Cargando…

Irradiation of Yarrowia lipolytica NRRL YB-567 creating novel strains with enhanced ammonia and oil production on protein and carbohydrate substrates

Increased interest in sustainable production of renewable diesel and other valuable bioproducts is redoubling efforts to improve economic feasibility of microbial-based oil production. Yarrowia lipolytica is capable of employing a wide variety of substrates to produce oil and valuable co-products. W...

Descripción completa

Detalles Bibliográficos
Autores principales: Lindquist, Mitch R., López-Núñez, Juan Carlos, Jones, Marjorie A., Cox, Elby J., Pinkelman, Rebecca J., Bang, Sookie S., Moser, Bryan R., Jackson, Michael A., Iten, Loren B., Kurtzman, Cletus P., Bischoff, Kenneth M., Liu, Siqing, Qureshi, Nasib, Tasaki, Kenneth, Rich, Joseph O., Cotta, Michael A., Saha, Badal C., Hughes, Stephen R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer Berlin Heidelberg 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4628078/
https://www.ncbi.nlm.nih.gov/pubmed/26272089
http://dx.doi.org/10.1007/s00253-015-6852-2
_version_ 1782398376377057280
author Lindquist, Mitch R.
López-Núñez, Juan Carlos
Jones, Marjorie A.
Cox, Elby J.
Pinkelman, Rebecca J.
Bang, Sookie S.
Moser, Bryan R.
Jackson, Michael A.
Iten, Loren B.
Kurtzman, Cletus P.
Bischoff, Kenneth M.
Liu, Siqing
Qureshi, Nasib
Tasaki, Kenneth
Rich, Joseph O.
Cotta, Michael A.
Saha, Badal C.
Hughes, Stephen R.
author_facet Lindquist, Mitch R.
López-Núñez, Juan Carlos
Jones, Marjorie A.
Cox, Elby J.
Pinkelman, Rebecca J.
Bang, Sookie S.
Moser, Bryan R.
Jackson, Michael A.
Iten, Loren B.
Kurtzman, Cletus P.
Bischoff, Kenneth M.
Liu, Siqing
Qureshi, Nasib
Tasaki, Kenneth
Rich, Joseph O.
Cotta, Michael A.
Saha, Badal C.
Hughes, Stephen R.
author_sort Lindquist, Mitch R.
collection PubMed
description Increased interest in sustainable production of renewable diesel and other valuable bioproducts is redoubling efforts to improve economic feasibility of microbial-based oil production. Yarrowia lipolytica is capable of employing a wide variety of substrates to produce oil and valuable co-products. We irradiated Y. lipolytica NRRL YB-567 with UV-C to enhance ammonia (for fertilizer) and lipid (for biodiesel) production on low-cost protein and carbohydrate substrates. The resulting strains were screened for ammonia and oil production using color intensity of indicators on plate assays. Seven mutant strains were selected (based on ammonia assay) and further evaluated for growth rate, ammonia and oil production, soluble protein content, and morphology when grown on liver infusion medium (without sugars), and for growth on various substrates. Strains were identified among these mutants that had a faster doubling time, produced higher maximum ammonia levels (enzyme assay) and more oil (Sudan Black assay), and had higher maximum soluble protein levels (Bradford assay) than wild type. When grown on plates with substrates of interest, all mutant strains showed similar results aerobically to wild-type strain. The mutant strain with the highest oil production and the fastest doubling time was evaluated on coffee waste medium. On this medium, the strain produced 0.12 g/L ammonia and 0.20 g/L 2-phenylethanol, a valuable fragrance/flavoring, in addition to acylglycerols (oil) containing predominantly C16 and C18 residues. These mutant strains will be investigated further for potential application in commercial biodiesel production.
format Online
Article
Text
id pubmed-4628078
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Springer Berlin Heidelberg
record_format MEDLINE/PubMed
spelling pubmed-46280782015-11-05 Irradiation of Yarrowia lipolytica NRRL YB-567 creating novel strains with enhanced ammonia and oil production on protein and carbohydrate substrates Lindquist, Mitch R. López-Núñez, Juan Carlos Jones, Marjorie A. Cox, Elby J. Pinkelman, Rebecca J. Bang, Sookie S. Moser, Bryan R. Jackson, Michael A. Iten, Loren B. Kurtzman, Cletus P. Bischoff, Kenneth M. Liu, Siqing Qureshi, Nasib Tasaki, Kenneth Rich, Joseph O. Cotta, Michael A. Saha, Badal C. Hughes, Stephen R. Appl Microbiol Biotechnol Applied Genetics and Molecular Biotechnology Increased interest in sustainable production of renewable diesel and other valuable bioproducts is redoubling efforts to improve economic feasibility of microbial-based oil production. Yarrowia lipolytica is capable of employing a wide variety of substrates to produce oil and valuable co-products. We irradiated Y. lipolytica NRRL YB-567 with UV-C to enhance ammonia (for fertilizer) and lipid (for biodiesel) production on low-cost protein and carbohydrate substrates. The resulting strains were screened for ammonia and oil production using color intensity of indicators on plate assays. Seven mutant strains were selected (based on ammonia assay) and further evaluated for growth rate, ammonia and oil production, soluble protein content, and morphology when grown on liver infusion medium (without sugars), and for growth on various substrates. Strains were identified among these mutants that had a faster doubling time, produced higher maximum ammonia levels (enzyme assay) and more oil (Sudan Black assay), and had higher maximum soluble protein levels (Bradford assay) than wild type. When grown on plates with substrates of interest, all mutant strains showed similar results aerobically to wild-type strain. The mutant strain with the highest oil production and the fastest doubling time was evaluated on coffee waste medium. On this medium, the strain produced 0.12 g/L ammonia and 0.20 g/L 2-phenylethanol, a valuable fragrance/flavoring, in addition to acylglycerols (oil) containing predominantly C16 and C18 residues. These mutant strains will be investigated further for potential application in commercial biodiesel production. Springer Berlin Heidelberg 2015-08-15 2015 /pmc/articles/PMC4628078/ /pubmed/26272089 http://dx.doi.org/10.1007/s00253-015-6852-2 Text en © The Author(s) 2015 Open Access This article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.
spellingShingle Applied Genetics and Molecular Biotechnology
Lindquist, Mitch R.
López-Núñez, Juan Carlos
Jones, Marjorie A.
Cox, Elby J.
Pinkelman, Rebecca J.
Bang, Sookie S.
Moser, Bryan R.
Jackson, Michael A.
Iten, Loren B.
Kurtzman, Cletus P.
Bischoff, Kenneth M.
Liu, Siqing
Qureshi, Nasib
Tasaki, Kenneth
Rich, Joseph O.
Cotta, Michael A.
Saha, Badal C.
Hughes, Stephen R.
Irradiation of Yarrowia lipolytica NRRL YB-567 creating novel strains with enhanced ammonia and oil production on protein and carbohydrate substrates
title Irradiation of Yarrowia lipolytica NRRL YB-567 creating novel strains with enhanced ammonia and oil production on protein and carbohydrate substrates
title_full Irradiation of Yarrowia lipolytica NRRL YB-567 creating novel strains with enhanced ammonia and oil production on protein and carbohydrate substrates
title_fullStr Irradiation of Yarrowia lipolytica NRRL YB-567 creating novel strains with enhanced ammonia and oil production on protein and carbohydrate substrates
title_full_unstemmed Irradiation of Yarrowia lipolytica NRRL YB-567 creating novel strains with enhanced ammonia and oil production on protein and carbohydrate substrates
title_short Irradiation of Yarrowia lipolytica NRRL YB-567 creating novel strains with enhanced ammonia and oil production on protein and carbohydrate substrates
title_sort irradiation of yarrowia lipolytica nrrl yb-567 creating novel strains with enhanced ammonia and oil production on protein and carbohydrate substrates
topic Applied Genetics and Molecular Biotechnology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4628078/
https://www.ncbi.nlm.nih.gov/pubmed/26272089
http://dx.doi.org/10.1007/s00253-015-6852-2
work_keys_str_mv AT lindquistmitchr irradiationofyarrowialipolyticanrrlyb567creatingnovelstrainswithenhancedammoniaandoilproductiononproteinandcarbohydratesubstrates
AT lopeznunezjuancarlos irradiationofyarrowialipolyticanrrlyb567creatingnovelstrainswithenhancedammoniaandoilproductiononproteinandcarbohydratesubstrates
AT jonesmarjoriea irradiationofyarrowialipolyticanrrlyb567creatingnovelstrainswithenhancedammoniaandoilproductiononproteinandcarbohydratesubstrates
AT coxelbyj irradiationofyarrowialipolyticanrrlyb567creatingnovelstrainswithenhancedammoniaandoilproductiononproteinandcarbohydratesubstrates
AT pinkelmanrebeccaj irradiationofyarrowialipolyticanrrlyb567creatingnovelstrainswithenhancedammoniaandoilproductiononproteinandcarbohydratesubstrates
AT bangsookies irradiationofyarrowialipolyticanrrlyb567creatingnovelstrainswithenhancedammoniaandoilproductiononproteinandcarbohydratesubstrates
AT moserbryanr irradiationofyarrowialipolyticanrrlyb567creatingnovelstrainswithenhancedammoniaandoilproductiononproteinandcarbohydratesubstrates
AT jacksonmichaela irradiationofyarrowialipolyticanrrlyb567creatingnovelstrainswithenhancedammoniaandoilproductiononproteinandcarbohydratesubstrates
AT itenlorenb irradiationofyarrowialipolyticanrrlyb567creatingnovelstrainswithenhancedammoniaandoilproductiononproteinandcarbohydratesubstrates
AT kurtzmancletusp irradiationofyarrowialipolyticanrrlyb567creatingnovelstrainswithenhancedammoniaandoilproductiononproteinandcarbohydratesubstrates
AT bischoffkennethm irradiationofyarrowialipolyticanrrlyb567creatingnovelstrainswithenhancedammoniaandoilproductiononproteinandcarbohydratesubstrates
AT liusiqing irradiationofyarrowialipolyticanrrlyb567creatingnovelstrainswithenhancedammoniaandoilproductiononproteinandcarbohydratesubstrates
AT qureshinasib irradiationofyarrowialipolyticanrrlyb567creatingnovelstrainswithenhancedammoniaandoilproductiononproteinandcarbohydratesubstrates
AT tasakikenneth irradiationofyarrowialipolyticanrrlyb567creatingnovelstrainswithenhancedammoniaandoilproductiononproteinandcarbohydratesubstrates
AT richjosepho irradiationofyarrowialipolyticanrrlyb567creatingnovelstrainswithenhancedammoniaandoilproductiononproteinandcarbohydratesubstrates
AT cottamichaela irradiationofyarrowialipolyticanrrlyb567creatingnovelstrainswithenhancedammoniaandoilproductiononproteinandcarbohydratesubstrates
AT sahabadalc irradiationofyarrowialipolyticanrrlyb567creatingnovelstrainswithenhancedammoniaandoilproductiononproteinandcarbohydratesubstrates
AT hughesstephenr irradiationofyarrowialipolyticanrrlyb567creatingnovelstrainswithenhancedammoniaandoilproductiononproteinandcarbohydratesubstrates