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首页> 外文期刊>Deep-Sea Research >Feeding ecology of mesopelagic zooplankton of the subtropical and subarctic North Pacific Ocean determined with fatty acid biomarkers
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Feeding ecology of mesopelagic zooplankton of the subtropical and subarctic North Pacific Ocean determined with fatty acid biomarkers

机译:用脂肪酸生物标志物测定北亚热带和北极北极近中生浮游动物的摄食生态

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摘要

Mesopelagic zooplankton may meet their nutritional and metabolic requirements in a number of ways including consumption of sinking particles, carnivory, and vertical migration. How these feeding modes change with depth or location, however, is poorly known. We analyzed fatty acid (FA) profiles to characterize zooplankton diet and large particle ( >51 μm) composition in the mesopelagic zone (base of euphotic zone -1000 m) at two contrasting time-series sites in the subarctic (station K2) and subtropical (station ALOHA) Pacific Ocean. Total FA concentration was 15.5 times higher in zooplankton tissue at K2, largely due to FA storage by seasonal vertical migrators such as Neocalanus and Eucalanus. FA biomarkers specific to herbivory implied a higher plant-derived food source at mesotrophic K2 than at oligotrophic ALOHA. Zooplankton FA biomarkers specific to dinoflagellates and diatoms indicated that diatoms, and to a lesser extent, dinoflagellates were important food sources at K2. At ALOHA, dinoflagellate FAs were more prominent. Bacteria-specific FA biomarkers in zooplankton tissue were used as an indicator of particle feeding, and peaks were recorded at depths where known particle feeders were present at ALOHA (e.g., ostracods at 100-300 m). In contrast, depth profiles of bacterial FA were relatively constant with depth at K2. Diatom, dinoflagellate, and bacterial biomarkers were found in similar proportions in both zooplankton and particles with depth at both locations, providing additional evidence that mesopelagic zooplankton consume sinking particles. Carnivory indices were higher and increased significantly with depth at ALOHA, and exhibited distinct peaks at K2, representing an increase in dependence on other zooplankton for food in deep waters. Our results indicate that feeding ecology changes with depth as well as by location. These changes in zooplankton feeding ecology from the surface through the mesopelagic zone, and between contrasting environments, have important consequences for the quality and quantity of organic material available to deeper pelagic and benthic food webs, and for organic matter sequestration.
机译:中生浮游动物可能以多种方式满足其营养和代谢需求,包括下沉颗粒的食用,食肉动物和垂直迁移。但是,这些进料方式如何随深度或位置而变化却鲜为人知。我们分析了脂肪酸(FA)的特征,以表征亚北极(K2站)和亚热带两个相对的时间序列地点的近中生带(常光区-1000 m)中浮游动物的饮食和大颗粒(> 51μm)组成(车站ALOHA)太平洋。 K2浮游动物组织中的总FA浓度高出15.5倍,这主要是由于季节性新迁徙者如Neocalanus和Eucalanus储存了FA。食草动物特有的FA生物标记暗示中营养K2的植物来源食物来源比贫营养ALOHA更高。独鞭毛藻和硅藻特有的浮游动物FA生物标志物表明,硅藻,以及在较小程度上,独鞭藻是K2的重要食物来源。在ALOHA,鞭毛藻FA更为突出。浮游动物组织中细菌特有的FA生物标志物被用作颗粒进食的指示剂,并在ALOHA上存在已知颗粒进料器的深度(例如,在100-300 m处的兽类)记录了峰值。相反,细菌FA的深度分布随K2处的深度相对恒定。在浮游动物和颗粒中发现硅藻,鞭毛藻和细菌生物标记物的比例相似,在两个位置都有深度,这提供了中生浮游动物消耗沉没颗粒的额外证据。在ALOHA,食肉动物的指数较高,并随深度增加而显着增加,并且在K2处显示出明显的峰值,这表明深水食物对其他浮游动物的依赖性增加。我们的结果表明,饲料生态随着深度和位置而变化。这些浮游动物从地表到中生界带以及相反环境之间的生态摄食变化,对深层上层和底栖食物网可用的有机物质的质量和数量,以及对有机质的隔离具有重要影响。

著录项

  • 来源
    《Deep-Sea Research 》 |2010年第10期| p.1278-1294| 共17页
  • 作者单位

    Monterey Bay Aquarium Research Institute, 7700 Sandholdt Road, Moss Landing, CA 95039, USA;

    Virginia Institute of Marine Science, College of William and Mary, Route 1208 Create Rd., Gloucester Point, VA 23062, USA;

    Virginia Institute of Marine Science, College of William and Mary, Route 1208 Create Rd., Gloucester Point, VA 23062, USA;

    Department of Earth and Planetary Science, University of California Berkeley, Berkeley, CA 94720, USA,E0 Lawrence Berkeley National Laboratory, 1 Cyclotron Road, Berkeley, CA 94720, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    biomarkers; fatty acids; feeding ecology; mesopelagic zone; north pacific ocean; zooplankton;

    机译:生物标志物脂肪酸;喂养生态;近视区北太平洋;浮游动物;

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