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Article

Selection of Lactiplantibacillus Strains for the Production of Fermented Table Olives

1
Scuola di Scienze Agrarie, Alimentari, Forestali ed Ambientali (SAFE), Università degli Studi della Basilicata, 85100 Potenza, Italy
2
Istituto di Scienze dell’Alimentazione-CNR, 83100 Avellino, Italy
*
Author to whom correspondence should be addressed.
Microorganisms 2022, 10(3), 625; https://doi.org/10.3390/microorganisms10030625
Submission received: 24 February 2022 / Revised: 10 March 2022 / Accepted: 11 March 2022 / Published: 15 March 2022
(This article belongs to the Special Issue Microorganisms and Fermented Foods)

Abstract

Lactiplantibacillus strains (n. 77) were screened for technological properties (e.g., xylose fermentation, EPS production, antimicrobial activity, tolerance to NaCl and phenolic compounds, oleuropein degradation and hydroxytyrosol formation) relevant for the production of fermented table olives. Survival to olive mill wastewater (OMW) and to simulated gastro-intestinal tract (GIT), the capability to grow at different combinations of NaCl and pH values, radical scavenging activities and biofilm formation were further investigated in 15 selected strains. The screening step revealed high diversity among Lactiplantibacillus strains. Most of the strains were able to ferment xylose, while only a few strains produced EPS and had inhibitory activity against Y. lipolytica. Resistance to phenolic compounds (gallic, protocatechuic, hydroxybenzoic and syringic acids), as well as the ability to release hydroxytyrosol from oleuropein, was strain-specific. OMWs impaired the survival of selected strains, while combinations of NaCl ≤ 6% and pH ≥ 4.0 were well tolerated. DPPH and hydroxyl radical degradation were strain-dependent, while the capability to form biofilm was affected by incubation time. Strains were very tolerant to the GIT. The genome of Lpb. pentosus O17 was sequenced and analysed to verify the presence of genes involved in the degradation and metabolism of phenolic compounds. O17 lacks carboxylesterase and gallate decarboxylase (subunits B and D) sequences, and its gene profile differs from that of other publicly available Lpb. pentosus genomes.
Keywords: Lactiplantibacillus plantarum; Lactiplantibacillus pentosus; phenolic compound tolerance; technological characterization; gene occurrence Lactiplantibacillus plantarum; Lactiplantibacillus pentosus; phenolic compound tolerance; technological characterization; gene occurrence

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MDPI and ACS Style

Zotta, T.; Giavalisco, M.; Parente, E.; Picariello, G.; Siano, F.; Ricciardi, A. Selection of Lactiplantibacillus Strains for the Production of Fermented Table Olives. Microorganisms 2022, 10, 625. https://doi.org/10.3390/microorganisms10030625

AMA Style

Zotta T, Giavalisco M, Parente E, Picariello G, Siano F, Ricciardi A. Selection of Lactiplantibacillus Strains for the Production of Fermented Table Olives. Microorganisms. 2022; 10(3):625. https://doi.org/10.3390/microorganisms10030625

Chicago/Turabian Style

Zotta, Teresa, Marilisa Giavalisco, Eugenio Parente, Gianluca Picariello, Francesco Siano, and Annamaria Ricciardi. 2022. "Selection of Lactiplantibacillus Strains for the Production of Fermented Table Olives" Microorganisms 10, no. 3: 625. https://doi.org/10.3390/microorganisms10030625

APA Style

Zotta, T., Giavalisco, M., Parente, E., Picariello, G., Siano, F., & Ricciardi, A. (2022). Selection of Lactiplantibacillus Strains for the Production of Fermented Table Olives. Microorganisms, 10(3), 625. https://doi.org/10.3390/microorganisms10030625

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