Matches in SemOpenAlex for { <https://semopenalex.org/work/W2913483312> ?p ?o ?g. }
- W2913483312 endingPage "51" @default.
- W2913483312 startingPage "37" @default.
- W2913483312 abstract "Microalgae are capable of tolerating variations in water temperature and sudden exposures to toxic substances, and cellular heat shock proteins (HSPs) help to protect cells from such stress. Here, we determined the complete open reading frames (ORF) of small TsHSP20 and large TsHSP70 and 100 in the chlorophyte Tetraselmis suecica, and examined the expression levels of these genes after exposure to thermal stressors, redox-active metals, and non-redox-active metals. Putative TsHSP20, TsHSP70, and TsHSP100 proteins had conserved HSP-family motifs with different C-terminus motifs. Phylogenetic analyses of individual HSPs showed that T. suecica clustered well with other chlorophytes. Real-time PCR analysis showed that thermal stress did not significantly change the expression of all the tested TsHSPs. In addition, TsHSP20 showed little gene expression after being exposed to copper, whereas TsHSP70 and 100 genes greatly responded to the redox-active metals in CuSO4 followed by CuCl2, but not to the non-redox active metals. Redox-active metals strongly affected the physiology of the cells, as judged by cell counting, reactive oxygen species imaging and photosynthetic efficiency. These findings suggest that small and large HSPs are differentially involved in the response against environmental stressors. Moreover, metal toxicity may be specifically controlled by the anions in the metal compounds." @default.
- W2913483312 created "2019-02-21" @default.
- W2913483312 creator A5063250775 @default.
- W2913483312 creator A5065744057 @default.
- W2913483312 date "2019-06-01" @default.
- W2913483312 modified "2023-09-25" @default.
- W2913483312 title "Heat shock protein genes in the green alga Tetraselmis suecica and their role against redox and non-redox active metals" @default.
- W2913483312 cites W1590102610 @default.
- W2913483312 cites W1661929959 @default.
- W2913483312 cites W1803102843 @default.
- W2913483312 cites W1965616682 @default.
- W2913483312 cites W1971526956 @default.
- W2913483312 cites W1989975398 @default.
- W2913483312 cites W1992504847 @default.
- W2913483312 cites W2004937672 @default.
- W2913483312 cites W2005647265 @default.
- W2913483312 cites W2005886501 @default.
- W2913483312 cites W2007942191 @default.
- W2913483312 cites W2019710932 @default.
- W2913483312 cites W2020953659 @default.
- W2913483312 cites W2021095523 @default.
- W2913483312 cites W2023746083 @default.
- W2913483312 cites W2027069379 @default.
- W2913483312 cites W2028156775 @default.
- W2913483312 cites W2033234667 @default.
- W2913483312 cites W2033532530 @default.
- W2913483312 cites W2035412505 @default.
- W2913483312 cites W2036236067 @default.
- W2913483312 cites W2037289188 @default.
- W2913483312 cites W2039486844 @default.
- W2913483312 cites W2042018869 @default.
- W2913483312 cites W2050386030 @default.
- W2913483312 cites W2051583593 @default.
- W2913483312 cites W2055454170 @default.
- W2913483312 cites W2056321823 @default.
- W2913483312 cites W2063023687 @default.
- W2913483312 cites W2073920150 @default.
- W2913483312 cites W2075103663 @default.
- W2913483312 cites W2081757593 @default.
- W2913483312 cites W2083144767 @default.
- W2913483312 cites W2084559947 @default.
- W2913483312 cites W2084649263 @default.
- W2913483312 cites W2090068027 @default.
- W2913483312 cites W2090702508 @default.
- W2913483312 cites W2090878577 @default.
- W2913483312 cites W2091477850 @default.
- W2913483312 cites W2094201044 @default.
- W2913483312 cites W2095514509 @default.
- W2913483312 cites W2101475896 @default.
- W2913483312 cites W2102633083 @default.
- W2913483312 cites W2107795718 @default.
- W2913483312 cites W2108244474 @default.
- W2913483312 cites W2108791511 @default.
- W2913483312 cites W2114055738 @default.
- W2913483312 cites W2120545471 @default.
- W2913483312 cites W2132685019 @default.
- W2913483312 cites W2133984969 @default.
- W2913483312 cites W2134745492 @default.
- W2913483312 cites W2137417707 @default.
- W2913483312 cites W2140665078 @default.
- W2913483312 cites W2158714788 @default.
- W2913483312 cites W2158869968 @default.
- W2913483312 cites W2165189049 @default.
- W2913483312 cites W2260252849 @default.
- W2913483312 cites W2311203695 @default.
- W2913483312 cites W2479344474 @default.
- W2913483312 cites W2548297305 @default.
- W2913483312 cites W2765203136 @default.
- W2913483312 cites W2783511504 @default.
- W2913483312 cites W2791322232 @default.
- W2913483312 cites W29108552 @default.
- W2913483312 cites W2910959565 @default.
- W2913483312 doi "https://doi.org/10.1016/j.ejop.2019.01.006" @default.
- W2913483312 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/30875549" @default.
- W2913483312 hasPublicationYear "2019" @default.
- W2913483312 type Work @default.
- W2913483312 sameAs 2913483312 @default.
- W2913483312 citedByCount "15" @default.
- W2913483312 countsByYear W29134833122019 @default.
- W2913483312 countsByYear W29134833122020 @default.
- W2913483312 countsByYear W29134833122021 @default.
- W2913483312 countsByYear W29134833122022 @default.
- W2913483312 countsByYear W29134833122023 @default.
- W2913483312 crossrefType "journal-article" @default.
- W2913483312 hasAuthorship W2913483312A5063250775 @default.
- W2913483312 hasAuthorship W2913483312A5065744057 @default.
- W2913483312 hasConcept C104317684 @default.
- W2913483312 hasConcept C12554922 @default.
- W2913483312 hasConcept C179104552 @default.
- W2913483312 hasConcept C183688256 @default.
- W2913483312 hasConcept C185592680 @default.
- W2913483312 hasConcept C205260736 @default.
- W2913483312 hasConcept C2776151105 @default.
- W2913483312 hasConcept C2777369663 @default.
- W2913483312 hasConcept C48349386 @default.
- W2913483312 hasConcept C55493867 @default.
- W2913483312 hasConcept C55904794 @default.
- W2913483312 hasConcept C559758991 @default.