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. 2023 Feb;16(2):177-183.
doi: 10.1111/1751-7915.14122. Epub 2022 Aug 5.

Insights into hydrophobic waste valorization for the production of value-added oleochemicals

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Insights into hydrophobic waste valorization for the production of value-added oleochemicals

Sachin Vyas et al. Microb Biotechnol. 2023 Feb.
No abstract available

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Conflict of interest statement

The authors declare no conflict of interest.

Figures

FIGURE 1
FIGURE 1
Insights into hydrophobic waste valorization by oleaginous microorganisms.
FIGURE 2
FIGURE 2
Role of metabolic engineering in the utilization of hydrophobic wastes by oleaginous microorganisms: Challenges and approaches (1) Missing gene annotation through advanced gene clustering; (2) Identification and characterization of potential novel lipase and lipolytic microorganisms; (3) Identification of mechanism and pathway for FFA transport; (4) Transformation into desired lipid profile using over‐expression or knock‐out of desaturase and similar enzymes; (5) Expression of enzymes related to fatty alcohol production. Adapted and modified from (Fabiszewska et al., 2022) [ALA, α‐linolenic acid; DAG, Diacylglycerols; DHA, Docosahexaenoic acid, EPA, Eicosapentaenoic acid; DHAP, Dihydroxy acetone phosphate; ER, Endoplasmic reticulum; FFA, Free fatty acids; MAG, Monoacylglycerols; MC, Mitochondria; NC, Nucleus; OAA, Oxaloacetic acid; PS, Peroxisome; PUFA, Polyunsaturated fatty acids; TAG, Triacyclglycerols; α‐KG, α‐ketoglutarate].

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