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Uptake of dissolved inorganic and organic nitrogen by the benthic toxic dinoflagellate Ostreopsis cf. ovata

机译:底栖有毒鞭毛鞭毛藻对溶解的无机和有机氮的吸收。卵形

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摘要

Environmental factors that shape dynamics of benthic toxic blooms are largely unknown. In particular, for the toxic dinoflagellate Ostreopsis cf. ovata, the importance of the availability of nutrients and the contribution of the inorganic and organic pools to growth need to be quantified in marine coastal environments. The present study aimed at characterizing N-uptake of dissolved inorganic and organic sources by O. cf. ovata cells, using the N-15-labelling technique. Experiments were conducted taking into account potential interactions between nutrient uptake systems as well as variations with the diel cycle. Uptake abilities of O. cf. ovata were parameterized for ammonium (NH4+), nitrate (NO3-) and N-urea, from the estimation of kinetic and inhibition parameters. In the range of 0 to 10 mu mol N L-1, kinetic curves showed a clear preference pattern following the ranking NH4+ > NO3 > N-urea, where the preferential uptake of NH4+ relative to NO3- was accentuated by an inhibitory effect of NH4+ concentration on NO(3)(-)uptake capabilities. Conversely, under high nutrient concentrations, the preference for NH4 relative to NO3- was largely reduced, probably because of the existence of a low-affinity high capacity inducible NO3- uptake system. Ability to take up nutrients in darkness could not be defined as a competitive advantage for O. cf. ovata. Species competitiveness can also be defined from nutrient uptake kinetic parameters. A strong affinity for NH4+ was observed for O. cf. ovata cells that may partly explain the success of this toxic species during the summer season in the Bay of Villefranche-sur-mer (France). (C) 2017 Elsevier B.V. All rights reserved.
机译:影响底栖有毒水华动态的环境因素在很大程度上是未知的。尤其对于有毒的鞭毛鞭毛骨质疏松症参见。在卵形卵中,需要在海洋沿海环境中量化营养素的重要性以及无机和有机池对生长的贡献。本研究旨在表征O对溶解的无机和有机源氮的吸收。卵细胞,使用N-15标记技术。考虑到养分吸收系统之间的潜在相互作用以及diel周期的变化,进行了实验。 O的吸收能力。根据动力学参数和抑制参数的估算,将卵形物中的铵(NH4 +),硝酸盐(NO3-)和N-尿素参数化。在0到10μmol N L-1范围内,动力学曲线显示出明显的优先模式,依次为NH4 +> NO3> N-尿素,其中NH4 +的抑制作用加剧了NH4 +相对于NO3-的优先吸收。集中吸收NO(3)(-)的能力。相反,在高养分浓度下,相对于NO3而言,NH4的偏好会大大降低,这可能是由于存在低亲和力的高容量诱导型NO3吸收系统。在黑暗中吸收营养的能力不能被定义为O的竞争优势。卵形物种竞争力也可以根据养分吸收动力学参数来定义。观察到对NH 4 +有很强的亲和力。卵子细胞可能部分解释了夏季滨海自由城湾(法国)这种有毒物种的成功。 (C)2017 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《Harmful Algae》 |2017年第5期|9-18|共10页
  • 作者单位

    UPMC Univ Paris 06, Sorbonne Univ, INSU CNRS, Lab Oceanog Villefranche, Villefranche Sur Mer, France|IFREMER, Ctr Brest, DYNECO PELAGOS, F-29280 Plouzane, France;

    UPMC Univ Paris 06, Sorbonne Univ, INSU CNRS, Lab Oceanog Villefranche, Villefranche Sur Mer, France;

    UPMC Univ Paris 06, Sorbonne Univ, INSU CNRS, Lab Oceanog Villefranche, Villefranche Sur Mer, France;

    UPMC Univ Paris 06, Sorbonne Univ, INSU CNRS, Lab Oceanog Villefranche, Villefranche Sur Mer, France;

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

    Uptake; Nitrogen; Dinoflagellate; Ostreopsis; Kinetics; Interactions;

    机译:吸收;氮;鞭毛藻;骨质增生;运动学;相互作用;

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