Matches in SemOpenAlex for { <https://semopenalex.org/work/W2729122664> ?p ?o ?g. }
- W2729122664 endingPage "27" @default.
- W2729122664 startingPage "18" @default.
- W2729122664 abstract "Some lactic acid bacteria have the ability to form biofilms on food-industry surfaces and this property could be used to control food pathogens colonization. Lactobacillus sakei CR1862 was selected considering its bacteriocinogenic nature and ability to adhere to abiotic surfaces at low temperatures. In this study, the proteome of L. sakei CRL1862 grown either under biofilm on stainless steel surface and planktonic modes of growth at 10°C, was investigated. Using two-dimensional gel electrophoresis, 29 out of 43 statistically significant spots were identified by matrix-assisted laser desorption/ionization time-of-flight mass spectrometry. Ten proteins resulted up-regulated whereas 16 were down-regulated during biofilm formation. Differentially expressed proteins were found to belong to carbohydrate, nucleotide, aminoacid and lipid metabolisms as well as translation, peptide hydrolysis, cell envelope/cell wall biosynthesis, adaption to atypical conditions and protein secretion. Some proteins related to carbohydrate and nucleotide metabolisms, translation and peptide degradation were overexpressed whereas those associated to stress conditions were synthesized in lower amounts. It seems that conditions for biofilm development would not imply a stressful environment for L. sakei CRL1862 cells, directing its growth strategy towards glycolytic flux regulation and reinforcing protein synthesis. In addition, L. sakei CRL1862 showed to harbor nine out of ten assayed genes involved in biofilm formation and protein anchoring. By applying qRT-PCR analysis, four of these genes showed to be up regulated, srtA2 being the most remarkable. The results of this study contribute to the knowledge of the physiology of L. sakei CRL1862 growing in biofilm on a characteristic food contact surface. The use of this strain as green biocide preventing L. monocytogenes post-processing contamination on industrial surfaces may be considered." @default.
- W2729122664 created "2017-07-14" @default.
- W2729122664 creator A5047910689 @default.
- W2729122664 creator A5064044026 @default.
- W2729122664 creator A5066484981 @default.
- W2729122664 creator A5085981559 @default.
- W2729122664 date "2017-10-01" @default.
- W2729122664 modified "2023-10-12" @default.
- W2729122664 title "Proteomic and genetics insights on the response of the bacteriocinogenic Lactobacillus sakei CRL1862 during biofilm formation on stainless steel surface at 10 °C" @default.
- W2729122664 cites W1929520690 @default.
- W2729122664 cites W1966302535 @default.
- W2729122664 cites W1975240963 @default.
- W2729122664 cites W1975411777 @default.
- W2729122664 cites W1975762790 @default.
- W2729122664 cites W1980392633 @default.
- W2729122664 cites W1985850470 @default.
- W2729122664 cites W1986084660 @default.
- W2729122664 cites W1991536574 @default.
- W2729122664 cites W1994300040 @default.
- W2729122664 cites W1996798502 @default.
- W2729122664 cites W1996840686 @default.
- W2729122664 cites W1997320022 @default.
- W2729122664 cites W2007927874 @default.
- W2729122664 cites W2010173936 @default.
- W2729122664 cites W2010634723 @default.
- W2729122664 cites W2016251356 @default.
- W2729122664 cites W2019812089 @default.
- W2729122664 cites W2020083726 @default.
- W2729122664 cites W2020162639 @default.
- W2729122664 cites W2020935590 @default.
- W2729122664 cites W2024825723 @default.
- W2729122664 cites W2025563307 @default.
- W2729122664 cites W2029738644 @default.
- W2729122664 cites W2034878095 @default.
- W2729122664 cites W2039493571 @default.
- W2729122664 cites W2039536750 @default.
- W2729122664 cites W2039749539 @default.
- W2729122664 cites W2043741824 @default.
- W2729122664 cites W2043765000 @default.
- W2729122664 cites W2045076292 @default.
- W2729122664 cites W2062552121 @default.
- W2729122664 cites W2065449941 @default.
- W2729122664 cites W2069175714 @default.
- W2729122664 cites W2071808980 @default.
- W2729122664 cites W2086885829 @default.
- W2729122664 cites W2089244161 @default.
- W2729122664 cites W2092658716 @default.
- W2729122664 cites W2094962273 @default.
- W2729122664 cites W2100287000 @default.
- W2729122664 cites W2102278984 @default.
- W2729122664 cites W2109733963 @default.
- W2729122664 cites W2110752801 @default.
- W2729122664 cites W2111485203 @default.
- W2729122664 cites W2114570899 @default.
- W2729122664 cites W2114738204 @default.
- W2729122664 cites W2118190763 @default.
- W2729122664 cites W2119066916 @default.
- W2729122664 cites W2122254428 @default.
- W2729122664 cites W2122608498 @default.
- W2729122664 cites W2127029141 @default.
- W2729122664 cites W2127652197 @default.
- W2729122664 cites W2131727615 @default.
- W2729122664 cites W2132632499 @default.
- W2729122664 cites W2138997537 @default.
- W2729122664 cites W2147044107 @default.
- W2729122664 cites W2147876906 @default.
- W2729122664 cites W2151001863 @default.
- W2729122664 cites W2151606133 @default.
- W2729122664 cites W2153537808 @default.
- W2729122664 cites W2159802295 @default.
- W2729122664 cites W2162790472 @default.
- W2729122664 cites W2169353133 @default.
- W2729122664 cites W2238976429 @default.
- W2729122664 cites W2279086160 @default.
- W2729122664 cites W2326183730 @default.
- W2729122664 cites W2345998578 @default.
- W2729122664 cites W4246192841 @default.
- W2729122664 cites W631683178 @default.
- W2729122664 cites W2113162109 @default.
- W2729122664 doi "https://doi.org/10.1016/j.ijfoodmicro.2017.07.003" @default.
- W2729122664 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/28738195" @default.
- W2729122664 hasPublicationYear "2017" @default.
- W2729122664 type Work @default.
- W2729122664 sameAs 2729122664 @default.
- W2729122664 citedByCount "12" @default.
- W2729122664 countsByYear W27291226642018 @default.
- W2729122664 countsByYear W27291226642020 @default.
- W2729122664 countsByYear W27291226642021 @default.
- W2729122664 countsByYear W27291226642022 @default.
- W2729122664 countsByYear W27291226642023 @default.
- W2729122664 crossrefType "journal-article" @default.
- W2729122664 hasAuthorship W2729122664A5047910689 @default.
- W2729122664 hasAuthorship W2729122664A5064044026 @default.
- W2729122664 hasAuthorship W2729122664A5066484981 @default.
- W2729122664 hasAuthorship W2729122664A5085981559 @default.
- W2729122664 hasConcept C104317684 @default.
- W2729122664 hasConcept C104397665 @default.
- W2729122664 hasConcept C2775920511 @default.