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Differential localization of Hessian fly candidate effectors in resistant and susceptible wheat plants.
Aljbory, Zainab; Aikins, Michael J; Park, Yoonseong; Reeck, Gerald R; Chen, Ming-Shun.
Affiliation
  • Aljbory Z; Department of Entomology Kansas State University Manhattan KS USA.
  • Aikins MJ; College of Agriculture Green University of Al Qasim Iraq.
  • Park Y; Department of Entomology Kansas State University Manhattan KS USA.
  • Reeck GR; Department of Entomology Kansas State University Manhattan KS USA.
  • Chen MS; Department of Biochemistry and Molecular Biophysics Kansas State University Manhattan KS USA.
Plant Direct ; 4(8): e00246, 2020 Aug.
Article de En | MEDLINE | ID: mdl-32818166
ABSTRACT
Hessian fly Mayetiola destructor is a notorious pest of wheat. Previous studies suggest that Hessian fly uses effector-based mechanisms to attack wheat plants during parasitism, but no direct evidence has been reported to support this postulation. Here, we produced recombinant proteins for five Family-1 candidate effectors and antibodies. Indirect immunostaining and western blots were carried out to examine the localization of Hessian fly Family-1 proteins in plant and insect tissues. Confocal images revealed that Family-1 putative effectors were exclusively produced in the basal region of larval salivary glands, which are directly linked to the mandibles' ducts for effector injection. The five Family-1 proteins were detected in infested host plants on western blots. Indirect immunostaining of sectioned host tissues around the feeding site revealed strikingly different localization patterns between resistant and susceptible plants. In susceptible plants, the Family-1 proteins penetrated from the feeding cell into deep tissues, indicative of movement between cells during nutritive cell formation. In contrast, the Hessian fly proteins were primarily limited to the initially attacked cells in resistant plants. The limitation of effectors' spread in resistant plants was likely due to wall strengthening and rapid hypersensitive cell death. Cell death was found in Nicotiana benthamiana in association with hypersensitive reaction triggered by the Family-1 effector SSGP-1A2. Our finding represents a significant progress in visualizing insect effectors in host tissues and mechanisms of plant resistance and susceptibility to gall midge pests.
Mots clés

Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Langue: En Journal: Plant Direct Année: 2020 Type de document: Article

Texte intégral: 1 Collection: 01-internacional Base de données: MEDLINE Langue: En Journal: Plant Direct Année: 2020 Type de document: Article