-
and how it contributes to pathologies by inducing a lasting reprogramming of infected host cells. This project aims to apply omics approaches, in combination with molecular genetic, microscopic, and
-
, the mechanical state of the wall, or a defined combination of both. The resolved model will also predict the conditions under which the wall fails, with direct relevance to controlled, low-energy cell disruption
-
addresses these issues by combining MIP with quantitative phase imaging. Based on an existing wide-field MIP setup, the fellowship holder will employ a powerful pump laser for increased sensitivity and
-
remodelling, and Brillouin microscopy combined with live-cell signalling reporters will be used to characterise the tissue-level responses these perturbations elicit. The work is carried out in Arabidopsis