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The Antarctic Peninsula is one of the regions to be most affected by increase in sea surface temperatures (SSTs) mediated by Global Climate Change; indeed, most negative predictions imply an up to 6 °C increment by the end of the XXI century. Temperature is one of the most important factors mediating diversity and distribution of macroalgae, although there is still no consensus as to the likely effects of higher SSTs, especially for polar seaweeds. Some available information suggests that potential strategies to withstand future increases in SSTs will be founded upon the glutathione-ascorbate cycle and the induction of chaperone-functioning heat shock proteins (HSPs); however, their eventual role, even for general stress responses, is unclear. The intertidal green, brown and red macroalgae species Monostroma hariotii, Adenocystis utricularis and Pyropia endiviifolia, respectively, from King George Island, Antarctic Peninsula, were exposed to 2 °C (control) and 8 °C (climate change scenario) for up to 5 days (d). Photosynthetic activity (α and ETR, and Ek), photoinhibition (F/F) and photoprotection processes (α, NPQ, and Ek) provided no evidence of negative ecophysiological effects. There were moderate increases in HO production and levels of lipid peroxidation with temperature, results supported by stable levels of total glutathione and ascorbate pools, with mostly higher levels of reduced ascorbate and glutathione than oxidized forms in all species. Transcripts of P. endiviifolia indicated a general upregulation of all antioxidant enzymes and HSPs genes studied under warmer temperature, although with different levels of activation with time. This pioneering investigation exploring different levels of biological organization, suggested that Antarctic intertidal macroalgae may be able to withstand future rise in SSTs, probably slightly altering their latitudinal distribution and/or range of thermal tolerance, by exhibiting robust glutathione-ascorbate production and recycling, as well as the induction of associated antioxidant enzymatic machinery and the syntheses of HSPs.
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http://dx.doi.org/10.1016/j.scitotenv.2020.140379 | DOI Listing |
J Nurs Scholarsh
September 2025
Bern University of Applied Sciences, Department of Health Professions, Bern, Switzerland.
Introduction: The climate crisis impacts global health and is exacerbated by the healthcare sector's emissions. Nurses, as the largest professional group, are key to promoting climate-resilient, low-carbon health systems. Integrating climate change and sustainable development into nursing education is crucial, yet gaps remain in understanding their representation in curricula and practice.
View Article and Find Full Text PDFPestic Biochem Physiol
November 2025
National Engineering Laboratory for Efficient Utilization of Soil and Fertilizer Resources, Key Laboratory of Agricultural Environment in Universities of Shandong, College of Resources and Environment, Shandong Agricultural University, 61 Daizong Road, Tai'an 271018, PR China. Electronic address: wj
Difenoconazole (DFC) is a commonly used triazole fungicide known for its high efficiency and environmental persistence. A thorough understanding of its environmental behavior, particularly sorption in soil, is critical to obtain a comprehensive assessment of the ecological risk of DFC. In this study, three soils with distinct physicochemical properties (brown soil, cinnamon soil, and fluvo-aquic soil) were used to elucidate the adsorption mechanisms of DFC on soil.
View Article and Find Full Text PDFEnviron Res
September 2025
School of Public Health, Sun Yat-sen University, Guangzhou 510080, China. Electronic address:
Climate change has heightened awareness of the health impacts of non-optimal temperatures (cold and heat), including the effect of gestational exposure and birth outcomes. However, temperature exposure assessment remains methodologically challenging due to unaccounted individual spatiotemporal mobility and adaptive behaviors, a gap that has not been adequately addressed in published studies. Using data from a prospective birth cohort in Guangzhou, China, conducted from 2017 to 2020, we assessed and compared three different exposure measures: home-based exposure, derived solely from ambient temperature data at residential locations; mobility-based exposure, incorporating individuals' spatiotemporal activities to capture dynamic environmental conditions; and AC & mobility-based exposure, an extension of the mobility-based approach that further integrates data on air-conditioning usage.
View Article and Find Full Text PDFEnviron Res
September 2025
Key Laboratory of Biodiversity and Environment on the Qinghai-Tibet Plateau, Ministry of Education, Xizang University, Lhasa 850000, China; School of Environmental Science and Engineering, Tianjin University, Tianjin 300072, China. Electronic address:
Glacial lakes play a vital role as indicators of global climate change and regional environmental responses. Eukaryotic planktonic microorganisms, pivotal in driving biogeochemical cycling of nutrients within these ecosystems, are crucial for preserving stability and ecological function of glacial lake environments. Nevertheless, the spatial and temporal dynamics, along with the mechanisms responsible for sustaining eukaryotic planktonic microbial communities in glacial lakes, especially during the glacier retreat and lake formation, are still largely uncharted.
View Article and Find Full Text PDFInt J Biol Macromol
September 2025
Faculty of Agronomy and Agricultural Sciences, University of Dschang, PO. Box 222, Dschang, Cameroon.
Dissolved organic matter (DOM) plays a key role in grassland carbon biogeochemistry and shows sensitivity to global climate change, particularly nitrogen (N) deposition. We investigated the soil DOM molecular composition by UV-Vis and fluorescence spectroscopy, and FT-ICR MS through a N addition experiment (CK, N5, N10, N20, and N40 [0, 5, 10, 20, and 40 g N m-2 year-1, respectively]) in a desert steppe of northwest China. Moderate N inputs (N5-N20) caused a dose-dependent increase in DOM content (9.
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