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A basic serine protease from Paecilomyces lilacinus with biological activity against Meloidogyne hapla eggs
P J Bonants1, P F Fitters, H Thijs
1DLO Research Institute for Plant Protection (IPO-DLO), Wageningen, The Netherlands.
Abstract:
Scanning electron micrographs of the nematode-egg-parasitic fungus Paecilomyces lilacinus infecting eggs of the root-knot nematode Meloidogyne spp. suggested the involvement of lytic enzymes. When grown on a liquid mineral salts medium, supplemented with different substrates as the sole N- and C-source, the fungus produced an extracellular protease. Colloidal chitin, vitellin and intact eggs of the root-knot nematode Meloidogyne hapla induced proteolytic activity that was repressed by glucose. The protease was partially purified from the culture filtrate by affinity chromatography. It has a molecular mass of 33.5 kDa, a pH optimum of 10.3, a temperature optimum of 60 degrees C and an isoelectric point above pH 10.2. The enzyme was completely inhibited by PMSF. The amino acid sequence, as derived from the nucleotide sequence of a cDNA clone, had high homology with several subtilisin-like serine proteases. It was shown that the purified enzyme degrades vitellin. The protease quantitatively bound to nematode eggs, and eggs incubated with the purified protease eventually floated. Incubation of the purified protease with nematode eggs significantly influenced their development as demonstrated by time-lapse microscopy. Immature eggs were highly vulnerable to protease treatments, whereas those containing a juvenile were more resistant. In addition, hatched larvae were not visibly affected by the protease. It can be concluded that the serine protease might play a role in penetration of the fungus through the egg-shell of nematodes.
Insights
Paecilomyces lilacinus secretes a serine protease that degrades nematode eggshells. This enzyme
Area of Science:
- Agricultural Science
- Microbiology
- Biochemistry
Background:
- The nematode-egg-parasitic fungus Paecilomyces lilacinus infects Meloidogyne spp. eggs.
- Lytic enzymes are suggested to be involved in the infection process.
Purpose of the Study:
- To investigate the role of extracellular proteases produced by P. lilacinus.
- To characterize the properties and function of a specific protease involved in nematode egg infection.
Main Methods:
- Culturing P. lilacinus on various substrates to induce protease production.
- Partial purification of the extracellular protease using affinity chromatography.
- Enzyme characterization (molecular mass, pH/temperature optima, isoelectric point) and sequence homology analysis.
- Assessing the enzyme's effect on nematode egg components and development.
Main Results:
- P. lilacinus produced an extracellular protease induced by chitin, vitellin, and nematode eggs, repressed by glucose.
- The purified serine protease has a molecular mass of 33.5 kDa, pH optimum of 10.3, and temperature optimum of 60°C.
- The enzyme degraded vitellin, bound to nematode eggs, and affected egg development, with immature eggs being more vulnerable.
Conclusions:
- The identified serine protease plays a potential role in the penetration of P. lilacinus through nematode eggshells.
- The enzyme's ability to degrade egg components and influence development highlights its significance in the fungus-nematode interaction.