Comparative transcriptome analysis reveals the contribution of membrane transporters to acid tolerance in Lactococcus lactis

Acid stress caused by the accumulation of acidic metabolites severely affects the fermentation performance of lactic acid bacteria. In this study, to overcome the impact of acid stress during growth, nine membrane transporters were introduced in Lactococcus lactis NZ9000 to study their effects on ac...

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Veröffentlicht in:Journal of biotechnology 2022-09, Vol.357, p.9-17
Hauptverfasser: Zhu, Zhengming, Yang, Peishan, Yang, Jinhua, Zhang, Juan
Format: Artikel
Sprache:eng
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Zusammenfassung:Acid stress caused by the accumulation of acidic metabolites severely affects the fermentation performance of lactic acid bacteria. In this study, to overcome the impact of acid stress during growth, nine membrane transporters were introduced in Lactococcus lactis NZ9000 to study their effects on acid tolerance. The engineered strains that overexpressed the metal ATP-binding cassette (ABC) transporters zitP (metal ABC transporter permease) and zitQ (metal ABC transporter ATP-binding protein) exhibited 14.5 and 9.5-fold higher survival rates, respectively, at pH 4.0 for 4 h than the control strain. During acid stress, the two recombinant strains maintained relatively higher ATP concentrations, i.e., 7.7- and 11.7-fold higher, respectively, than the control strain at pH 4.0 for 3 h. Subsequently, transcriptome analysis revealed that genes associated with ABC transporters, metal ion transport, transcriptional regulation, and stress response exhibited differentially expressed. The transcriptional level of ecfA2 gene (energy-coupling factor transporter ATPase) was substantially higher in L. lactis (ZitQ) during acid stress, and the ecfA2 gene was overexpressed in L. lactis. This recombinant strain L. lactis (EcfA2) exhibited a 598.7-fold higher survival rate than the control strain at pH 4.0 for 4 h. This study showed that the membrane transporters ZitP and ZitQ could increase acid tolerance and provided a strategy for constructing robust strains that can be used in food industry. •Membrane transporters ZitP and ZitQ could increase the aicd-stress tolerance of L. lactis.•ZitP and ZitQ could contribute to higher ATP concentrations and pHi during acid stress.•A transporter ecfA2 gene was found to contribute to acid-stress tolerance through comparative transcriptomics.
ISSN:0168-1656
1873-4863
DOI:10.1016/j.jbiotec.2022.08.006