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首页> 外文期刊>Marine ecology progress series >Interactive effects of body size and environmental gradient on the trophic ecology of sea stars in an Antarctic fjord
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Interactive effects of body size and environmental gradient on the trophic ecology of sea stars in an Antarctic fjord

机译:身体大小与环境梯度对南极峡湾营养生态学的互动效应

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摘要

Antarctic sea stars can occupy different trophic niches and display different trophic levels, but, while the impacts of their body size and environmental features on their trophic niches are potentially important, they are presently understudied. Here we assessed the trophic ecology in relation to the size and habitat of sea stars in a fjord on King George Island (South Shetland Islands) using stable isotope values of carbon (delta C-13), nitrogen (delta N-15), and sulphur (delta S-34). The disc radius influenced delta C-13 and delta N-15 values, whereas more limited changes in delta C-13 or delta S-34 values were related to arm length. Specifically, delta C-13 and delta N-15 values were linked to disc radius in generalist species (Diplasterias brandti and Odontaster validus), which could indicate ontogenetic diet shifts, while this relationship occurred less frequently in more specialised species (Bathybiaster loripes, Notasterias bongraini, and Perknaster sladeni). O. validus had a smaller isotopic niche size in the inner than the outer fjord. The niche overlap between D. brandti and O. validus was low in the inner fjord. Low resource availability within the fjord, linked to higher turbidity, could induce trophic niche constriction and interspecific resource segregation. This could represent a mechanism for competition avoidance in a resource-limited system. Conversely, higher resource availability could allow O. validus to expand and share its isotopic niche with D. brandti in the outer fjord with a limited risk of competition. This trophic plasticity will likely influence how O. validus copes with the present and future modification of environmental conditions induced by climate change.
机译:南极海星可以占用不同的营养性营养不良,展出不同的营养级别,但是,他们的身体大小和环境特征对他们的营养性的影响可能是可能的重要性的,而他们目前被认为。在这里,我们使用稳定的同位素值(Delta C-13),氮(Delta N-15)和硫磺(Delta S-34)。盘半径影响了Delta C-13和Delta N-15值,而Delta C-13或Delta S-34值的更有限的变化与臂长度有关。具体而言,ΔC-13和δn-15值与通用物种(optasterias Brandti和Odontaster有效期)的盘半径连接,这可能表明饮食变化,而这种关系在更专业的物种(Bathybiaster Loripes,Notasterias Bongraini和perknaster sladeni)。 O. validus在内外的小于外峡湾的同位素的利基大小。 D. Brandti和O. Valrys之间的利基重叠在内部峡湾中很低。峡湾内的低资源可用性,链接到较高浊度,可以诱导营养的利基收缩和特异性的资源分离。这可以代表资源限制系统中竞争避免的机制。相反,更高的资源可用性可以允许O.有效扩展和分享其同位素利基与外峡台的D. Brandti,风险有限。这种营养性可塑性可能会影响O. Validus如何应对气候变化引起的环境条件的目前和未来修改。

著录项

  • 来源
    《Marine ecology progress series》 |2021年第16期|189-202|共14页
  • 作者单位

    Univ Liege Lab Oceanol Freshwater & Ocean Sci Unit Res FOCUS Allee Six Aout 13 B-4000 Liege Belgium|Aix Marseille Univ Campus Univ Luminy Case 901 F-13288 Marseille France|Univ Toulon & Var Mediterranean Inst Oceanog MIO CNRS INSU IRD UM 110 Campus Univ Luminy Case 901 F-13288 Marseille France;

    Polish Acad Sci IO PAN Inst Oceanol PL-81712 Sopot Portugal;

    Polish Acad Sci IO PAN Inst Oceanol PL-81712 Sopot Portugal;

    Univ Liege Lab Oceanol Freshwater & Ocean Sci Unit Res FOCUS Allee Six Aout 13 B-4000 Liege Belgium;

    Univ Liege Lab Oceanol Freshwater & Ocean Sci Unit Res FOCUS Allee Six Aout 13 B-4000 Liege Belgium|IFREMER Lab Environm Profond REM EEP Ctr Bretagne F-29280 Plouzane France;

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

    Ontogenetic shifts; Resource availability; Trophic interaction; Sea stars; Southern Ocean; Stable isotopes;

    机译:ontogenetic转变;资源可用性;营养互动;海星;南洋;稳定同位素;

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