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首页> 外文期刊>Chemosphere >Copper and cadmium effects on growth and extracellular exudation of the marine toxic dinoflagellate Alexandrium catenella: 3D-fluorescence spectroscopy approach
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Copper and cadmium effects on growth and extracellular exudation of the marine toxic dinoflagellate Alexandrium catenella: 3D-fluorescence spectroscopy approach

机译:铜和镉对海洋有毒的鞭毛藻亚历山大藻的生长和细胞外渗出的影响:3D荧光光谱法

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摘要

In this study, metal contamination experiments were conducted to investigate the effects of copper and cadmium on the growth of the marine toxic dinoflagellate Alexandrium catenella and on the production of dissolved organic matter (Dissolved Organic Carbon: DOC; Fluorescent Dissolved Organic Matter: FDOM). This species was exposed to increasing concentrations of Cu~(2+) (9.93 × 10~(-10)-1.00 × 10~(-7)M) or Cd~(2+) (1.30 × 10~(-8)-4.38 × 10~(-7) M), to simulate polluted environments. The drastic effects were observed at pCu~(2+) = 7.96 (Cu~(2+): 1.08 × 10~(-8) M) and pCd~(2+) = 7.28 (Cd~(2+): 5.19 × 10~(-8) M), where cyst formation occurred. Lower levels of Cu~(2+) (pCu~(2+) > 9.00) and Cd~(2+) (pCd~(2+) > 7.28) had no effect on growth. However, when levels of Cu~(2+) and Cd~(2+) were beyond 10~(-7) M, the growth was totally inhibited. The DOC released per cell (DOC/Cell) was different depending on the exposure time and the metal contamination, with higher DOC/Cell values in response to Cu~(2+) and Cd~(2+), comparatively to the control. Samples were also analyzed by 3D-fluorescence spectroscopy, using the Parallel Factor Analysis (PARAFAC) algorithm to characterize the FDOM. The PARAFAC analytical treatment revealed four components (C1, C2, C3 and C4) that could be associated with two contributions: one, related to the biological activity; the other, linked to the decomposition of organic matter. The C1 component combined a tryptophan peak and a characteristic humic substances response, and the C2 component was considered as a tryptophan protein fluorophore. The C3 and C4 components were associated to marine organic matter production.
机译:在这项研究中,进行了金属污染实验,以研究铜和镉对海洋有毒的鞭毛藻亚历山大藻的生长以及对溶解有机物的产生的影响(溶解有机碳:DOC;荧光溶解有机物:FDOM)。该物种暴露于浓度不断增加的Cu〜(2+)(9.93×10〜(-10)-1.00×10〜(-7)M)或Cd〜(2+)(1.30×10〜(-8) -4.38×10〜(-7)M),以模拟受污染的环境。在pCu〜(2+)= 7.96(Cu〜(2+):1.08×10〜(-8)M)和pCd〜(2+)= 7.28(Cd〜(2+):5.19)处观察到了剧烈的影响。 ×10〜(-8)M),其中发生囊肿。较低水平的Cu〜(2+)(pCu〜(2+)> 9.00)和Cd〜(2+)(pCd〜(2+)> 7.28)对生长没有影响。但是,当Cu〜(2+)和Cd〜(2+)的含量超过10〜(-7)M时,生长被完全抑制。每个电池释放的DOC(DOC /电池)取决于暴露时间和金属污染,与对照相比,响应Cu〜(2+)和Cd〜(2+)具有更高的DOC /电池值。还使用平行因子分析(PARAFAC)算法通过3D荧光光谱法分析了样品,以表征FDOM。 PARAFAC分析处理揭示了四个成分(C1,C2,C3和C4),它们可能与两个贡献有关:一个与生物活性有关;另一个与生物活性有关。另一方面,与有机物的分解有关。 C1组分结合了色氨酸峰和特征性腐殖质响应,C2组分被视为色氨酸蛋白荧光团。 C3和C4成分与海洋有机物生产有关。

著录项

  • 来源
    《Chemosphere》 |2013年第6期|1230-1239|共10页
  • 作者单位

    Universite de Carthage, Faculte des Sciences de Bizerte, LCVP, 7021 Jarzouna, Bizerte, Tunisia,Universite de Toulon, PROTEE, EA 3819, 83 957 La Garde, France;

    Universite de Toulon, PROTEE, EA 3819, 83 957 La Garde, France;

    Universite de Toulon, PROTEE, EA 3819, 83 957 La Garde, France;

    Universite de Toulon, PROTEE, EA 3819, 83 957 La Garde, France;

    Universite de Carthage, Faculte des Sciences de Bizerte, LCVP, 7021 Jarzouna, Bizerte, Tunisia;

    Universite de Carthage, Faculte des Sciences de Bizerte, LCVP, 7021 Jarzouna, Bizerte, Tunisia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Metals; DOC; 3D-fluorescence spectroscopy; PARAFAC; Alexandrium catenella; Toxic dinoflagellate;

    机译:金属;DOC;3D荧光光谱;PARAFAC;亚历山大连叶;有毒的鞭毛;

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