Enhanced Expression of Pullulanase in Bacillus subtilis by New Strong Promoters Mined From Transcriptome Data, Both Alone and in Combination

Pullulanase plays an important role as a starch hydrolysis enzyme in the production of bio-fuels and animal feed, and in the food industry. Compared to the methods currently used for pullulanase production, synthesis by Bacillus subtilis would be safer and easier. However, the current yield of pullu...

Full description

Bibliographic Details
Main Authors: Fanqiang Meng, Xiaoyu Zhu, Ting Nie, Fengxia Lu, Xiaomei Bie, Yingjian Lu, Frances Trouth, Zhaoxin Lu
Format: Article
Language:English
Published: Frontiers Media S.A. 2018-11-01
Series:Frontiers in Microbiology
Subjects:
Online Access:https://www.frontiersin.org/article/10.3389/fmicb.2018.02635/full
id doaj-8f23906f036d40f1a2c1cac95392e175
record_format Article
spelling doaj-8f23906f036d40f1a2c1cac95392e1752020-11-24T21:11:05ZengFrontiers Media S.A.Frontiers in Microbiology1664-302X2018-11-01910.3389/fmicb.2018.02635418611Enhanced Expression of Pullulanase in Bacillus subtilis by New Strong Promoters Mined From Transcriptome Data, Both Alone and in CombinationFanqiang Meng0Xiaoyu Zhu1Ting Nie2Fengxia Lu3Xiaomei Bie4Yingjian Lu5Frances Trouth6Zhaoxin Lu7College of Food Science and Technology, Nanjing Agricultural University, Nanjing, ChinaCollege of Food Science and Technology, Nanjing Agricultural University, Nanjing, ChinaCollege of Food Science and Technology, Nanjing Agricultural University, Nanjing, ChinaCollege of Food Science and Technology, Nanjing Agricultural University, Nanjing, ChinaCollege of Food Science and Technology, Nanjing Agricultural University, Nanjing, ChinaDepartment of Food Science and Nutrition, University of Maryland, College Park, MD, United StatesDepartment of Plant Science and Landscape Architecture, University of Maryland, College Park, MD, United StatesCollege of Food Science and Technology, Nanjing Agricultural University, Nanjing, ChinaPullulanase plays an important role as a starch hydrolysis enzyme in the production of bio-fuels and animal feed, and in the food industry. Compared to the methods currently used for pullulanase production, synthesis by Bacillus subtilis would be safer and easier. However, the current yield of pullulanase from B. subtilis is low to meet industrial requirements. Therefore, it is necessary to improve the yield of pullulanase by B. subtilis. In this study, we mined 10 highly active promoters from B. subtilis based on transcriptome and bioinformatic data. Individual promoters and combinations of promoters were used to improve the yield of pullulanase in B. subtilis BS001. Four recombinant strains with new promoters (Phag, PtufA, PsodA, and PfusA) had higher enzyme activity than the control (PamyE). The strain containing PsodA+fusA (163 U/mL) and the strain containing PsodA+fusA+amyE (336 U/mL) had the highest activity among the analyzed dual- and triple-promoter construct stains in shake flask, which were 2.29 and 4.73 times higher than that of the strain with PamyE, respectively. Moreover, the activity of the strain containing PsodA+fusA+amyE showed a maximum activity of 1,555 U/mL, which was 21.9 times higher than that of the flask-grown PamyE strain in a 50-liter fermenter. Our work showed that these four strong promoters mined from transcriptome data and their combinations could reliably increase the yield of pullulanase in quantities suitable for industrial applications.https://www.frontiersin.org/article/10.3389/fmicb.2018.02635/fullBacillustranscriptomepullulanasemulti-promoterfermentation
collection DOAJ
language English
format Article
sources DOAJ
author Fanqiang Meng
Xiaoyu Zhu
Ting Nie
Fengxia Lu
Xiaomei Bie
Yingjian Lu
Frances Trouth
Zhaoxin Lu
spellingShingle Fanqiang Meng
Xiaoyu Zhu
Ting Nie
Fengxia Lu
Xiaomei Bie
Yingjian Lu
Frances Trouth
Zhaoxin Lu
Enhanced Expression of Pullulanase in Bacillus subtilis by New Strong Promoters Mined From Transcriptome Data, Both Alone and in Combination
Frontiers in Microbiology
Bacillus
transcriptome
pullulanase
multi-promoter
fermentation
author_facet Fanqiang Meng
Xiaoyu Zhu
Ting Nie
Fengxia Lu
Xiaomei Bie
Yingjian Lu
Frances Trouth
Zhaoxin Lu
author_sort Fanqiang Meng
title Enhanced Expression of Pullulanase in Bacillus subtilis by New Strong Promoters Mined From Transcriptome Data, Both Alone and in Combination
title_short Enhanced Expression of Pullulanase in Bacillus subtilis by New Strong Promoters Mined From Transcriptome Data, Both Alone and in Combination
title_full Enhanced Expression of Pullulanase in Bacillus subtilis by New Strong Promoters Mined From Transcriptome Data, Both Alone and in Combination
title_fullStr Enhanced Expression of Pullulanase in Bacillus subtilis by New Strong Promoters Mined From Transcriptome Data, Both Alone and in Combination
title_full_unstemmed Enhanced Expression of Pullulanase in Bacillus subtilis by New Strong Promoters Mined From Transcriptome Data, Both Alone and in Combination
title_sort enhanced expression of pullulanase in bacillus subtilis by new strong promoters mined from transcriptome data, both alone and in combination
publisher Frontiers Media S.A.
series Frontiers in Microbiology
issn 1664-302X
publishDate 2018-11-01
description Pullulanase plays an important role as a starch hydrolysis enzyme in the production of bio-fuels and animal feed, and in the food industry. Compared to the methods currently used for pullulanase production, synthesis by Bacillus subtilis would be safer and easier. However, the current yield of pullulanase from B. subtilis is low to meet industrial requirements. Therefore, it is necessary to improve the yield of pullulanase by B. subtilis. In this study, we mined 10 highly active promoters from B. subtilis based on transcriptome and bioinformatic data. Individual promoters and combinations of promoters were used to improve the yield of pullulanase in B. subtilis BS001. Four recombinant strains with new promoters (Phag, PtufA, PsodA, and PfusA) had higher enzyme activity than the control (PamyE). The strain containing PsodA+fusA (163 U/mL) and the strain containing PsodA+fusA+amyE (336 U/mL) had the highest activity among the analyzed dual- and triple-promoter construct stains in shake flask, which were 2.29 and 4.73 times higher than that of the strain with PamyE, respectively. Moreover, the activity of the strain containing PsodA+fusA+amyE showed a maximum activity of 1,555 U/mL, which was 21.9 times higher than that of the flask-grown PamyE strain in a 50-liter fermenter. Our work showed that these four strong promoters mined from transcriptome data and their combinations could reliably increase the yield of pullulanase in quantities suitable for industrial applications.
topic Bacillus
transcriptome
pullulanase
multi-promoter
fermentation
url https://www.frontiersin.org/article/10.3389/fmicb.2018.02635/full
work_keys_str_mv AT fanqiangmeng enhancedexpressionofpullulanaseinbacillussubtilisbynewstrongpromotersminedfromtranscriptomedatabothaloneandincombination
AT xiaoyuzhu enhancedexpressionofpullulanaseinbacillussubtilisbynewstrongpromotersminedfromtranscriptomedatabothaloneandincombination
AT tingnie enhancedexpressionofpullulanaseinbacillussubtilisbynewstrongpromotersminedfromtranscriptomedatabothaloneandincombination
AT fengxialu enhancedexpressionofpullulanaseinbacillussubtilisbynewstrongpromotersminedfromtranscriptomedatabothaloneandincombination
AT xiaomeibie enhancedexpressionofpullulanaseinbacillussubtilisbynewstrongpromotersminedfromtranscriptomedatabothaloneandincombination
AT yingjianlu enhancedexpressionofpullulanaseinbacillussubtilisbynewstrongpromotersminedfromtranscriptomedatabothaloneandincombination
AT francestrouth enhancedexpressionofpullulanaseinbacillussubtilisbynewstrongpromotersminedfromtranscriptomedatabothaloneandincombination
AT zhaoxinlu enhancedexpressionofpullulanaseinbacillussubtilisbynewstrongpromotersminedfromtranscriptomedatabothaloneandincombination
_version_ 1716754540324192256