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Screening of Bacillus sp. protease for hydrolysis of gelatine extracted from fish waste and potential applications for waste valorisation

Samo za registrovane korisnike
2023
Autori
Šokarda Slavić, Marinela
Margetić, Aleksandra
Ristović, Marina
Pavlović, Marija
Stojanović, Sanja
Drulović, Nenad
Vujčić, Zoran
Konferencijski prilog (Objavljena verzija)
Metapodaci
Prikaz svih podataka o dokumentu
Apstrakt
Fish processing generates a large amount of waste products; nearly 75 % of the total fish weight consists of scales, skins, heads, viscera, and bones. These waste by-products are often dumped in landfills or the ocean, contributing to environmental pollution. Solid fish waste has a high collagen content and can be utilized for the extraction of different products such as gelatine, which can be used in different food and pharmaceutical industries. Fish gelatine contains all biogenic amino acids and can be used as a dietary supplement, thus increasing the utilization of fish waste and reducing environmental pollution. Recently, a strong worldwide focus has been directed towards the discovery of new microbial proteases for industrial applications. For that purpose, the Bacillus sp. strains from the laboratory bank were screened for the ability to secrete alkaline proteases. Bacterial strains that produced a larger clear zone on the gelatine agar plate were selected for further study. Sel...ected bacterial strains were cultivated under submerged conditions for the purpose of producing proteases. The supernatant from each isolate was used as a crude enzyme extract for testing gelatine proteolytic activity and hydrolysis products. Bacillus sp. strains 12B, 16A, 17B and 24B showed a high degree of hydrolysis of the gelatine waste and the ability to form proteins of small molecular masses after one hour of hydrolysis. Of these, sp. 12B was the most potent, having twice the proteolytic activity determined by the TNBS method.

Ključne reči:
gelatine / hydrolysis / protease / Bacillus sp.
Izvor:
Programme and abstract book - Biotechnology for a circular bioeconomy: carbon capture, waste recycling and mitigation of global warming, 28-29 March 2023, online, 2023, 66-66
Izdavač:
  • European Federation of Biotechnology
Finansiranje / projekti:
  • Ministarstvo prosvete, nauke i tehnološkog razvoja Republike Srbije, Ugovor br. 200026 (Univerzitet u Beogradu, Institut za hemiju, tehnologiju i metalurgiju - IHTM) (RS-200026)
  • Ministarstvo prosvete, nauke i tehnološkog razvoja Republike Srbije, Ugovor br. 200168 (Univerzitet u Beogradu, Hemijski fakultet) (RS-200168)
  • Ministarstvo prosvete, nauke i tehnološkog razvoja Republike Srbije, Ugovor br. 200017 (Univerzitet u Beogradu, Institut za nuklearne nauke Vinča, Beograd-Vinča) (RS-200017)
[ Google Scholar ]
Handle
https://hdl.handle.net/21.15107/rcub_cer_6028
URI
https://cer.ihtm.bg.ac.rs/handle/123456789/6028
Kolekcije
  • Radovi istraživača / Researchers' publications
Institucija/grupa
IHTM
TY  - CONF
AU  - Šokarda Slavić, Marinela
AU  - Margetić, Aleksandra
AU  - Ristović, Marina
AU  - Pavlović, Marija
AU  - Stojanović, Sanja
AU  - Drulović, Nenad
AU  - Vujčić, Zoran
PY  - 2023
UR  - https://cer.ihtm.bg.ac.rs/handle/123456789/6028
AB  - Fish processing generates a large amount of waste products; nearly 75 % of the total fish weight consists of scales, skins, heads, viscera, and bones. These waste by-products are often dumped in landfills or the ocean, contributing to environmental pollution. Solid fish waste has a high collagen content and can be utilized for the extraction of different products such as gelatine, which can be used in different food and pharmaceutical industries. Fish gelatine contains all biogenic amino acids and can be used as a dietary supplement, thus increasing the utilization of fish waste and reducing environmental pollution.
Recently, a strong worldwide focus has been directed towards the discovery of new microbial proteases for industrial applications. For that purpose, the Bacillus sp. strains from the laboratory bank were screened for the ability to secrete alkaline proteases. Bacterial strains that produced a larger clear zone on the gelatine agar plate were selected for further study. Selected bacterial strains were cultivated under submerged conditions for the purpose of producing proteases. The supernatant from each isolate was used as a crude enzyme extract for testing gelatine proteolytic activity and hydrolysis products. Bacillus sp. strains 12B, 16A, 17B and 24B showed a high degree of hydrolysis of the gelatine waste and the ability to form proteins of small molecular masses after one hour of hydrolysis. Of these, sp. 12B was the most potent, having twice the proteolytic activity determined by the TNBS method.
PB  - European Federation of Biotechnology
C3  - Programme and abstract book - Biotechnology for a circular bioeconomy: carbon capture, waste recycling and mitigation of global warming, 28-29 March 2023, online
T1  - Screening of Bacillus sp. protease for hydrolysis of gelatine extracted from fish waste and potential applications for waste valorisation
SP  - 66
EP  - 66
UR  - https://hdl.handle.net/21.15107/rcub_cer_6028
ER  - 
@conference{
author = "Šokarda Slavić, Marinela and Margetić, Aleksandra and Ristović, Marina and Pavlović, Marija and Stojanović, Sanja and Drulović, Nenad and Vujčić, Zoran",
year = "2023",
abstract = "Fish processing generates a large amount of waste products; nearly 75 % of the total fish weight consists of scales, skins, heads, viscera, and bones. These waste by-products are often dumped in landfills or the ocean, contributing to environmental pollution. Solid fish waste has a high collagen content and can be utilized for the extraction of different products such as gelatine, which can be used in different food and pharmaceutical industries. Fish gelatine contains all biogenic amino acids and can be used as a dietary supplement, thus increasing the utilization of fish waste and reducing environmental pollution.
Recently, a strong worldwide focus has been directed towards the discovery of new microbial proteases for industrial applications. For that purpose, the Bacillus sp. strains from the laboratory bank were screened for the ability to secrete alkaline proteases. Bacterial strains that produced a larger clear zone on the gelatine agar plate were selected for further study. Selected bacterial strains were cultivated under submerged conditions for the purpose of producing proteases. The supernatant from each isolate was used as a crude enzyme extract for testing gelatine proteolytic activity and hydrolysis products. Bacillus sp. strains 12B, 16A, 17B and 24B showed a high degree of hydrolysis of the gelatine waste and the ability to form proteins of small molecular masses after one hour of hydrolysis. Of these, sp. 12B was the most potent, having twice the proteolytic activity determined by the TNBS method.",
publisher = "European Federation of Biotechnology",
journal = "Programme and abstract book - Biotechnology for a circular bioeconomy: carbon capture, waste recycling and mitigation of global warming, 28-29 March 2023, online",
title = "Screening of Bacillus sp. protease for hydrolysis of gelatine extracted from fish waste and potential applications for waste valorisation",
pages = "66-66",
url = "https://hdl.handle.net/21.15107/rcub_cer_6028"
}
Šokarda Slavić, M., Margetić, A., Ristović, M., Pavlović, M., Stojanović, S., Drulović, N.,& Vujčić, Z.. (2023). Screening of Bacillus sp. protease for hydrolysis of gelatine extracted from fish waste and potential applications for waste valorisation. in Programme and abstract book - Biotechnology for a circular bioeconomy: carbon capture, waste recycling and mitigation of global warming, 28-29 March 2023, online
European Federation of Biotechnology., 66-66.
https://hdl.handle.net/21.15107/rcub_cer_6028
Šokarda Slavić M, Margetić A, Ristović M, Pavlović M, Stojanović S, Drulović N, Vujčić Z. Screening of Bacillus sp. protease for hydrolysis of gelatine extracted from fish waste and potential applications for waste valorisation. in Programme and abstract book - Biotechnology for a circular bioeconomy: carbon capture, waste recycling and mitigation of global warming, 28-29 March 2023, online. 2023;:66-66.
https://hdl.handle.net/21.15107/rcub_cer_6028 .
Šokarda Slavić, Marinela, Margetić, Aleksandra, Ristović, Marina, Pavlović, Marija, Stojanović, Sanja, Drulović, Nenad, Vujčić, Zoran, "Screening of Bacillus sp. protease for hydrolysis of gelatine extracted from fish waste and potential applications for waste valorisation" in Programme and abstract book - Biotechnology for a circular bioeconomy: carbon capture, waste recycling and mitigation of global warming, 28-29 March 2023, online (2023):66-66,
https://hdl.handle.net/21.15107/rcub_cer_6028 .

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