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dc.contributor.authorBuist, A
dc.date.accessioned2023-06-12T15:08:02Z
dc.date.issued2023-06-12
dc.date.updated2023-06-12T10:54:54Z
dc.description.abstractMicrotubules contribute to plant cellular defence against pathogens. Identifying their location and structure within the cell is impacted by the diffraction limit of light imposed upon confocal microscopy. This places an upper limit of resolution at ~200 nm, whilst the width of microtubules is ~25 nm. DNA-PAINT is a new super-resolution microscopy technique that has not previously been successfully applied to the whole mount imaging of plant cells. This dissertation demonstrates the successful preservation of Arabidopsis thaliana root cell microtubule arrays through high-pressure freeze and quick freeze substitution fixation, followed by imaging using DNA-PAINT. The resolution of this image was 44.8 nm, successfully surpassing the diffraction barrier, but not achieving resolution increases reported in the literature. The second half of this project proposes a new sampling methodology, known as “propagating lune”, for use in Kalman filter dependent tracking of plant microtubules. The parameters of the Kalman filter were optimised through the tracking of synthetic data generated by functions developed over this course of work, displaying mean tracking accuracies of > 80% across three levels of data noise. However, the optimised Kalman filter showed mixed results when this was applied to real DNA-PAINT coordinate data. Further optimisation of the fixation and imaging methodology of whole mount plant cell DNA-PAINT imaging, as well as refinements to the Kalman filter architecture and training methodology, may show future promise in the automated analysis of plant microtubules as they pertain to cytoskeletal response to attacking pathogens.en_GB
dc.description.sponsorshipBiotechnology & Biological Sciences Research Council (BBSRC) BBSRC ALERT award BB/S019499/1 BBSRC TRDF award BB/P026508/1en_GB
dc.identifier.grantnumberBB/T017899/1en_GB
dc.identifier.urihttp://hdl.handle.net/10871/133361
dc.language.isozhen_GB
dc.publisherUniversity of Exeteren_GB
dc.rights.embargoreasonThis thesis is embargoed until 12/Dec/2024 as the author is actively seeking publication of the thesis.en_GB
dc.subjectDNA-PAINTen_GB
dc.subjectSuper-resolutionen_GB
dc.subjectKalman Filteren_GB
dc.subjectMicrotubuleen_GB
dc.subjectPlant immunityen_GB
dc.titleDevelopment of a standard methodology for cryogenic fixation, DNA-PAINT super-resolution microscopy, and Bayesian analysis of the internal structures of healthy and infected plant cellsen_GB
dc.typeThesis or dissertationen_GB
dc.date.available2023-06-12T15:08:02Z
dc.contributor.advisorDeeks, Michael
dc.contributor.advisorChristmas, Jacqueline
dc.publisher.departmentBiological Sciences
dc.rights.urihttp://www.rioxx.net/licenses/all-rights-reserveden_GB
dc.type.degreetitleMbyRes in Biological Sciences
dc.type.qualificationlevelMasters
dc.type.qualificationnameMbyRes Dissertation
rioxxterms.versionNAen_GB
rioxxterms.licenseref.startdate2023-06-12
rioxxterms.typeThesisen_GB


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