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首页> 外文期刊>Aquatic Microbial Ecology >Effect of imbalanced nutrients and immigration on Prymnesium parvum community dominance and toxicity: results from in-lake microcosm experiments
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Effect of imbalanced nutrients and immigration on Prymnesium parvum community dominance and toxicity: results from in-lake microcosm experiments

机译:营养物质和移民的不平衡对小白熊群落优势和毒性的影响:湖内缩影实验的结果

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ABSTRACT: Prymnesium parvum, a haptophyte species, forms harmful blooms, including those that have caused severe fish kills in Texas, USA, over the past 6 yr. We studied P. parvum dynamics using in situ microcosm experiments at Lake Possum Kingdom, Texas, during 3 seasons (fall 2004, winter and spring 2005). Experimental treatments included full and partial nutrient enrichment (encompassing nitrogen [N] and phosphorus [P] deficient treatments), P. parvum immigration and combinations of these factors. In the control and N and P deficient treatments, P. parvum populations dominated the community, but only in the N deficient treatments did P. parvum experience a significant growth in the population. In contrast, when nutrients were not limiting, P. parvum tended to lose its competitive edge to other taxa such as chlorophytes, euglenophytes and diatoms, which then dominated the community. Population growth of P. parvum was also stimulated through immigration, but only during the winter experiment, a period of the year when bloom initiation is common. This finding suggests that movement into the water column may be an important process leading to P. parvum bloom initiation. Toxicity of P. parvum to fish was also affected by the nutrient changes: during conditions of no nutrient addition P. parvum was most toxic; intermediate toxicity was observed under N and P deficient conditions, and full nutrient enrichments resulted in nearly non-toxic conditions.
机译:摘要:假单胞菌(Prymnesium parvum)是一种触藻植物,会形成有害的花朵,其中包括在过去6年中在美国得克萨斯州造成严重鱼类死亡的那些花朵。我们研究了 P。在3个季节(2004年秋季,2005年冬季和2005年春季)在得克萨斯州Possum王国的湖泊中,使用原位缩影实验对小动物进行了动力学研究。实验处理包括全部和部分营养物富集(包括氮[N]和磷[P]缺乏处理),P。小额移民和这些因素的结合。在对照和氮磷缺乏的治疗中,磷。小群体占主导地位的社区,但只有在N种缺乏治疗中P才出现。小人口经历了人口的显着增长。相反,当养分不受限制时,P。 parvum 往往失去了与其他类群(如绿藻类,裸藻类和硅藻类)的竞争优势,从而主导了整个社区。 P的人口增长。移民也刺激了小花的生长,但是仅在冬季实验期间,一年中开花开始很普遍。这一发现表明,移入水柱可能是导致P的重要过程。小花开花开始。 P的毒性 。鱼类的小食也受到养分变化的影响:在不添加养分的条件下, P。小毒最具毒性;在氮和磷缺乏的条件下观察到中等毒性,而营养素的充分富集导致几乎无毒的条件。

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