Genome Shuffling of Bacillus velezensis for Enhanced Surfactin Production and Variation Analysis

被引:20
作者
Chen, Liang [1 ]
Chong, Xing-Yu [1 ]
Zhang, Ying-Ying [1 ]
Lv, Yang-Yong [1 ]
Hu, Yuan-Sen [1 ]
机构
[1] Henan Univ Technol, Coll Bioengn, Collaborat Innovat Ctr Grain Storage Secur Henan, Zhengzhou 450001, Henan, Peoples R China
关键词
LIPOPEPTIDE; SUBTILIS; BIOSYNTHESIS; IMPROVEMENT; RESISTANCE; MEMBRANE;
D O I
10.1007/s00284-019-01807-4
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Surfactin is a promising microbial lipopeptide with wide applications in food, environmental, agricultural, and pharmaceutical fields. However, its high cost caused by low productivity largely limits the commercial application. In this study, genome shuffling was employed to improve surfactin production in Bacillus velezensis strain LM3403 via recursive protoplast fusion. RT-qPCR analysis was employed to evaluate the transcriptional variance of surfactin synthase genes and surfactin efflux gene to insight into the variance underlying the recombinant strain. After three rounds of genome shuffling, a high-yield and genetic stable recombinant F34 was obtained, exhibiting dramatic improvement in surfactin production (from 229.60 +/- 7.10 mg/L to 908.15 +/- 5.65 mg/L) with high proportion of long carbon chain homologues. Scale-up fermentation confirmed that F34 had good growth performance and reached the yield of 917.05 +/- 10.25 mg/L in a 30 L fermenter, which was 3.99-fold that of the initial strain. RT-qPCR analysis showed that the transcriptional levels of surfactin synthase genes srfAA and sfp, and surfactin efflux gene swrC in F34 were 8.12-fold, 9.27-fold, and 8.45-fold higher than those of LM3403, respectively. The upregulation of genes were consistent with the high surfactin yield in F34, indicating the increased capability of surfactin biosynthesis and transmember efflux in F34. To our knowledge, this is the first attempt to employ genome shuffling to breeding a B. velezensis strain to improve surfactin yield. The research helps us to understand the mechanisms underlying surfactin overproduction and provide references for further rational strain improvement.
引用
收藏
页码:71 / 78
页数:8
相关论文
共 34 条
[1]   SURFACTIN A CRYSTALLINE PEPTIDELIPID SURFACTANT PRODUCED BY BACILLUS SUBTILIS - ISOLATION CHARACTERIZATION AND ITS INHIBITION OF FIBRIN CLOT FORMATION [J].
ARIMA, K ;
KAKINUMA, A ;
TAMURA, G .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1968, 31 (03) :488-&
[2]   Microbial biosurfactants production, applications and future potential [J].
Banat, Ibrahim M. ;
Franzetti, Andrea ;
Gandolfi, Isabella ;
Bestetti, Giuseppina ;
Martinotti, Maria G. ;
Fracchia, Letizia ;
Smyth, Thomas J. ;
Marchant, Roger .
APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, 2010, 87 (02) :427-444
[3]   Effects of Different Cultivation Parameters on the Production of Surfactin Variants by a Bacillus subtilis Strain [J].
Bartal, Attila ;
Vigneshwari, Aruna ;
Boka, Bettina ;
Voros, Monika ;
Takacs, Istvan ;
Kredics, Laszlo ;
Manczinger, Laszlo ;
Varga, Monika ;
Vagvolgyi, Csaba ;
Szekeres, Andras .
MOLECULES, 2018, 23 (10)
[4]   Molecular mechanism of membrane permeabilization by the peptide antibiotic surfactin [J].
Carrillo, C ;
Teruel, JA ;
Aranda, FJ ;
Ortiz, A .
BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES, 2003, 1611 (1-2) :91-97
[5]   A comprehensive understanding of the biocontrol potential of Bacillus velezensis LM2303 against Fusarium head blight [J].
Chen, Liang ;
Heng, Junying ;
Qin, Suya ;
Bian, Ke .
PLOS ONE, 2018, 13 (06)
[6]   Applications of a lipopeptide biosurfactant, surfactin, produced by microorganisms [J].
Chen, Wei-Chuan ;
Juang, Ruey-Shin ;
Wei, Yu-Hong .
BIOCHEMICAL ENGINEERING JOURNAL, 2015, 103 :158-169
[7]   Production of microbial biosurfactants: Status quo of rhamnolipid and surfactin towards large-scale production [J].
Henkel, Marius ;
Geissler, Mareen ;
Weggenmann, Fabiola ;
Hausmann, Rudolf .
BIOTECHNOLOGY JOURNAL, 2017, 12 (07)
[8]   The bacterial lipopeptide surfactin targets the lipid fraction of the plant plasma membrane to trigger immune-related defence responses [J].
Henry, Guillaume ;
Deleu, Magali ;
Jourdan, Emmanuel ;
Thonart, Philippe ;
Ongena, Marc .
CELLULAR MICROBIOLOGY, 2011, 13 (11) :1824-1837
[9]   Rational strain improvement for surfactin production: enhancing the yield and generating novel structures [J].
Hu, Fangxiang ;
Liu, Yuyue ;
Li, Shuang .
MICROBIAL CELL FACTORIES, 2019, 18
[10]   Genome shuffling improved acid-tolerance and succinic acid production of Actinobacillus succinogenes [J].
Hu, Shumeng ;
You, Ying ;
Xia, Feifei ;
Liu, Junmei ;
Dai, Weichang ;
Liu, Jingsheng ;
Wang, Yuhua .
FOOD SCIENCE AND BIOTECHNOLOGY, 2019, 28 (03) :817-822