Inhibition of Serine Protease, α-Amylase and Growth of Phytopathogenic Fungi by Antimicrobial Peptides from Capsicum chinense Fruits
Plant fungal diseases cause major problems for the global economy. Antimicrobial peptides have aroused great interest in the control of phytopathogens, as they are natural molecules and have a broad spectrum of inhibitory activity. Herein, we have tried to identify and characterize antimicrobial pep...
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Veröffentlicht in: | Probiotics and antimicrobial proteins 2023-06, Vol.15 (3), p.502-515 |
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Sprache: | eng |
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Zusammenfassung: | Plant fungal diseases cause major problems for the global economy. Antimicrobial peptides have aroused great interest in the control of phytopathogens, as they are natural molecules and have a broad spectrum of inhibitory activity. Herein, we have tried to identify and characterize antimicrobial peptides present in fruits of
Capsicum chinense
and to evaluate their enzymatic and antifungal activities. The retained fraction obtained in the anion exchange chromatography with strong antifungal activity was subjected to molecular exclusion chromatography and obtained four fractions named G1, G2, G3, and G4. The 6.0-kDa protein band of G2 showed similarity with protease inhibitors type II, and it was able to inhibit 100% of trypsin and α-amylase activities. The protein band with approximately 6.5 kDa of G3 showed similarity with sequences of protease inhibitors from genus
Capsicum
and showed growth inhibition of 48% for
Colletotrichum lindemuthianum
, 49% for
Fusarium lateritium
, and 51% for
F. solani
and
F. oxysporum
. Additionally, G3 causes morphological changes, membrane permeabilization, and ROS increase in
F. oxysporum
cells. The 9-kDa protein band of G4 fraction was similar to a nsLTP type 1, and a protein band of 6.5 kDa was similar to a nsLTP type 2. The G4 fraction was able to inhibit 100% of the activities of glycosidases tested and showed growth inhibition of 35 and 50% of
F. oxysporum
and
C. lindemuthianum
, respectively.
C. chinense
fruits have peptides with antifungal activity and enzyme inhibition with biotechnological potential. |
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ISSN: | 1867-1306 1867-1314 |
DOI: | 10.1007/s12602-021-09865-6 |