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Most wrasse species swim during the day and bury themselves in the sandy bottoms of shallow reefs at night. This study aimed to evaluate the importance of sandy bottoms to the day-active/night-inactive rhythmicity of the tropical wrasse Halichoeres trimaculatus. Actogram analysis revealed that fish were active during the photophase and inactive during the scotophase in aquariums with both sandy and bare bottoms. When fish were kept in aquariums with bare bottoms, rhythmicity was maintained under constant dark conditions (DD) but became obscured under constant light conditions (LL), suggesting that a day-active/night-inactive rhythmicity is regulated by the circadian system. Robust fluctuations in Period1 (wPer1) and Period2 (wPer2) expression were observed in the pectoral fin tissue under light-dark conditions (LD). Similar fluctuations in wPer1 expression persisted under DD. When fish were kept under LD conditions for 7 days and then DD for 20 days, the emergence of fish from the sandy bottom was delayed gradually. At the same time, the peak time of wPer1 expression under DD was retarded from 06:00 to 10:00. Although wPer2 expression was dampened under DD, it increased after exposing fish to light. These results suggest that wPer1 and wPer2 are differentially involved in the day-active/night-inactive rhythmicity, and that blocking light with a sandy bed at night and exposing fish to light during emergence in the morning play important roles in maintaining consistent activities in wrasse species.
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http://dx.doi.org/10.1080/07420528.2017.1335747 | DOI Listing |
Mar Environ Res
July 2025
Iranian National Institute for Oceanography and Atmospheric Science, No. 3, Etemadzadeh St., Fatemi Ave., Tehran, 1411813389, Iran.
Tourist trampling is a major anthropogenic disturbance affecting sandy beaches. In this field study, we investigated how varying intensities of tourist trampling and sediment depth influence the diversity and abundance of intertidal meio- and macrofaunal benthic assemblages in the Gulf of Oman. Both taxonomic and functional structures were assessed.
View Article and Find Full Text PDFJ Hazard Mater
June 2025
Water Environment Technology, Department of Architecture and Civil Engineering, Chalmers University of Technology, Gothenburg SE-412 96, Sweden.
This study investigates the impacts of extreme rainfall events during winter and plant dormancy on bioretention filters' removal efficiencies of microplastics (MP), metals, and organic pollutants (OP) in stormwater. The studied filters had sorption materials such as waste-to-energy bottom ash, biochar, and Sphagnum peat mixed with sandy loam. Besides influent and effluent sampling, pore water sampling was conducted.
View Article and Find Full Text PDFSci Rep
July 2025
Faculdade de Engenharia Mecânica (FEM), Universidade Estadual de Campinas, Campinas, SP, 13083-860, Brazil.
This paper presents a novel multibody dynamic model for agricultural vehicles and applies it to study the effects of dynamic loading on a tracked wheel crawler vehicle used for agricultural purposes. Multibody dynamic simulation (MBS) is used to analyze the vehicle's behavior under various operating conditions, considering the stiffness between tracks and the arrangement of a rubber track system. The model accounts for soil interaction with the crawler and the load effects on different soil types, resulting in slip ratios up to 9% for dry sand, 8% sandy loam, and 6% clay soil.
View Article and Find Full Text PDFEcol Evol
June 2025
State Key Laboratory of Ecological Safety and Sustainable Development in Arid Lands Northwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences Lanzhou People's Republic of China.
Subindividual variation in leaf elemental composition, driven by trichome density and leaf maturity, is critical for plant adaptation but poorly understood in desert species. Here, we reveal that sand rice (), a potential future food crop, exhibits obvious declines in leaf trichome density across developmental stages, significantly influencing the redistribution of 33 mineral elements. The concentrations of these elements varied between genotypes (wild type: Shapotou, SPT; mutant: ) and/or across leaf ages (top, middle, bottom).
View Article and Find Full Text PDFSci Data
June 2025
IFREMER, Laboratoire d'Océanographie Physique et Spatiale, UMR 6523 (IFREMER, CNRS, IRD, UBO), IUEM, Brest, France.
A total of 30 low-cost bottom pressure sensors sampling at 2 Hz were developed and deployed in a nearshore environment during 4.2 months. The experiment took place in Blancs Sablons, a sandy bay near Le Conquet (France), during 2023-2024 winter.
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