Skip to main navigation Skip to search Skip to main content

Assessing adhesion forces of type I and type IV pili of Xylella fastidiosa bacteria by use of a microfluidic flow chamber

  • Leonardo De La Fuente
  • , Emilie Montanes
  • , Yizhi Meng
  • , Yaxin Li
  • , Thomas J. Burr
  • , H. C. Hoch
  • , Mingming Wu
  • Cornell University, New York State Agricultural Experiment Station
  • Cornell University

Research output: Contribution to journalArticlepeer-review

120 Scopus citations

Abstract

Xylella fastidiosa, a bacterium responsible for Pierce's disease in grapevines, possesses both type I and type IV pili at the same cell pole. Type IV pili facilitate twitching motility, and type I pili are involved in biofilm development. The adhesiveness of the bacteria and the roles of the two pili types in attachment to a glass substratum were evaluated using a microfluidic flow chamber in conjunction with pilus-defective mutants. The average adhesion force necessary to detach wild-type X. fastidiosa cells was 147 ± 11 pN. Mutant cells possessing only type I pili required a force of 204 ± 22 pN for removal, whereas cells possessing only type IV pili required 119 ± 8 pN to dislodge these cells. The experimental results demonstrate that microfluidic flow chambers are useful and convenient tools for assessing the drag forces necessary for detaching bacterial cells and that with specific pilus mutants, the role of the pilus type can be further assessed.

Original languageEnglish
Pages (from-to)2690-2696
Number of pages7
JournalApplied and Environmental Microbiology
Volume73
Issue number8
DOIs
StatePublished - Apr 2007

Fingerprint

Dive into the research topics of 'Assessing adhesion forces of type I and type IV pili of Xylella fastidiosa bacteria by use of a microfluidic flow chamber'. Together they form a unique fingerprint.

Cite this