Matches in SemOpenAlex for { <https://semopenalex.org/work/W1996342267> ?p ?o ?g. }
- W1996342267 endingPage "138" @default.
- W1996342267 startingPage "130" @default.
- W1996342267 abstract "A novel field transplantation technique, in which seaweed material is incorporated into dialysis tubing, was used to investigate intra-specific responses to metals in the model brown alga Ectocarpus siliculosus. Metal accumulation in the two strains was similar, with higher concentrations in material deployed to the metal-contaminated site (Ventanas, Chile) than the pristine site (Quintay, Chile). However, the oxidative responses differed. At Ventanas, strain Es147 (from low-polluted site) underwent oxidative damage whereas Es524 (from highly polluted site) was not affected. Concentrations of reduced ascorbate (ASC) and reduced glutathione (GSH) were significantly higher in Es524. Activities of the antioxidant enzymes superoxide dismutase (SOD), ascorbate peroxidase (APX), catalase (CAT), and glutathione reductase (GR) all increased in Es524, whereas only SOD increased in Es147. For the first time, employing a field transplantation technique, we provide unambiguous evidence of inter-population variation of metal-tolerance in brown algae and establish that antioxidant defences are, in part, responsible." @default.
- W1996342267 created "2016-06-24" @default.
- W1996342267 creator A5033245253 @default.
- W1996342267 creator A5038118203 @default.
- W1996342267 creator A5061449579 @default.
- W1996342267 creator A5063762056 @default.
- W1996342267 creator A5065332771 @default.
- W1996342267 date "2015-04-01" @default.
- W1996342267 modified "2023-10-11" @default.
- W1996342267 title "A novel field transplantation technique reveals intra-specific metal-induced oxidative responses in strains of Ectocarpus siliculosus with different pollution histories" @default.
- W1996342267 cites W1532672888 @default.
- W1996342267 cites W1573518848 @default.
- W1996342267 cites W191793640 @default.
- W1996342267 cites W1963520575 @default.
- W1996342267 cites W1966299727 @default.
- W1996342267 cites W1968211018 @default.
- W1996342267 cites W1969650482 @default.
- W1996342267 cites W1977136027 @default.
- W1996342267 cites W1978253752 @default.
- W1996342267 cites W1981309440 @default.
- W1996342267 cites W1995017954 @default.
- W1996342267 cites W1996719982 @default.
- W1996342267 cites W2012743321 @default.
- W1996342267 cites W2014269080 @default.
- W1996342267 cites W2016898290 @default.
- W1996342267 cites W2023155595 @default.
- W1996342267 cites W2028761099 @default.
- W1996342267 cites W2034923586 @default.
- W1996342267 cites W2039257308 @default.
- W1996342267 cites W2047783704 @default.
- W1996342267 cites W2067967330 @default.
- W1996342267 cites W2071572175 @default.
- W1996342267 cites W2073732263 @default.
- W1996342267 cites W2073746503 @default.
- W1996342267 cites W2078318584 @default.
- W1996342267 cites W2082115497 @default.
- W1996342267 cites W2083683068 @default.
- W1996342267 cites W2085240270 @default.
- W1996342267 cites W2101021096 @default.
- W1996342267 cites W2122074467 @default.
- W1996342267 cites W2135205152 @default.
- W1996342267 cites W2135967461 @default.
- W1996342267 cites W2140128561 @default.
- W1996342267 cites W2150539008 @default.
- W1996342267 cites W2151393888 @default.
- W1996342267 cites W2159919086 @default.
- W1996342267 cites W2160389099 @default.
- W1996342267 cites W2161218352 @default.
- W1996342267 cites W2164163089 @default.
- W1996342267 cites W2239349310 @default.
- W1996342267 cites W4241016250 @default.
- W1996342267 cites W4256665404 @default.
- W1996342267 cites W4362234548 @default.
- W1996342267 doi "https://doi.org/10.1016/j.envpol.2015.01.026" @default.
- W1996342267 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/25645062" @default.
- W1996342267 hasPublicationYear "2015" @default.
- W1996342267 type Work @default.
- W1996342267 sameAs 1996342267 @default.
- W1996342267 citedByCount "18" @default.
- W1996342267 countsByYear W19963422672015 @default.
- W1996342267 countsByYear W19963422672016 @default.
- W1996342267 countsByYear W19963422672017 @default.
- W1996342267 countsByYear W19963422672018 @default.
- W1996342267 countsByYear W19963422672019 @default.
- W1996342267 countsByYear W19963422672020 @default.
- W1996342267 countsByYear W19963422672021 @default.
- W1996342267 countsByYear W19963422672022 @default.
- W1996342267 countsByYear W19963422672023 @default.
- W1996342267 crossrefType "journal-article" @default.
- W1996342267 hasAuthorship W1996342267A5033245253 @default.
- W1996342267 hasAuthorship W1996342267A5038118203 @default.
- W1996342267 hasAuthorship W1996342267A5061449579 @default.
- W1996342267 hasAuthorship W1996342267A5063762056 @default.
- W1996342267 hasAuthorship W1996342267A5065332771 @default.
- W1996342267 hasBestOaLocation W19963422672 @default.
- W1996342267 hasConcept C126322002 @default.
- W1996342267 hasConcept C130698151 @default.
- W1996342267 hasConcept C162008176 @default.
- W1996342267 hasConcept C165069038 @default.
- W1996342267 hasConcept C181199279 @default.
- W1996342267 hasConcept C185592680 @default.
- W1996342267 hasConcept C2775838275 @default.
- W1996342267 hasConcept C2776151105 @default.
- W1996342267 hasConcept C2778004101 @default.
- W1996342267 hasConcept C2778760513 @default.
- W1996342267 hasConcept C2778979269 @default.
- W1996342267 hasConcept C2908647359 @default.
- W1996342267 hasConcept C2911091166 @default.
- W1996342267 hasConcept C538909803 @default.
- W1996342267 hasConcept C55493867 @default.
- W1996342267 hasConcept C59822182 @default.
- W1996342267 hasConcept C71924100 @default.
- W1996342267 hasConcept C86803240 @default.
- W1996342267 hasConcept C99454951 @default.
- W1996342267 hasConceptScore W1996342267C126322002 @default.
- W1996342267 hasConceptScore W1996342267C130698151 @default.
- W1996342267 hasConceptScore W1996342267C162008176 @default.
- W1996342267 hasConceptScore W1996342267C165069038 @default.