4.7 Article

Antibacterial and antioxidant properties of humic substances from composted agricultural biomasses

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SPRINGER
DOI: 10.1186/s40538-022-00291-6

关键词

Humic substances; Green compost Seed germination; Structure-activity relationship; High-Performance Size-Exclusion Chromatography (HPSEC); C-13-CPMAS NMR; Thermochemolysis; Diffusion disk; Minimal inhibitory concentration; Radical scavenging capacity

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  1. University of Naples Federico II

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The extraction of bioactive humic substances from composts may provide a sustainable and eco-compatible way to enhance the value of agricultural byproducts. These substances exhibit antimicrobial activity against certain bacterial strains and also show bioactivity in seed germination experiments.
Background: Bioactive components isolated from composted agricultural biomasses have been receiving progressive attention, because they may improve the antibiotic susceptibility of drug resistant bacterial strains. Here, three different humic substances (HS) were isolated from composted artichoke (HS-CYN) and pepper (HS-PEP) wastes, and from coffee grounds (HS-COF), and characterized by infrared spectrometry, NMR spectroscopy, thermochemolysis-GC/MS, and high-performance size-exclusion chromatography. The antibacterial activity of HS was evaluated against some pathogenic bacterial strains, while their bioactivity was determined by a germination assay on basil (Red-Violet variety) seeds. Results: HS-CYN and HS-PEP exhibited the largest antioxidant activity and most significant antimicrobial capacity against some gram-positive bacterial strains, such as Staphylococcus aureus and Enterococcus faecalis. The same HS determined a significant increase of both root and epicotyls in seed germination experiments. The bioactivity of HS was related not only to their specific molecular composition but also to the conformational stability of their suprastructures. Specifically, the greatest bioactive and antimicrobial properties were related to the largest abundance of hydrophobic aromatic and phenolic components and to a more rigid conformational arrangement, that, in turn, appeared to be related to a small fragmentation degree of lignin structures. Conclusions: Our results showed that extraction of bioactive HS from green composts may be a sustainable and eco-compatible way to valorise agricultural byproducts. HS may be indeed exploited as substrates to produce novel materials not only to improve plant productivity but also for medical applications.

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