Evaluating the Potential of Oleaginous Yeasts as Feedstock for Biodiesel Production

2018 ◽  
Vol 25 (2) ◽  
pp. 195-201
Author(s):  
Hamid Mukhtar ◽  
Syed Muhammad Suliman ◽  
Aroosh Shabbir ◽  
Muhammad Waseem Mumtaz ◽  
Umer Rashid ◽  
...  
2019 ◽  
Vol 38 ◽  
pp. 1-9 ◽  
Author(s):  
Adalgisa Martinez-Silveira ◽  
Romina Villarreal ◽  
Gabriela Garmendia ◽  
Caterina Rufo ◽  
Silvana Vero

2014 ◽  
Vol 153 ◽  
pp. 230-235 ◽  
Author(s):  
Ayumi Tanimura ◽  
Masako Takashima ◽  
Takashi Sugita ◽  
Rikiya Endoh ◽  
Minako Kikukawa ◽  
...  

RSC Advances ◽  
2016 ◽  
Vol 6 (32) ◽  
pp. 26752-26756 ◽  
Author(s):  
Xibin Zhang ◽  
Hongwei Shen ◽  
Xiaobing Yang ◽  
Qian Wang ◽  
Xue Yu ◽  
...  

Laminaria residues, major wastes from the kelp industry, can be effectively converted by oleaginous yeasts into microbial lipids as potential feedstock for biodiesel production.


OCL ◽  
2021 ◽  
Vol 28 ◽  
pp. 51
Author(s):  
Sally El Kantar ◽  
Anissa Khelfa ◽  
Eugène Vorobiev ◽  
Mohamed Koubaa

Microbial-based biodiesel is produced by transesterification of lipids extracted from microbial cells, and is considered as a potential replacement of fossil fuel due to its advantages in reducing greenhouse gas emissions. Yarrowia lipolytica is one of the most studied oleaginous yeasts able to produce lipids under some fermentation conditions and is considered as a potential industrial host for biodiesel production. Several approaches have been evaluated to increase the economical attraction of biodiesel production from Y. lipolytica lipids. In this review, we highlighted the different strategies reported in the literature, allowing this yeast to achieve high lipid accumulation. These include metabolic engineering strategies, the use of low-cost effective substrates, and the optimization of the cultivation conditions for higher lipid productivity and less operating cost. We also summarized the most effective cell disruption technologies that improve the extraction efficiencies of lipids from Y. lipolytica.


2021 ◽  
Vol 14 (1) ◽  
Author(s):  
Rania Al-Tohamy ◽  
Jianzhong Sun ◽  
Maha A. Khalil ◽  
Michael Kornaros ◽  
Sameh Samir Ali

Abstract Background The ability of oxidative enzyme-producing micro-organisms to efficiently valorize organic pollutants is critical in this context. Yeasts are promising enzyme producers with potential applications in waste management, while lipid accumulation offers significant bioenergy production opportunities. The aim of this study was to explore manganese peroxidase-producing oleaginous yeasts inhabiting the guts of wood-feeding termites for azo dye decolorization, tolerating lignocellulose degradation inhibitors, and biodiesel production. Results Out of 38 yeast isolates screened from wood-feeding termite gut symbionts, nine isolates exhibited high levels of extracellular manganese peroxidase (MnP) activity ranged between 23 and 27 U/mL after 5 days of incubation in an optimal substrate. Of these MnP-producing yeasts, four strains had lipid accumulation greater than 20% (oleaginous nature), with Meyerozyma caribbica SSA1654 having the highest lipid content (47.25%, w/w). In terms of tolerance to lignocellulose degradation inhibitors, the four MnP-producing oleaginous yeast strains could grow in the presence of furfural, 5-hydroxymethyl furfural, acetic acid, vanillin, and formic acid in the tested range. M. caribbica SSA1654 showed the highest tolerance to furfural (1.0 g/L), 5-hydroxymethyl furfural (2.5 g/L) and vanillin (2.0 g/L). Furthermore, M. caribbica SSA1654 could grow in the presence of 2.5 g/L acetic acid but grew moderately. Furfural and formic acid had a significant inhibitory effect on lipid accumulation by M. caribbica SSA1654, compared to the other lignocellulose degradation inhibitors tested. On the other hand, a new MnP-producing oleaginous yeast consortium designated as NYC-1 was constructed. This consortium demonstrated effective decolorization of all individual azo dyes tested within 24 h, up to a dye concentration of 250 mg/L. The NYC-1 consortium's decolorization performance against Acid Orange 7 (AO7) was investigated under the influence of several parameters, such as temperature, pH, salt concentration, and co-substrates (e.g., carbon, nitrogen, or agricultural wastes). The main physicochemical properties of biodiesel produced by AO7-degraded NYC-1 consortium were estimated and the results were compared to those obtained from international standards. Conclusion The findings of this study open up a new avenue for using peroxidase-producing oleaginous yeasts inhabiting wood-feeding termite gut symbionts, which hold great promise for the remediation of recalcitrant azo dye wastewater and lignocellulosic biomass for biofuel production. Graphical Abstract


2016 ◽  
Vol 203 ◽  
pp. 309-317 ◽  
Author(s):  
Aurélie Capus ◽  
Marianne Monnerat ◽  
Luiz Carlos Ribeiro ◽  
Wanderley de Souza ◽  
Juliana Lopes Martins ◽  
...  

2019 ◽  
Vol 139 ◽  
pp. 111535 ◽  
Author(s):  
Halima Chebbi ◽  
David Leiva-Candia ◽  
Miguel Carmona-Cabello ◽  
Atef Jaouani ◽  
M Pilar Dorado

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