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Wyniki wyszukiwania dla: KRYSTALIZACJA BIAŁEK

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Wyniki wyszukiwania dla: KRYSTALIZACJA BIAŁEK

  • Study of the process of biofilm formation by UPEC DR14 in the LB medium

    Biofilm formation is a direct reaction of bacteria to environmental factors. In order to determine the influence of the medium composition on the ability of DR14 on biofilm production, we cultured bacteria under the following conditions: LB medium, M9 medium + 0,2% glucose, M9 + 0,5% casamino acids, M9 + 0,5% casamino acids + 0,2% glycerol, M9 + 0,5%...

  • Study of the process of biofilm formation by UPEC IH11128 in the M9+0,5% casamino acids+0,2% glycerol medium

    Biofilm formation is a direct reaction of bacteria to environmental factors. In order to determine the influence of the medium composition on the ability of IH11128 on biofilm production, we cultured bacteria under the following conditions: LB medium, M9 medium + 0,2% glucose, M9 + 0,5% casamino acids, M9 + 0,5% casamino acids + 0,2% glycerol, M9 +...

  • Study of the process of biofilm formation by UPEC DR14 in the M9+0,5% casamino acids medium

    Biofilm formation is a direct reaction of bacteria to environmental factors. In order to determine the influence of the medium composition on the ability of DR14 on biofilm production, we cultured bacteria under the following conditions: LB medium, M9 medium + 0,2% glucose, M9 + 0,5% casamino acids, M9 + 0,5% casamino acids + 0,2% glycerol, M9 + 0,5%...

  • Proteomics

    Dane Badawcze
    open access

    Wiff and Wiff2 files for shotgun proteomics analysis of E. coli strains (5 different strains in 10 different files). 

  • Metabolomics

    Dane Badawcze
    open access

    Wiff and Wiff2 files of untargeted metabolomics for E. coli strains (4 different experiments)

  • Fourier transform infrared spectroscopy (FTIR) of pre- PXBS (0 h) and PXBS during the crosslinking process (24 h–288 h)

    Dane Badawcze
    wersja 1.0 open access

    The goal of this research was developing biodegradable and biocompatibile xylitol-based copolymers with improved mechanical properties, and investigating the change in their thermal and chemical properties withprogress of the cross-linking process. Using a raw material of natural origin such as xylitol, a prepolymer wasobtained by esterification and...

  • Thermal properties. DSC analysis of poly(xylitol sebacate-co-butylene sebacate) PXBS.

    Dane Badawcze
    open access

    In this work, a bio-based copolyester with good mechanical properties was synthesized andcharacterized in terms of structure, main properties and biodegradability Determining the chemicalstructure of such materials is important to understand their behavior and properties. Performingan extraction of insoluble cross-linked polymer using di erent solvents...

  • Supplementary material for: Fungal Planet description sheets: 1478–1549

    Dane Badawcze
    open access
    • P. Crous
    • E.  Osieck
    • R.  Shivas
    • Y.  Tan
    • S.  Bishop-Hurley
    •  . F.
    • E.  Larsson
    • J.  Luangsa-ard
    • F.  Pancorbo
    • S.  Balashov
    • I.  Baseia
    • T. iuribaseia@gmail.com
    • S.  Chandranayaka
    • D.  Cowan
    • R.  Cruz
    • P.  Czachura
    • S.  De la Peña-Lastra
    • F.  Dovana
    • B.  Drury
    • J.  Fell
    • A.  Flakus
    • R.  Fotedar
    • Ž.  Jurjević
    • A.  Kolecka
    • J.  Mack
    • G.  Maggs-Kölling
    • S.  Mahadevakumar
    • A.  Mateos
    • S.  Mongkolsamrit
    • W.  Noisripoom
    • M.  Plaza
    • D. Overy
    • M.  Piatek
    • M.  Sandoval-Denis
    • J.  Vauras
    • M.  Wingfield
    • S.  Abell
    • A.  Ahmadpour
    • A.  Akulov
    • F.  Alavi
    • Z.  Alavi
    • A.  Altés
    • P.  Alvarado
    • G.  Anand
    • N.  Ashtekar
    • B.  Assyov
    • G.  Banc-Prandi
    • K.  Barbosa
    • G.  Barreto
    • J.  Bellanger
    • J.  Bezerra
    • D.  Bhat
    • P.  Bilański
    • T.  Bose
    • F.  Bozok
    • J.  Chaves
    • D.  Costa-Rezende
    • C.  Danteswari
    • V. Darmostuk
    • G.  Delgado
    • S.  Denman
    • A.  Eichmeier
    • J.  Etayo
    • G.  Eyssartier
    • S.  Faulwetter
    • K.  Ganga
    • Y.  Ghosta
    • J.  Goh
    • J.  Góis
    • D.  Gramaje
    • L.  Granit
    • M.  Groenewald
    • G.  Gulden
    • L.  Gusmão
    • A.  Hammerbacher
    • Z.  Heidarian
    • N.  Hywel-Jones
    • R.  Jankowiak
    • M.  Kaliyaperumal
    • O.  Kaygusuz
    • K.  Kezo
    • A.  Khonsanit
    • S.  Kumar
    • C.  Kuo
    • T.  Laessøe
    • K.  Latha
    • M.  Loizides
    • S.  Luo
    • J.  Maciá-Vicente
    • P.  Manimohan
    • P.  Marbach
    • P.  Marinho
    • T.  Marney
    • G.  Marques
    • M.  Martín
    • A.  Miller
    • F.  Mondello
    • G.  Moreno
    • K.  Mufeeda
    • H. Mun
    • T.  Nau
    • T.  Nkomo
    • A.  Okrasińska
    • J.  Oliveira
    • R.  Oliveira
    • D.  Ortiz
    • J.  Pawłowska
    • M.  Pérez-De-Gregorio
    • A.  Podile
    • A.  Portugal
    • N.  Privitera
    • K.  Rajeshkumar
    • I.  Rauf
    • B.  Rian
    • A.  Rigueiro-Rodríguez
    • G.  Rivas-Torres
    • P. Rodriguez-Flakus
    • M.  Romero-Gordillo
    • I.  Saar
    • M.  Saba
    • C.  Santos
    • P.  Sarma
    • J.  Siquier
    • S.  Sleiman
    • M.  Spetik
    • K.  Sridhar
    • M.  Stryjak-Bogacka
    • K.  Szczepańska
    • H.  Taşikn
    • D.  Tennakoon
    • D.  Thanakitpipattana
    • J.  Trovão
    • A.  Türkekul
    • A.  van Iperen
    • P.  van 't Hof
    • G.  Vasquez
    • C.  Visagie
    • B.  Wingfield
    • P.  Wong
    • W.  Yang
    • M.  Yarar
    • O.  Yarden
    • N.  Yilmaz
    • N.  Zhang
    • Y.  Zhu
    • J.  Groenewald

    Novel species of fungi described in this study include those from various countries as follows: Australia, Bolivia, Brazil, Bulgaria, Canada, China, Denmark, Ecuador (Galapagos), Finland, France, India, Iran, Israel, Italy, Namibia, Netherlands, Norway, Pakistan, Poland, Portugal, Qatar, South Africa, South Korea, Spain, Sweden, Thailand, Taiwan region...