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Research Article | 22-May-2019

NON-CONVENTIONAL YEAST METSCHNIKOWIA PULCHERRIMA AND ITS APPLICATION IN BIOTECHNOLOGY

Ewelina Pawlikowska, Dorota Kręgiel

Postępy Mikrobiologii - Advancements of Microbiology, Volume 56 , ISSUE 4, 405–415

original-paper | 29-October-2021

Chemical Components of Aqueous Extracts of Melia azedarach Fruits and Their Effects on The Transcriptome of Staphylococcus aureus

elusive. Thus, in this study, we tried to extract components from chinaberry fruits using simple boiling water methods, and the differentially expressed genes (DEGs) were detected with RNA-Seq using S. aureus as a model strain. The results demonstrated that various growth and metabolism-related genes and pathways were affected by the aqueous extracts of chinaberry fruits. Moreover, lipids and lipid-like molecules, organic acids, and derivatives were relatively abundant in these extracts

HONG PENG, YING-SI WANG, JIE WANG, SU-JUAN LI, TING-LI SUN, TONG LIU, QING-SHAN SHI, GANG ZHOU, XIAO-BAO XIE

Polish Journal of Microbiology, Volume 70 , ISSUE 4, 447–459

Research Article | 23-May-2019

ALICYCLOBACILLUS – BACTERIA STILL NOT UNDERSTOOD

major membrane lipids. There are 23 known species and 2 subspecies, with Alicyclobacillus acidoterrestris as the most significant. Certain species cause food spoilage in the fruit-and-vegetable juices industry. The spores of Alicyclobacillus are highly tolerant to high temperatures and low pH-values of fruit juices. What is more, they are naturally present on fruit surface and can readily enter the production environment of the fruit and vegetable processing. Due to high thermophilicity of these

Justyna Dąbrowska, Alina Kunicka-Styczyńska

Postępy Mikrobiologii - Advancements of Microbiology, Volume 57 , ISSUE 2, 117–124

Original Paper | 04-September-2018

Isolation of Bacterial Endophytes from Phalaris arundinacea and their Potential in Diclofenac and Sulfamethoxazole Degradation

approximately 35% of DCF and 61% of SMX, while an increase in the optical density of the cultures was noted. The higher removal efficiency can be explained by adaptive mechanisms in microorganisms exposed to phenol (i.e. changes in the composition of membrane lipids) and by a co-metabolic mechanism, where non-growth substrates can be transformed by non-specific enzymes. The presence of both DCF and SMX and the influence of the supply frequency of CWs with the contaminated wastewater on the diversity of

ANNA WĘGRZYN, EWA FELIS

Polish Journal of Microbiology, Volume 67 , ISSUE 3, 321–331

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