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Caulerpa prolifera stable isotope ratios reveal anthropogenic nutrients within a tidal lagoon

机译:Caulerpa增殖物稳定同位素比显示潮汐泻湖内的人为营养

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摘要

Mapping of the nutrient content and isotopic composition of the native, rooted, green macroalga Caulerpa prolifera and the seagrass Cymodocea nodosa was conducted in the summer of 2006 within the inner Bay of Cadiz , SW Spain. Isotope values of suspended solids from aquaculture (δ~(15)N = 9 ± 0.88) and urban effluent (δ~(15)N = 7 ± 1.97) were similar to the isotopic composition of the macrophytes (δ~(15)N range 3.4 to 8.1), suggesting the influence of anthropogenic nutrient sources throughout much of the bay. The N content of tissues (C. prolifera 3.0 to 4.9%; C. nodosa 1.8 to 3.0%) was highly associated with their isotopic composition, indicating that nutrient supply strongly influenced plant stoichiometry. Distance from the source, i.e. variation in water column nutrient concentration, which was also highly correlated with median current velocities (0.03 to 0.18 m s~(-1)) and to a lesser extent benthic light dose (1.8 to 10.7 mol quanta m~(-2) d~(-1)), appeared to determine the mass transfer of N to the benthos. Significantly lower values of C. nodosa N content and δ~(15)N hint at the role strong gradients in environmental conditions may play in promoting the stable coexistence of seagrasses and C. prolifera within the bay. C. prolifera was a useful indicator species that, via the analysis of its tissue composition, can provide a highly effective tool to aid in the management of nutrient inputs within shallow, coastal zones.
机译:在2006年夏季,在西班牙西南部加的斯内湾进行了天然,生根的绿色大藻Caulerpa prolifera和海草Cymodocea nodosa的营养成分和同位素组成图。水产养殖中的悬浮物(δ〜(15)N = 9±0.88)和城市污水(δ〜(15)N = 7±1.97)的同位素值与大型植物的同位素组成(δ〜(15)N范围从3.4到8.1),表明整个海湾大部分地区的人为营养源的影响。组织中的氮含量(C. prolifera 3.0到4.9%;结节梭菌1.8到3.0%)与它们的同位素组成高度相关,表明养分供应强烈影响了植物的化学计量。距水源的距离,即水柱养分浓度的变化,也与中位流速(0.03至0.18 ms〜(-1))和较小程度的底栖光剂量(1.8至10.7 mol定量〜)高度相关。 -2)d〜(-1))似乎决定了N向底盘的传质。结节梭菌N含量和δ〜(15)N的值明显较低,暗示环境条件中的强梯度可能在促进海湾内海草和梭菌的稳定共存中发挥作用。 C. prolifera是有用的指示物种,通过对其组织组成的分析,可以提供一个非常有效的工具,以帮助管理沿海浅海地区的养分输入。

著录项

  • 来源
    《Marine ecology progress series》 |2009年第18期|117-128|共12页
  • 作者单位

    Department of Biology, and Oceanography, Faculty of Marine and Environmental Sciences, University of Cadiz, 11510 Puerto Real (Cadiz), Spain;

    Department of Biology, and Oceanography, Faculty of Marine and Environmental Sciences, University of Cadiz, 11510 Puerto Real (Cadiz), Spain;

    Department of Geology, and Oceanography, Faculty of Marine and Environmental Sciences, University of Cadiz, 11510 Puerto Real (Cadiz), Spain;

    CESAM & Department of Biology, University of Aveiro, 3810-193 Aveiro, Portugal;

    CESAM & Department of Biology, University of Aveiro, 3810-193 Aveiro, Portugal;

    CESAM & Department of Biology, University of Aveiro, 3810-193 Aveiro, Portugal;

    Department of Physical Oceanography, Faculty of Marine and Environmental Sciences, University of Cadiz, 11510 Puerto Real (Cadiz), Spain;

    Department of Biology, and Oceanography, Faculty of Marine and Environmental Sciences, University of Cadiz, 11510 Puerto Real (Cadiz), Spain;

    Department of Biology, and Oceanography, Faculty of Marine and Environmental Sciences, University of Cadiz, 11510 Puerto Real (Cadiz), Spain;

    Department of Biology, and Oceanography, Faculty of Marine and Environmental Sciences, University of Cadiz, 11510 Puerto Real (Cadiz), Spain;

    Department of Biology, and Oceanography, Faculty of Marine and Environmental Sciences, University of Cadiz, 11510 Puerto Real (Cadiz), Spain;

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

    macroalgae; nitrogen; δ~(15)N; δ~(13)C; C:N ratio; hydrodynamics; seagrass; bay of cadiz;

    机译:大型藻类氮;δ〜(15)N;δ〜(13)C;C:N比;流体力学海草卡迪士湾;

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