West Florida Shelf pipeline serves as sea turtle benthic habitat based on in situ towed camera observations

IF 1.3 4区 生物学 Q3 MARINE & FRESHWATER BIOLOGY Aquatic Biology Pub Date : 2019-01-30 DOI:10.3354/ab00722
H. Broadbent, Sarah E. Grasty, R. Hardy, Margaret M. Lamont, Kristen M. Hart, C. Lembke, Jennifer L. Brizzolara, S. Murawski
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引用次数: 6

Abstract

The use of marine offshore benthic habitats by sea turtles is poorly characterized due to the difficulty of obtaining in situ data. Understanding benthic habitat use that is important to the species’ reproduction, foraging, and migrations is critical for guiding management decisions. A towed camera-based assessment survey system (C-BASS) equipped with environmental sensors was used to characterize and assess benthic habitats on the West Florida Shelf (WFS) from 2014 to 2018. During these cruises, sea turtles were opportunistically observed during the surveys, and critical in situ data such as spatiotemporal information, species identification, habitat use, behavior, and environmental data were collected and evaluated. In total, 79 sea turtles were observed during 97 transects of approximately 2700 km of seafloor, which was recorded on 380 h of video. Several sea turtle species were spotted within the WFS, including loggerhead Caretta caretta, Kemp’s ridley Lepidochelys kempii, and green turtles Chelonia mydas. These opportunistic sightings revealed an area of high use on the WFS, an anthropogenic structure known as the Gulfstream natural gas pipeline (GSPL). C-BASS survey results suggest that 2 sea turtle species (C. caretta and L. kempii) utilize this artificial structure primarily as a resting area. We emphasize the importance of combining habitat mapping techniques (towed underwater video and multibeam bathymetry/backscatter) with tracking technology to better understand the fine-scale habitat use of sea turtles.
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根据现场拖曳相机观察,西佛罗里达大陆架管道作为海龟底栖动物栖息地
由于难以获得原位数据,海龟对海洋近海底栖生物栖息地的利用特征很差。了解底栖动物栖息地的使用对物种的繁殖、觅食和迁徙至关重要,这对指导管理决策至关重要。2014年至2018年,采用配备环境传感器的拖曳式摄像机评估调查系统(C-BASS)对西佛罗里达大陆架(WFS)底栖生物栖息地进行了表征和评估。在此期间,我们在调查过程中对海龟进行了机会性观察,并收集和评估了海龟的时空信息、物种鉴定、栖息地利用、行为和环境等关键数据。总共有79只海龟在大约2700公里的海底的97个断面中被观察到,并被记录在380小时的视频中。在WFS内发现了几种海龟,包括赤蠵龟,Kemp 's ridley Lepidochelys kempii和绿海龟Chelonia mydas。这些偶然的发现揭示了WFS上一个被高度利用的区域,一个被称为湾流天然气管道(GSPL)的人为结构。C-BASS调查结果表明,2种海龟(C. caretta和L. kempii)主要利用这种人工结构作为休息区域。我们强调将栖息地测绘技术(拖曳水下视频和多波束测深/后向散射)与跟踪技术相结合的重要性,以更好地了解海龟对栖息地的精细利用。
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来源期刊
Aquatic Biology
Aquatic Biology 生物-海洋与淡水生物学
CiteScore
2.70
自引率
0.00%
发文量
7
审稿时长
3 months
期刊介绍: AB publishes rigorously refereed and carefully selected Feature Articles, Research Articles, Reviews and Notes, as well as Comments/Reply Comments (for details see MEPS 228:1), Theme Sections, Opinion Pieces (previously called ''As I See It'') (for details consult the Guidelines for Authors) concerned with the biology, physiology, biochemistry and genetics (including the ’omics‘) of all aquatic organisms under laboratory and field conditions, and at all levels of organisation and investigation. Areas covered include: -Biological aspects of biota: Evolution and speciation; life histories; biodiversity, biogeography and phylogeography; population genetics; biological connectedness between marine and freshwater biota; paleobiology of aquatic environments; invasive species. -Biochemical and physiological aspects of aquatic life; synthesis and conversion of organic matter (mechanisms of auto- and heterotrophy, digestion, respiration, nutrition); thermo-, ion, osmo- and volume-regulation; stress and stress resistance; metabolism and energy budgets; non-genetic and genetic adaptation. -Species interactions: Environment–organism and organism–organism interrelationships; predation: defenses (physical and chemical); symbioses. -Molecular biology of aquatic life. -Behavior: Orientation in space and time; migrations; feeding and reproductive behavior; agonistic behavior. -Toxicology and water-quality effects on organisms; anthropogenic impacts on aquatic biota (e.g. pollution, fisheries); stream regulation and restoration. -Theoretical biology: mathematical modelling of biological processes and species interactions. -Methodology and equipment employed in aquatic biological research; underwater exploration and experimentation. -Exploitation of aquatic biota: Fisheries; cultivation of aquatic organisms: use, management, protection and conservation of living aquatic resources. -Reproduction and development in marine, brackish and freshwater organisms
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