.114.242206. Epub 2014 Jun 24"

 
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