Identification and characterization of parasitism genes from the pinewood nematode Bursaphelenchus xylophilus reveals a multilayered detoxification strategy.

dc.contributor.authorEspada, Margarida
dc.contributor.authorSilva, Ana Claudia
dc.contributor.authorAkker, Sebastian Eves-van den
dc.contributor.authorCock, Peter J.A
dc.contributor.authorMota, Manuel
dc.contributor.authorJones, John T.
dc.date.accessioned2017-01-31T13:16:22Z
dc.date.available2017-01-31T13:16:22Z
dc.date.issued2016
dc.description.abstractThe migratory endoparasitic nematode Bursaphelenchus xylophilus, which is the causal agent of pine wilt disease, has phytophagous and mycetophagous phases during its life cycle. This highly unusual feature distinguishes it from other plantparasitic nematodes and requires profound changes in biology between modes. During the phytophagous stage, the nematode migrates within pine trees, feeding on the contents of parenchymal cells. Like other plant pathogens, B. xylophilus secretes effectors from pharyngeal gland cells into the host during infection.We provide the first description of changes in the morphology of these gland cells between juvenile and adult life stages. Using a comparative transcriptomics approach and an effector identification pipeline, we identify numerous novel parasitism genes which may be important for the mediation of interactions of B. xylophilus with its host. In-depth characterization of all parasitism genes using in situ hybridization reveals two major categories of detoxification proteins, those specifically expressed in either the pharyngeal gland cells or the digestive system. These data suggest that B. xylophilus incorporates effectors in a multilayer detoxification strategy in order to protect itself from host defence responses during phytophagy.por
dc.identifier.authoremailmespada@uevora.pt
dc.identifier.authoremailnd
dc.identifier.authoremailnd
dc.identifier.authoremailnd
dc.identifier.authoremailmmota@uevora.pt
dc.identifier.authoremailnd
dc.identifier.doi10.1111/mpp.12280por
dc.identifier.pagina286-295
dc.identifier.scientificarea211por
dc.identifier.urihttp://hdl.handle.net/10174/20475
dc.language.isoporpor
dc.peerreviewednopor
dc.publisherMolecular Plant Pathologypor
dc.rightsopenAccesspor
dc.subjectBursaphelenchus xylophiluspor
dc.subjectxenobiotic metabolism.por
dc.titleIdentification and characterization of parasitism genes from the pinewood nematode Bursaphelenchus xylophilus reveals a multilayered detoxification strategy.por
dc.typearticlepor
degois.publication.titleMolecular Plant Pathologypor

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