Developmental biology and cytogenetics of B. xylophilus

dc.contributor.authorHasegawa, Koichi
dc.contributor.authorMota, Manuel
dc.contributor.authorFUTAI, Kazuyoshi
dc.contributor.authorMIWA, Johji
dc.date.accessioned2012-12-10T16:41:04Z
dc.date.available2012-12-10T16:41:04Z
dc.date.issued2008
dc.description.abstractThe pine wood nematode Bursaphelenchus xylophilus reproduces bisexually: a haploid sperm fertilizes a haploid oocyte, and the two pronuclei rearrange, move together, fuse, and begin diploid development. Early embryonic events taking place in the B. xylophilus embryo are similar to those of Caenorhabditis elegans, although the anterior-posterior axis appeares to be determined oppositely to that observed for C. elegans. Thai is, in the B. xylophilus embryo, the male pronucleus emerges at the future anterior end, whereas the female pronucleus appeares laterally. To understand the evolution of nematode developmental systems, we cloned the full length of Bx-tbb-1 (beta tubulin) from B. xylophilus cDNA and attempted to apply reverse genetics analysis to B. xylophilus. Several lengths of double stranded RNA (dsRNA) for the Bx-tbb-1 gene were synthesized by in vitro transcription, and both B. xylophilus and C. elegans were soaked in dsRNA for RNAi. Both nematodes could suck up the dsRNA, and we could detect the abnormal phenotypes caused by Bx-tbb-1 dsRNA in C. elegans, but not in B. xylophilus. We suspect that systemic RNAi might be suppressed in B. xylophilus and are attempting to establish other methods for functionally analyzing B. xylophilus genes.por
dc.identifier.authoremailnd
dc.identifier.authoremailmmota@uevora.pt
dc.identifier.authoremailnd
dc.identifier.authoremailnd
dc.identifier.numpag91-100
dc.identifier.scientificarea218por
dc.identifier.sharewithICAAMpor
dc.identifier.urihttp://hdl.handle.net/10174/6794
dc.language.isoengpor
dc.publisherSpringerpor
dc.rightsopenAccesspor
dc.subjectCaenorhabditis eleganspor
dc.subjectBursaphelenchus xylophiluspor
dc.subjectCYTOGENETICSpor
dc.titleDevelopmental biology and cytogenetics of B. xylophiluspor
dc.title.alternativePine wilt disease: a worldwide threat to forest ecosystemspor
dc.typebookPartpor
degois.publication.firstPage91por
degois.publication.lastPage100por
degois.publication.titlePine wilt disease: a worldwide threat to forest ecosystems.por

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