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There are few resources available for assessing historical change in fish trophic dynamics, but specimens held in natural history collections could serve as this resource. In contemporary trophic ecology studies, trophic and source information can be obtained from compound-specific stable isotope analysis of amino acids of nitrogen (CSIA-AA-N).We subjected whole and to formalin fixation and 70% ethanol preservation. We extracted tissue samples from each fish pre-fixation, after each chemical change, and then in doubling time for 32-64 days once placed in the final preservative. All samples were subjected to CSIA-AA-N, and their glutamic acid and phenylalanine profiles and associated trophic position were examined for differences over time by species.Glutamic acid and phenylalanine values were inconsistent in direction and magnitude, particularly during formalin fixation, but stabilized similarly (in 70% ethanol) among conspecifics. In some cases, the amino acid values of our final samples were significantly different than our initial pre-preservation samples. Nonetheless, significant differences in glutamic acid, phenylalanine, and estimated trophic position were not detected among samples that were in 70% ethanol for >24 hr.Our results suggest that the relative trophic position of fluid-preserved specimens can be estimated using CSIA-AA-N, and CSIA-AA-N estimates for fluid-preserved specimens should only be reported as relative differences. Timelines of trophic position change can be developed by comparing specimens collected at different points in time, revealing trophic information of the past and cryptic ecosystem responses.
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http://dx.doi.org/10.1002/ece3.7061 | DOI Listing |
Ecology
September 2025
U.S. Geological Survey, Pennsylvania Cooperative Fish and Wildlife Research Unit, The Pennsylvania State University, University Park, Pennsylvania, USA.
Invasive species are drivers of ecological change with the potential to reshape the structure and function of terrestrial and aquatic ecosystems. The invasive flathead catfish (Pylodictis olivaris) is an opportunistic predator that has established a rapidly growing population in the Susquehanna River, Pennsylvania, USA, since they were first detected in 2002. Although the predatory effects of invasive catfishes on native fish communities have been documented, the effects of invasion on riverine food webs are poorly understood.
View Article and Find Full Text PDFBiology (Basel)
July 2025
State Key Laboratory of Ecological Pest Control for Fujian and Taiwan Crops, Key Laboratory of Biopesticides and Chemical Biology, MOE, College of Plant Protection, Fujian Agriculture and Forestry University, Fuzhou 350002, China.
Recent advances in microbiome studies have deepened our understanding of endosymbionts and gut-associated microbiota in host biology. Of those, lepidopteran systems in particular harbor a complex and diverse microbiome with various microbial taxa that are stable and transmitted between larval and adult stages, and others that are transient and context-dependent. We highlight key microorganisms-including , , , , , , , , , and -that play critical roles in microbial ecology, biotechnology, and microbiome studies.
View Article and Find Full Text PDFEur J Protistol
August 2025
AquaBioSafe Laboratory, University of Tyumen, 625003 Tyumen, Russia; Papanin Institute for Biology of Inland Waters, Russian Academy of Sciences, 152742 Borok, Russia.
Soil protists play key roles in terrestrial ecosystems, influencing microbial dynamics, nutrient cycling, and plant health. In this study, we describe a new genus and species of centrohelid heliozoans, Tellocystis perplexa gen. et sp.
View Article and Find Full Text PDFMar Pollut Bull
August 2025
Grupo Interuniversitario de Toxicología Ambiental y Seguridad de los Alimentos y Medicamentos, Facultad de Medicina, Universidad de La Laguna (ULL), Campus de Ofra, San Cristóbal de La Laguna, 38071 Santa Cruz de Tenerife, Spain; Departamento de Obstetricia y Ginecología, Pediatría, Medicina Pre
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View Article and Find Full Text PDFSci Total Environ
August 2025
Departamento de Conservación de la Biodiversidad, El Colegio de la Frontera Sur, Av. Centenario km 5.5, 77014 Chetumal, Quintana Roo, Mexico.
Massive influxes of pelagic Sargassum into Caribbean coastal ecosystems have disrupted environmental conditions and reshaped benthic communities. We evaluated how varying levels of Sargassum exposure (2015-2021) influenced the isotopic niche structure of five reef-associated sea urchin species across three reef lagoons in the Mexican Caribbean. Exposure scenarios were classified as Low (2016-2017), High (2015, 2018), and Prolonged (2021) based on satellite-derived biomass and its effect on lagoon reefs over last years.
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