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Role of the alternative sigma factors sE and sN in Xylella fastidiosa.

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Author(s):
José Freire da Silva Neto
Total Authors: 1
Document type: Doctoral Thesis
Press: São Paulo.
Institution: Universidade de São Paulo (USP). Instituto de Ciências Biomédicas (ICB/SDI)
Defense date:
Examining board members:
Marilis do Valle Marques; Shaker Chuck Farah; José Gregorio Cabrera Gomez; Luis Eduardo Soares Netto; Marie Anne van Sluys
Advisor: Marilis do Valle Marques
Abstract

Mutant strains were obtained for the sigma factors <font face=\"symbol\">sE (RpoE) and <font face=\"symbol\">sN (RpoN) in Xylella fastidiosa. The rpoE mutant showed to be sensitive to ethanol and heat shock. Microarray and quantitative RT-PCR analyses and determination of transcription start sites permitted to define the <font face=\"symbol\">sE regulon under heat shock. Co-transcription of the genes encoding <font face=\"symbol\">sE , its anti-sigma factor and a protease was observed, and <font face=\"symbol\">sE did not present auto-regulation, but it regulated the gene encoding the anti-sigma. Similar analyses indicated that the pilA gene, encoding the pilin of the type IV fimbriae, is positively regulated by <font face=\"symbol\">sN, while the operon encoding proteins of the type I fimbriae is negatively regulated, what explains the increased biofilm formation and auto-aggregation in the rpoN strain. Temporal expression profile of wild type strain J1a12 under nitrogen starvation was determined, as well as genes induced by nitrogen starvation via <font face=\"symbol\">sN. Thus, <font face=\"symbol\">sN regulates genes encoding fimbriae and genes for nitrogen starvation response in Xylella fastidiosa. (AU)