Identification of Novel Hexapeptides Bioactive against Phytopathogenic Fungi through Screening of a Synthetic Peptide Combinatorial Library
- 1 May 2002
- journal article
- Published by American Society for Microbiology in Applied and Environmental Microbiology
- Vol. 68 (5) , 2453-60
- https://doi.org/10.1128/aem.68.5.2453-2460.2002
Abstract
The purpose of the present study was to improve the antifungal activity against selected phytopathogenic fungi of the previously identified hexapeptide PAF19. We describe some properties of a set of novel synthetic hexapeptides whose D-amino acid sequences were obtained through screening of a synthetic peptide combinatorial library in a positional scanning format. As a result of the screening, 12 putative bioactive peptides were identified, synthesized, and assayed. The peptides PAF26 (Ac-rkkwfw-NH(2)), PAF32 (Ac-rkwhfw-NH(2)), and PAF34 (Ac-rkwlfw-NH(2)) showed stronger activity than PAF19 against isolates of Penicillium digitatum, Penicillium italicum, and Botrytis cinerea. PAF26 and PAF32, but not PAF34, were also active against Fusarium oxysporum. Penicillium expansum was less susceptible to all four PAF peptides, and only PAF34 showed weak activity against it. Assays were also conducted on nontarget organisms, and PAF26 and PAF32 showed much-reduced toxicity to Escherichia coli and Saccharomyces cerevisiae, demonstrating selectivity towards certain filamentous fungi. Thus, the data showed distinct activity profiles for peptides differentiated by just one or two residue substitutions. Our conclusion from this observation is that a specificity factor is involved in the activity of these short peptides. Furthermore, PAF26 and PAF32 displayed activities against P. digitatum, P. italicum, and B. cinerea similar to that of the hemolytic 26-amino acid melittin, but they did not show the high toxicity of melittin towards bacteria and yeasts. The four peptides acted additively, with no synergistic interactions among them, and PAF26 was shown to have improved activity over PAF19 in in vivo orange fruit decay experiments.Keywords
This publication has 47 references indexed in Scilit:
- Inhibition of Fungal and Bacterial Plant Pathogens by Synthetic Peptides: In Vitro Growth Inhibition, Interaction Between Peptides and Inhibition of Disease ProgressionMolecular Plant-Microbe Interactions®, 2000
- Identification and Characterization of a Hexapeptide with Activity Against Phytopathogenic Fungi That Cause Postharvest Decay in FruitsMolecular Plant-Microbe Interactions®, 2000
- Snakin-1, a Peptide from Potato That Is Active Against Plant PathogensMolecular Plant-Microbe Interactions®, 1999
- Cecropin A—Derived Peptides Are Potent Inhibitors of Fungal Plant PathogensMolecular Plant-Microbe Interactions®, 1998
- Plant defense peptidesBiopolymers, 1998
- Animal antimicrobial peptides: An overviewBiopolymers, 1998
- Enhanced tolerance to bacterial pathogens caused by the transgenic expression of barley lipid transfer protein LTP2The Plant Journal, 1997
- Expression of an Engineered Cecropin Gene Cassette in Transgenic Tobacco Plants Confers Disease Resistance to Pseudomonas syringae pv. tabaciPhytopathology®, 1997
- Solid phase peptide synthesis utilizing 9‐fluorenylmethoxycarbonyl amino acidsInternational Journal of Peptide and Protein Research, 1990
- Binding and action of cecropin and cecropin analogues: Antibacterial peptides from insectsBiochimica et Biophysica Acta (BBA) - Biomembranes, 1988