98%
921
2 minutes
20
Human impacts, particularly nutrient pollution and land-use change, have caused significant declines in the quality and quantity of freshwater resources. Most global assessments have concentrated on species diversity and composition, but effects on the multifunctionality of streams and rivers remain unclear. Here, we analyse the most comprehensive compilation of stream ecosystem functions to date to provide an overview of the responses of nutrient uptake, leaf litter decomposition, ecosystem productivity, and food web complexity to six globally pervasive human stressors. We show that human stressors inhibited ecosystem functioning for most stressor-function pairs. Nitrate uptake efficiency was most affected and was inhibited by 347% due to agriculture. However, concomitant negative and positive effects were common even within a given stressor-function pair. Some part of this variability in effect direction could be explained by the structural heterogeneity of the landscape and latitudinal position of the streams. Ranking human stressors by their absolute effects on ecosystem multifunctionality revealed significant effects for all studied stressors, with wastewater effluents (194%), agriculture (148%), and urban land use (137%) having the strongest effects. Our results demonstrate that we are at risk of losing the functional backbone of streams and rivers if human stressors persist in contemporary intensity, and that freshwaters are losing critical ecosystem services that humans rely on. We advocate for more studies on the effects of multiple stressors on ecosystem multifunctionality to improve the functional understanding of human impacts. Finally, freshwater management must shift its focus toward an ecological function-based approach and needs to develop strategies for maintaining or restoring ecosystem functioning of streams and rivers.
Download full-text PDF |
Source |
---|---|
http://dx.doi.org/10.1111/gcb.16210 | DOI Listing |
Dermatol Surg
September 2025
Etre Cosmetic Dermatology and Laser Center, New Orleans, Louisiana.
Background: Botulinum neurotoxins in aesthetic medicine require reconstitution, which may cause administration errors.
Objective: To evaluate liquid nivobotulinumtoxinA treatment of lateral canthal lines (LCL) and glabellar lines (GL).
Materials And Methods: Participants with moderate-to-severe LCL with/without moderate-to-severe GL were enrolled in 2 double-blind randomized clinical trials.
Understanding the spatial distribution of rare species is fundamental to biodiversity conservation. The black-necked crane (), a flagship species of alpine wetlands and a first-class nationally protected species in China, serves as an important indicator for ecosystem health. Based on the had data and ecological environment data, this study used the Maximum Entropy model (MaxEnt) and Random Forest model (RF) to predict the suitable distribution area of the black-necked crane.
View Article and Find Full Text PDFEnviron Sci Pollut Res Int
September 2025
Grupo de Saneamiento Ambiental, Facultad de Ingeniería, Escuela de Ingeniería de Recursos Naturales y del Ambiente, Universidad del Valle, Calle13 #100-00, 76001, Santiago de Cali, Colombia.
The presence of pharmaceuticals in water poses emerging environmental risks to aquatic ecosystems and potentially human health. This study investigates the occurrence and ecological threat of antiepileptic drugs and lipid-lowering agents in surface water, specifically in the Cauca River, one of the most important rivers in Colombia. Quantification was conducted using liquid chromatography coupled with mass spectrometry.
View Article and Find Full Text PDFProc Natl Acad Sci U S A
September 2025
Colorado State University, Department of Forest and Rangeland Stewardship, Fort Collins, CO 80523.
The streams of Alaska's Brooks Range lie within a vast (~14M ha) tract of protected wilderness and have long supported both resident and anadromous fish. However, dozens of historically clear streams have recently turned orange and turbid. Thawing permafrost is thought to have exposed sulfide minerals to weathering, delivering iron and other potentially toxic metals to aquatic ecosystems.
View Article and Find Full Text PDFProc Natl Acad Sci U S A
September 2025
Department of Integrative Biology, University of California, Berkeley, CA 94720-3140.
Microscale symbioses can be critical to ecosystem functions, but the mechanisms of these interactions in nature are often cryptic. Here, we use a combination of stable isotope imaging and tracing to reveal carbon (C) and nitrogen (N) exchanges among three symbiotic primary producers that fuel a salmon-bearing river food web. Bulk isotope analysis, nanoSIMS (secondary ion mass spectrometry) isotope imaging, and density centrifugation for quantitative stable isotope probing enabled quantification of organism-specific C- and N-fixation rates from the subcellular scale to the ecosystem.
View Article and Find Full Text PDF