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This method development paper outlines an integrative stochastic dynamic methodology (StDM) framework to anticipate land use (LU) change effects on the ecological status of monitored and non-monitored lotic surface waters under the Water Framework Directive (WFD). Tested in the Alto Minho River Basin District in North West Portugal, the model is an innovative step towards developing a decision-making and planning tool to assess the influence impacts such as LU change and climate change on these complex systems. Comprising a series of sequential steps, a Generalized Linear Model based, competing model Multi Model Inference (MMI) approach was used for parameter estimation to identify principal land use types (distal factors) driving change in biological and physicochemical support elements (proximal factors) in monitored water bodies. The framework integrated MMI constants and coefficients of selected LU categories in the StDM simulations and spatial projections to simulate the ecological status of monitored and non-monitored lotic waterbodies in the test area under 2 scenarios of (1) LU intensification and (2) LU extensification. A total of 100 simulations were run for a 50year period for each scenario. Spatially dynamic projections of WFD metrics were obtained, taking into account the occurrence of stochastic wildfire events which typically occur in the study region and are exacerbated by LU change. A marked projected decline to "Moderate" ecological status for most waterbodies was detected under intensification but little change under extensification; only a few waterbodies fell to "moderate" status. The latter scenario describes the actual regional socio-economic situation of agricultural abandonment due to rural poverty, partly explaining the projected lack of change in ecological status. Based on the WFD "one out all out" criterion, projected downward shifts in ecological status were due to physicochemical support elements, namely increased phosphorus levels. Little or no change in status was driven by Intercalibrated Biological Quality Elements, indicating innate resilience and raising questions concerning uncertainty, the effect of pressures other than land use and metric redundancy and the WFD classification process.
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http://dx.doi.org/10.1016/j.scitotenv.2016.04.153 | DOI Listing |
Environ Res
September 2025
Department of Chemical Engineering, National Institute of Technology Durgapur, Durgapur-713209, India. Electronic address:
The coexistence of antibiotics (AB) and microplastics (MP) in the environment has led to the formation of AB-MP complexes, posing several ecological and public health challenges. This review explores the mechanisms driving AB adsorption onto MPs, including diverse interactions (hydrophobic interactions, hydrogen bonding, π-π stacking, and ionic exchange) and their role in maintaining the persistence and mobility of the complexes. These complexes have been reported to serve as reservoirs/vectors for antimicrobial resistance (AMR), disrupt microbial communities, and enhance the bioavailability of ABs, thus posing various threats affecting biodiversity health and ecosystem stability.
View Article and Find Full Text PDFJ Environ Manage
September 2025
College of Water Resources and Architectural Engineering at Northwest Agriculture and Forestry University/Key Laboratory of Agricultural Soil and Water Engineering in Arid and Semiarid Areas at Ministry of Education, Yangling, Shaanxi, 712100, PR China; Academy of Plateau Science and Sustainability,
Alpine ecosystems are critical for water regulation but highly sensitive to climate change. In the Three-River Source Region (TRSR) of the Qinghai-Tibet Plateau, changes in temperature, precipitation, and large-scale ecological restoration have significantly altered vegetation phenology-including the start (SOS), end (EOS), and length (LOS) of the growing season, as well as vegetation growth status (GS). These shifts affect hydrological processes such as evapotranspiration, soil moisture, snowmelt, and runoff.
View Article and Find Full Text PDFDiabetes Res Clin Pract
September 2025
Université Paris Cité, ECEVE, UMR 1123, Inserm, F-75010 Paris, France; Assistance Publique-Hôpitaux de Paris, Hôpital Robert Debré, Service de santé publique, équipe REPERES, F-75019 Paris, France. Electronic address:
Aims: To study the association between socioeconomic status (SES) and hospital efficiency in Type 1 diabetes mellitus patients admitted for ketoacidosis or diabetic coma in mainland France, overall and in adults versus children.
Methods: An observational study was carried out using exhaustive national hospital discharge databases. It included all admissions discharged from 2013 to 2019.
Mar Environ Res
August 2025
Marine Macroecology and Biogeography Lab, Universidade Federal de Santa Catarina, Brazil.
Transition zones exhibit a unique combination of abiotic characteristics derived from the merging of two distinct areas, hosting communities with different thermal tolerance and distribution ranges. Given these characteristics, these zones are key to unmasking the effects of climate change on biodiversity since rapid changes in the sea temperature can favor some populations more than others. This study aimed to investigate the community structure of reef fish in seven islands of the southwestern Atlantic in a transition zone.
View Article and Find Full Text PDFVet Microbiol
August 2025
Ecology of the Global Microbiome-Department of Ecology and Complexity, Centre of Advanced Studies of Blanes-Spanish Council for Research CEAB-CSIC, Blanes, Spain. Electronic address:
The new variant of rabbit haemorrhagic disease virus (RHDV2 or RHDVb) is responsible for a lethal, emerging infectious disease in several species of lagomorphs, and is globally threatening wild rabbit populations. It is known that the gut microbiota plays a crucial role in modulating host health, including immune responses and disease susceptibility. We hypothesize potential association of gut microbiota with the epidemiological dynamics of RHDV2 outbreaks that may provide key insights into how this lethal, emerging pathogen impacts wild rabbit populations.
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