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首页> 外文期刊>Oceanographic Literature Review >Organic carbon source variability in Arctic bivalves as deduced from the compound specific carbon isotopic composition of amino acids
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Organic carbon source variability in Arctic bivalves as deduced from the compound specific carbon isotopic composition of amino acids

机译:从氨基酸的化合物特异性碳同位素组合物中推断出北极双抗体中的有机碳源变异性

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摘要

In this study we used compound-specific carbon isotope analysis of amino acids (δ~(13)C_(AA)) to determine organic carbon sources utilized by the dominant benthic bivalve species collected along a latitudinal gradient in the northern Bering and Chukchi Seas, specifically at productivity hotspots identified within the Distributed Biological Observatory (DBO) program, and over Hanna Shoal in the northern Chukchi Sea. The recent shift to earlier sea-ice melt is one of the climate change consequences influencing Pacific Arctic ecosystems, which we integrate within our observations. Our goals included investigating the utilization of organic matter resources by several dominant Arctic bivalves and their trophic elasticity to changes in primary productivity patterns following changes in the onset of the annual productive season. Based upon δ~(13)C_(AA) patterns observed, these species utilized different carbon sources along the latitudinal gradient, including a strong input of bacterially reworked material and microalgae, mainly in particulate organic matter mixtures. Species type and the sampling location both played roles in δ~(13)C_(AA) variability, suggesting the influence of local production and decomposition processes. Macoma calcarea and Ennucula tenuis were shown to utilize organic matter of different quality, suggesting they may switch their feeding preferences to more detrital sources on a seasonal basis, but this was also affected by geographical location. These observations may have important implications for the benthic populations as microbial reworking of organic material is expected to increase with climate warming and likely shifts in food web structure.
机译:在这项研究中,我们使用了氨基酸的复合特异性碳同位素分析(δ〜(13)C_(AA)),以确定沿着北部波动和Chukchi海洋的纬度梯度收集的主要底栖双抗体种类所用的有机碳源,特别是在分布式生物天文台(DBO)计划中确定的生产率热点,并在北楚科希海的汉纳浅滩。最近向早期的海冰融化的转变是影响太平洋北极生态系统的气候变化后果之一,我们在我们的观察中整合。我们的目标包括通过几种主要北极双抗体和营养性弹性来调查利用有机物资源,以对年生产季节发作发生后的初级生产率模式的变化。观察到δ〜(13)的C_(AA)图案,这些物种沿着纬度梯度使用不同的碳源,包括细菌性衬里和微藻的强输入,主要是颗粒状有机物质混合物。物种类型和采样位置均为Δ〜(13)C_(AA)可变性的角色,表明局部生产和分解过程的影响。 Macoma Calcarea和Ennucula Tenuis被证明利用不同质量的有机物,这表明他们可能会在季节性的基础上将它们的饲养偏好转换为更革命的来源,但这也受到地理位置的影响。这些观察结果可能对底栖群体具有重要意义,因为有机材料的微生物再加工预计会随着气候变暖而增加,并且可能在食品网结构中变化。

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  • 来源
    《Oceanographic Literature Review》 |2021年第6期|1314-1314|共1页
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    Institute of Oceanology Polish Academy of Sciences Powstancow Warszawy 55 81 - 712 Sopot Poland;

    Institute of Oceanology Polish Academy of Sciences Powstancow Warszawy 55 81 - 712 Sopot Poland;

    Institute of Oceanology Polish Academy of Sciences Powstancow Warszawy 55 81 - 712 Sopot Poland;

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