Synthetic Biology Tools for Genome and Transcriptome Engineering of Solventogenic Clostridium

被引:16
|
作者
Kwon, Seong Woo [1 ]
Paari, Kuppusamy Alagesan [2 ]
Malaviya, Alok [3 ]
Jang, Yu-Sin [1 ]
机构
[1] Gyeongsang Natl Univ, Dept Agr Chem & Food Sci Technol, Inst Agr & Life Sci IALS, Div Appl Life Sci,BK21 Plus Program, Jinju, South Korea
[2] CHRIST, Dept Life Sci, Bengaluru, India
[3] CHRIST, Appl & Ind Biotechnol Lab AIBL, Dept Life Sci, Bengaluru, India
基金
新加坡国家研究基金会;
关键词
Clostridium; synthetic biology; mobile intron; CRISPR; Cas; synthetic sRNA; UTR; INTRON TARGETRON VECTOR; BUTANOL PRODUCTION; GENE DISRUPTION; ESCHERICHIA-COLI; ACID PRODUCTION; TOXIN GENE; ACETOBUTYLICUM; CRISPR; RNA; SYSTEM;
D O I
10.3389/fbioe.2020.00282
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Strains of Clostridium genus are used for production of various value-added products including fuels and chemicals. Development of any commercially viable production process requires a combination of both strain and fermentation process development strategies. The strain development in Clostridium sp. could be achieved by random mutagenesis, and targeted gene alteration methods. However, strain improvement in Clostridium sp. by targeted gene alteration method was challenging due to the lack of efficient tools for genome and transcriptome engineering in this organism. Recently, various synthetic biology tools have been developed to facilitate the strain engineering of solventogenic Clostridium. In this review, we consolidated the recent advancements in toolbox development for genome and transcriptome engineering in solventogenic Clostridium. Here we reviewed the genome-engineering tools employing mobile group II intron, pyrE alleles exchange, and CRISPR/Cas9 with their application for strain development of Clostridium sp. Next, transcriptome engineering tools such as untranslated region (UTR) engineering and synthetic sRNA techniques were also discussed in context of Clostridium strain engineering. Application of any of these discussed techniques will facilitate the metabolic engineering of clostridia for development of improved strains with respect to requisite functional attributes. This might lead to the development of an economically viable butanol production process with improved titer, yield and productivity.
引用
收藏
页数:9
相关论文
共 50 条
  • [21] New Applications of Synthetic Biology Tools for Cyanobacterial Metabolic Engineering
    Santos-Merino, Maria
    Singh, Amit K.
    Ducat, Daniel C.
    FRONTIERS IN BIOENGINEERING AND BIOTECHNOLOGY, 2019, 7 (FEB)
  • [22] Recent advances in genetic engineering tools based on synthetic biology
    Jun Ren
    Jingyu Lee
    Dokyun Na
    Journal of Microbiology, 2020, 58 : 1 - 10
  • [23] Recent advances in genetic engineering tools based on synthetic biology
    Ren, Jun
    Lee, Jingyu
    Na, Dokyun
    JOURNAL OF MICROBIOLOGY, 2020, 58 (01) : 1 - 10
  • [24] MULTIPLEXED GENOME ENGINEERING AND GENOTYPING METHODS: APPLICATIONS FOR SYNTHETIC BIOLOGY AND METABOLIC ENGINEERING
    Wang, Harris H.
    Church, George M.
    SYNTHETIC BIOLOGY, PT B: COMPUTER AIDED DESIGN AND DNA ASSEMBLY, 2011, 498 : 409 - 426
  • [25] Genome Engineering and Modification Toward Synthetic Biology for the Production of Antibiotics
    Zou, Xuan
    Wang, Lianrong
    Li, Zhiqiang
    Luo, Jie
    Wang, Yunfu
    Deng, Zixin
    Du, Shiming
    Chen, Shi
    MEDICINAL RESEARCH REVIEWS, 2018, 38 (01) : 229 - 260
  • [26] Enhancing phage therapy through synthetic biology and genome engineering
    Lenneman, Bryan R.
    Fernbach, Jonas
    Loessner, Martin J.
    Lu, Timothy K.
    Kilcher, Samuel
    CURRENT OPINION IN BIOTECHNOLOGY, 2021, 68 : 151 - 159
  • [27] Developing Plant Synthetic Biology Tools for Complex Metabolic Engineering.
    Shih, Patrick M.
    Calgaro-Kozina, Amy
    Khanh Vuu
    Keasling, Jay D.
    Loque, Dominique
    Sattely, Elizabeth S.
    IN VITRO CELLULAR & DEVELOPMENTAL BIOLOGY-ANIMAL, 2019, 55 : S2 - S2
  • [28] Synthetic biology tools for engineering Goodwin oscillation in Trypanosoma brucei brucei
    Borg, Yanika
    Alsford, Sam
    Pavlika, Vasos
    Zaikin, Alexei
    Nesbeth, Darren N.
    HELIYON, 2022, 8 (02)
  • [29] Synthetic biology tools for engineering members of the marine bacterial genus Vibrio
    Tschirhart, Tanya
    Wang, Zheng
    Erickson, Jeffrey
    van Kessel, Julia
    Vora, Gary
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2017, 253
  • [30] Molecular Markers and Regulatory Networks in Solventogenic Clostridium Species: Metabolic Engineering Conundrum
    Olorunsogbon, Tinuola
    Okonkwo, Christopher Chukwudi
    Ezeji, Thaddeus Chukwuemeka
    FERMENTATION-BASEL, 2024, 10 (06):