首页> 外文期刊>Toxicon: An International Journal Devoted to the Exchange of Knowledge on the Poisons Derived from Animals, Plants and Microorganisms >Unsuspected intraspecific variability in the toxin production, growth and morphology of the dinoflagellate Alexandrium pacificum RW Litaker (Group IV) blooming in a South Western Mediterranean marine ecosystem, Annaba Bay (Algeria)
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Unsuspected intraspecific variability in the toxin production, growth and morphology of the dinoflagellate Alexandrium pacificum RW Litaker (Group IV) blooming in a South Western Mediterranean marine ecosystem, Annaba Bay (Algeria)

机译:在南部地中海海洋生态系统中,丁诺氏植物的毒素生产,生长和形态的毒素生产,生长和形态纳米南部地中海海洋生态系统,Annaba Bay(阿尔及利亚)

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摘要

Physiological plasticity gives HABs species the ability to respond to variations in the surrounding environment. The aim of this study was to examine morphological and physiological variability in Alexandrium pacificum R.W. Litaker (Group IV) (former Alexandrium catenella) blooming in Annaba bay, Algeria. Monoclonal cultures of up to 30 strains of this neurotoxic dinoflagellate were established by the germination of single resting cysts from the surface sediment of this southern Mediterranean marine ecosystem. Ribotyping confirmed formally for the first time that A. pacificum is developing in Eastern Algerian waters. Toxin analyses of A. pacificum strains revealed substantial intraspecific variability in both the profile and toxin amount. However, the toxin profile of most strains is characterized by the dominance of GTX6 (up to 96 mol %) which is the less toxic paralytic molecule. The toxin concentrations in the isolated strains varied widely between 3.8 and 30.82 fmol cell(-1). We observed an important variation in the growth rate of the studied A. pacificum strains with values ranging from 0.05 to 0.33 d(-1). The lag time of the studied strains varied widely and ranged from 4 to 20 days. The intraspecific diversity could be a response to the selection pressure which may be exerted by different environmental conditions over time and which can be genetically and in turn physiologically expressed. This study highlights, for the first time, that the sediment of a limited area holds an important diversity of A. pacificum cysts which give when germinate populations with noticeable physiological plasticity. Consequently, this diversified natural populations allow an exceptional adaptation to specific environmental conditions to outcompete local micmalgae and to establish HABs which could explain why this dinoflagellate is successful and expanding worldwide.
机译:生理塑性使Habs物种能够响应周围环境的变化。本研究的目的是在阿尔及利亚阿尔及比亚湾的亚历山大·普利奇R.W. Litaker(第四组)(前Alexandrium catenella)的形态和生理变异性。通过从该地中海海洋生态系统的地表沉积物的单休息囊肿的萌发来确定高达30个神经毒性Dinoflagelate的单克隆培养物。核髓划分是第一次正式证实,即Pacificum在东阿尔及利亚水域发展。 A. Pacificum菌株的毒素分析揭示了概况和毒素量的大量内易变性。然而,大多数菌株的毒素谱的特征在于GTX6的优势(高达96mol%),这是毒性较低的麻痹分子。分离株中的毒素浓度在3.8和30.82 fmol细胞(-1)之间变化广泛。我们观察到研究A. Pacififum菌株的生长速率的重要变异,其值范围为0.05至0.33d(-1)。研究菌株的滞后时间广泛变化,范围为4至20天。内部分集可以是对选择压力的反应,其可以随着时间的推移而通过不同的环境条件施加,并且可以在生理学上表达。这项研究首次亮点了有限区域的沉积物具有一个重要的多样性A. pacificum囊肿,当发芽的生理可塑性时给予发芽群。因此,这种多样化的天然群体允许特殊的适应特定的环境条件,以实现局部米霉素,并建立可以解释为什么这款Dinoflagellate在全球成功和扩展的汉。

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