Systematical Engineering of Synthetic Yeast for Enhanced Production of Lycopene
Synthetic biology allows the re-engineering of biological systems and promotes the development of bioengineering to a whole new level, showing great potential in biomanufacturing. Here, in order to make the heterologous lycopene biosynthesis pathway compatible with the host strain YSy 200, we evolve...
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doaj-a34cc7d8eae44f73a718662659fd5ea92021-01-20T00:02:39ZengMDPI AGBioengineering2306-53542021-01-018141410.3390/bioengineering8010014Systematical Engineering of Synthetic Yeast for Enhanced Production of LycopeneYu Zhang0Tsan-Yu Chiu1Jin-Tao Zhang2Shu-Jie Wang3Shu-Wen Wang4Long-Ying Liu5Zhi Ping6Yong Wang7Ao Chen8Wen-Wei Zhang9Tai Chen10Yun Wang11Yue Shen12BGI Education Center, University of Chinese Academy of Sciences, Shenzhen 518083, ChinaBGI-Shenzhen, Beishan Industrial Zone, Shenzhen 518083, ChinaGuangdong Provincial Key Laboratory of Genome Read and Write, BGI-Shenzhen, Shenzhen 518120, ChinaBGI-Shenzhen, Beishan Industrial Zone, Shenzhen 518083, ChinaBGI-Shenzhen, Beishan Industrial Zone, Shenzhen 518083, ChinaBGI-Shenzhen, Beishan Industrial Zone, Shenzhen 518083, ChinaBGI-Shenzhen, Beishan Industrial Zone, Shenzhen 518083, ChinaBGI-Shenzhen, Beishan Industrial Zone, Shenzhen 518083, ChinaBGI-Shenzhen, Beishan Industrial Zone, Shenzhen 518083, ChinaBGI-Shenzhen, Beishan Industrial Zone, Shenzhen 518083, ChinaGuangdong Provincial Key Laboratory of Genome Read and Write, BGI-Shenzhen, Shenzhen 518120, ChinaBGI-Shenzhen, Beishan Industrial Zone, Shenzhen 518083, ChinaBGI-Shenzhen, Beishan Industrial Zone, Shenzhen 518083, ChinaSynthetic biology allows the re-engineering of biological systems and promotes the development of bioengineering to a whole new level, showing great potential in biomanufacturing. Here, in order to make the heterologous lycopene biosynthesis pathway compatible with the host strain YSy 200, we evolved YSy200 using a unique Synthetic Chromosome Rearrangement and Modification by LoxP-mediated Evolution (SCRaMbLE) system that is built in the Sc2.0 synthetic yeast. By inducing SCRaMbLE, we successfully identified a host strain YSy201 that can be served as a suitable host to maintain the heterologous lycopene biosynthesis pathway. Then, we optimized the lycopene biosynthesis pathway and further integrated into the rDNA arrays of YSy201 to increase its copy number. In combination with culturing condition optimization, we successfully screened out the final yeast strain YSy222, which showed a 129.5-fold increase of lycopene yield in comparison with its parental strain. Our work shows that, the strategy of combining the engineering efforts on both the lycopene biosynthesis pathway and the host strain can improve the compatibility between the heterologous pathway and the host strain, which can further effectively increase the yield of the target product.https://www.mdpi.com/2306-5354/8/1/14synthetic yeastSCRaMbLEcombinatorial assemblylycopene production optimization |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Yu Zhang Tsan-Yu Chiu Jin-Tao Zhang Shu-Jie Wang Shu-Wen Wang Long-Ying Liu Zhi Ping Yong Wang Ao Chen Wen-Wei Zhang Tai Chen Yun Wang Yue Shen |
spellingShingle |
Yu Zhang Tsan-Yu Chiu Jin-Tao Zhang Shu-Jie Wang Shu-Wen Wang Long-Ying Liu Zhi Ping Yong Wang Ao Chen Wen-Wei Zhang Tai Chen Yun Wang Yue Shen Systematical Engineering of Synthetic Yeast for Enhanced Production of Lycopene Bioengineering synthetic yeast SCRaMbLE combinatorial assembly lycopene production optimization |
author_facet |
Yu Zhang Tsan-Yu Chiu Jin-Tao Zhang Shu-Jie Wang Shu-Wen Wang Long-Ying Liu Zhi Ping Yong Wang Ao Chen Wen-Wei Zhang Tai Chen Yun Wang Yue Shen |
author_sort |
Yu Zhang |
title |
Systematical Engineering of Synthetic Yeast for Enhanced Production of Lycopene |
title_short |
Systematical Engineering of Synthetic Yeast for Enhanced Production of Lycopene |
title_full |
Systematical Engineering of Synthetic Yeast for Enhanced Production of Lycopene |
title_fullStr |
Systematical Engineering of Synthetic Yeast for Enhanced Production of Lycopene |
title_full_unstemmed |
Systematical Engineering of Synthetic Yeast for Enhanced Production of Lycopene |
title_sort |
systematical engineering of synthetic yeast for enhanced production of lycopene |
publisher |
MDPI AG |
series |
Bioengineering |
issn |
2306-5354 |
publishDate |
2021-01-01 |
description |
Synthetic biology allows the re-engineering of biological systems and promotes the development of bioengineering to a whole new level, showing great potential in biomanufacturing. Here, in order to make the heterologous lycopene biosynthesis pathway compatible with the host strain YSy 200, we evolved YSy200 using a unique Synthetic Chromosome Rearrangement and Modification by LoxP-mediated Evolution (SCRaMbLE) system that is built in the Sc2.0 synthetic yeast. By inducing SCRaMbLE, we successfully identified a host strain YSy201 that can be served as a suitable host to maintain the heterologous lycopene biosynthesis pathway. Then, we optimized the lycopene biosynthesis pathway and further integrated into the rDNA arrays of YSy201 to increase its copy number. In combination with culturing condition optimization, we successfully screened out the final yeast strain YSy222, which showed a 129.5-fold increase of lycopene yield in comparison with its parental strain. Our work shows that, the strategy of combining the engineering efforts on both the lycopene biosynthesis pathway and the host strain can improve the compatibility between the heterologous pathway and the host strain, which can further effectively increase the yield of the target product. |
topic |
synthetic yeast SCRaMbLE combinatorial assembly lycopene production optimization |
url |
https://www.mdpi.com/2306-5354/8/1/14 |
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