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Comparative proteomics of osmotic signal transduction mutants in <i>Botrytis cinerea</i> explain loss of pathogenicity phenotypes and highlight interaction with cAMP and Ca <sup>2+</sup> signalling pathways

2019-02-22

Abstract excerpt

<h4>SUMMARY</h4> Signal transduction (ST) is essential for rapid adaptive responses to changing environmental conditions through rapid post-translational modifications of signalling proteins and downstream effectors that regulate the activity of target proteins and/or the expression of downstream genes. We have performed a comparative proteomics study of ST mutants in the phytopathogenic fungus Botrytis cinerea...

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Literature Corpus work
1f699883-fcfd-5bcd-9310-a1f8d583843d
DOI
10.1101/557983
Open publication

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Comparative proteomics of osmotic signal transduction mutants in <i>Botrytis cinerea</i> explain loss of pathogenicity phenotypes and highlight interaction with cAMP and Ca <sup>2+</sup> signalling pathwaysDOI 10.1101/557983
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