Libraries for two-hybrid screening of yeast and hyphal growth forms in Zymoseptoria tritici

W. Ma, S. Kilaru, C. Collins, M. Courbot, G. Steinberg

Research output: Contribution to journalArticlepeer-review

5 Citations (Scopus)

Abstract

Pathogenic fungi are constantly emerging resistance to anti-fungal treatments. Therefore, identification of new fungicide targets is important. Good candidates are essential fungal proteins and their regulators. An efficient way to reveal the molecular environment of an essential protein is the search for interacting factors. Here, we establish three yeast two-hybrid libraries, covering yeast and hyphal stages of the wheat pathogen Zymoseptoria tritici. No detectable genomic DNA was present in any of the 3 libraries. Random amplification revealed that the libraries include cDNA fragments of up to 2000. bp, suggesting that small-to-medium sized proteins are represented therein. Indeed, full-length cDNAs of five proteins were found in all libraries. The full-length cDNA of large chitin synthase gene mcs1 (5742. bp with introns; 5568. bp without introns) could not be amplified, but its 5' and 3' regions were represented, suggesting that even larger genes are covered in all libraries. Finally, we tested for the expected interaction of the autophagy proteins ZtAtg4 and ZtAtg8 in Z. tritici, and then used ZtAtg4 to screen one of the two-hybrid libraries. Indeed, we found ZtAtg8 as a positive interaction partner, confirming that interacting proteins can be identified. Thus, these molecular tools promise to be useful in identifying novel fungicide target proteins.

Original languageEnglish
Pages (from-to)94-101
Number of pages8
JournalFungal Genetics and Biology
Volume79
DOIs
Publication statusPublished - 2015

Keywords

  • Mycosphaerella graminicola
  • Pathogenic fungi
  • Protein-protein interaction
  • Septoria tritici blotch
  • Wheat disease

Fingerprint

Dive into the research topics of 'Libraries for two-hybrid screening of yeast and hyphal growth forms in Zymoseptoria tritici'. Together they form a unique fingerprint.

Cite this