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Analysis of protease production in the microbial antagonist Pythium oligandrum and host/prey Pythium myriotylum protease inhibitors

2026/05/16 by Jinhao Chen, Lunji Wang, Taha Majid Mahmood Sheikh +8 · 1 voice
Veterinary · Biochemistry, Genetics and Molecular Biology · Agricultural and Biological Sciences · #Infectious Diseases and Mycology #Biological Research and Disease Studies #Plant Pathogens and Resistance

paper · doi:10.1080/21501203.2026.2660460

openalex publication_date 2026/05/16 · openalex created_date 2026/05/18 · openalex updated_date 2026/06/15

Abstract

Previous transcriptome analysis suggested that proteases of the microbial antagonist Pythium oligandrum and protease inhibitors of its host/prey Pythium myriotylum were important in their interactions. P. oligandrum protease activity was induced when cultured with inactivated oomycete mycelial powder, and exo-proteomic analysis showed significantly higher abundance of 25 proteases in cultures with mycelial powder. Two interaction-upregulated P. myriotylum Kazal-type serine protease inhibitors (PmKSPI-7 and PmKSPI-11) were heterologously produced, and PmKSPI-11, but not PmKSPI-7, inhibited P. oligandrum protease activities. PmKSPI-11 was a strong inhibitor of porcine trypsin activity (Ki = ~6.5 nmol/L), while neither trypsin nor chymotrypsin activity was inhibited by PmKSPI-7. P1-P2 loop residues and protein modeling analyses suggested that the lysine P1 residue in PmKSPI-11 may explain the differences in inhibitory properties. PmKSPI-11 supplementation of skim milk agar reduced P. oligandrum growth, but supplementation of cV8 agar did not substantially reduce P. oligandrum antagonism towards P. myriotylum. The role of PmKSPI-11 may be in reducing the ability of P. oligandrum to derive nutrition from peptides rather than directly counter-antagonizing P. oligandrum in a confrontation. Understanding potential P. myriotylum counter-antagonism abilities, such as protease inhibitors, may improve the biological control of crop diseases caused by P. myriotylum in more complex environments.

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