Properties of Degradable Polyhydroxyalkanoates Synthesized from New Waste Fish Oils (WFOs)

Author:

Zhila Natalia O.12,Kiselev Evgeniy G.12ORCID,Volkov Vladimir V.3,Mezenova Olga Ya.3,Sapozhnikova Kristina Yu.12ORCID,Shishatskaya Ekaterina I.12ORCID,Volova Tatiana G.12

Affiliation:

1. Institute of Biophysics SB RAS, Federal Research Center “Krasnoyarsk Science Center SB RAS”, 50/50 Akademgorodok, Krasnoyarsk 660036, Russia

2. Basic Department of Biotechnology, School of Fundamental Biology and Biotechnology, Siberian Federal University, 79 Svobodnyi Av., Krasnoyarsk 660041, Russia

3. Centre for Advanced Protein Use Technologies, Kaliningrad State Technical University, Sovetsky Avenue, 1, Kaliningrad 236022, Russia

Abstract

The synthesis of PHA was first investigated using WFOs obtained from smoked-sprat heads, substandard fresh sprats, and fresh mackerel heads and backbones. All the WFOs ensured the growth of the wild-type strain Cupriavidus necator B-10646 and the synthesis of PHA, regardless of the degree of lipid saturation (from 0.52 to 0.65) and the set and ratio of fatty acids (FA), which was represented by acids with chain lengths from C14 to C24. The bacterial biomass concentration and PHA synthesis were comparable (4.1–4.6 g/L and about 70%) when using WFO obtained from smoked-sprat heads and fresh mackerel, and it was twice as high as the bacterial biomass concentration from the fresh sprat waste. This depended on the type of WFO, the bacteria synthesized P(3HB) homopolymer or P(3HB-co-3HV-co-3HHx) copolymer, which had a lower degree of crystallinity (Cx 71%) and a lower molecular weight (Mn 134 kDa) compared to the P(3HB) (Mn 175–209 kDa and Cx 74–78%) at comparable temperatures (Tmelt and Tdegr of 158–168 °C and 261–284 °C, respectively). The new types of WFO, studied for the first time, are suitable as a carbon substrates for PHA synthesis. The WFOs obtained in the production of canned Baltic sprat and Baltic mackerel can be considered a promising and renewable substrate for PHA biosynthesis.

Funder

Russian Science Foundation

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

Reference77 articles.

1. Letcher, T.M. (2020). Plastic Waste and Recycling: Environmental Impact, Societal Issues, Prevention, and Solutions, Academic Press.

2. Production, use, and fate of all plastics ever made;Geyer;Sci. Adv.,2017

3. Exceptional and rapid accumulation of anthropogenic debris on one of the world’s most remote and pristine islands;Lavers;Proc. Natl. Acad. Sci. USA,2017

4. Tan, J., Jia, S., and Ramakrishna, S. (2023). Accelerating Plastic Circularity: A Critical Assessment of the Pathways and Processes to Circular Plastics. Processes, 11.

5. United Nations Environment Programme (UNEP) (2022). Plastics Science, United Nations Environment Programme (UNEP). UNEP/PP/INC.1/7.

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