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有毒的费氏藻复合体的种类,以及功能类型在数据解读中的重要性。

Species of the toxic Pfiesteria complex, and the importance of functional type in data interpretation.

作者信息

Burkholder J M, Glasgow H B, Deamer-Melia N J, Springer J, Parrow M W, Zhang C, Cancellieri P J

机构信息

Center for Applied Aquatic Ecology, North Carolina State University, Raleigh 27606, USA.

出版信息

Environ Health Perspect. 2001 Oct;109 Suppl 5(Suppl 5):667-79. doi: 10.1289/ehp.01109s5667.

Abstract

We describe the two species of the toxic Pfiesteria complex to date (Pfiesteria piscicida and Pfiesteria shumwayae), their complex life cycles, and the characteristics required for inclusion within this complex. These species resemble P. piscicida Steidinger & Burkholder and also have a) strong attraction to fresh fish tissues and excreta, b) toxic activity stimulated by live fish, and c) production of toxin that can cause fish death and disease. Amoeboid stages were verified in 1992-1997 by our laboratory (various stages from toxic cultures) and that of K. Steidinger and co-workers (filose amoebae in nontoxic cultures), and in 2000 by H. Marshall and co-workers (various stages from toxic cultures), from clonal Pfiesteria spp. cultures, using species-specific polymerase chain reaction-based molecular probes with cross-confirmation by an independent specialist. Data were provided from tests of the hypothesis that Pfiesteriastrains differ in response to fresh fish mucus and excreta, algal prey, and inorganic nutrient (N, P) enrichment, depending on functional type or toxicity status. There are three functional types: TOX-A, in actively toxic, fish-killing mode; TOX-B, temporarily nontoxic, without access to live fish for days to weeks, but capable of toxic activity if fish are added; and NON-IND, noninducible with negligible toxicity in the presence of live fish. NON-IND Pfiesteria attained highest zoospore production on algal prey without or without inorganic nitrogen or inorganic phosphorus enrichment. TOX-B Pfiesteria was intermediate and TOX-A was lowest in zoospore production on algal prey with or without nutrients. TOX-A Pfiesteria spp. showed strong behavioral attraction to fresh fish mucus and excreta in short-term trials, with intermediate attraction of TOX-B zoospores and relatively low attraction of NON-IND cultures when normalized for cell density. The data for these clones indicated a potentially common predatory behavioral response, although differing in intensity distinct from a toxicity effect, in attack of fish prey. The data also demonstrated that functional types of Pfiesteria spp. show distinct differences in response to fish, algal prey, and inorganic nutrient enrichment. Collectively, the experiments indicate that NON-IND strains should not be used in research to gain insights about environmental controls on toxic strains of Pfiesteria spp.

摘要

我们描述了迄今为止有毒的费氏藻复合体的两个物种(杀鱼费氏藻和舒氏费氏藻)、它们复杂的生命周期以及该复合体所包含物种的特征。这些物种与杀鱼费氏藻相似,并且还具有以下特点:a) 对新鲜鱼组织和排泄物有强烈吸引力;b) 受活鱼刺激产生毒性活性;c) 产生能导致鱼类死亡和发病的毒素。1992 - 1997年,我们实验室(来自有毒培养物的各个阶段)以及K. 施泰丁格及其同事的实验室(来自无毒培养物的丝状变形虫)证实了变形虫阶段的存在,2000年,H. 马歇尔及其同事(来自有毒培养物的各个阶段)从克隆的费氏藻物种培养物中,使用基于物种特异性聚合酶链反应的分子探针并经独立专家交叉确认,也证实了变形虫阶段的存在。数据来自对以下假设的测试:费氏藻菌株对新鲜鱼黏液和排泄物、藻类猎物以及无机养分(氮、磷)富集的反应因功能类型或毒性状态而异。有三种功能类型:TOX - A,处于活跃有毒、杀鱼模式;TOX - B,暂时无毒,数天至数周内无法接触活鱼,但如果添加鱼则具有毒性活性;NON - IND,在有活鱼存在时不可诱导且毒性可忽略不计。NON - IND费氏藻在有无无机氮或无机磷富集的藻类猎物上产生的游动孢子最多。TOX - B费氏藻处于中间水平,而TOX - A在有无养分的藻类猎物上产生的游动孢子最少。在短期试验中,TOX - A费氏藻物种对新鲜鱼黏液和排泄物表现出强烈的行为吸引力,TOX - B游动孢子的吸引力处于中间水平,而当按细胞密度进行标准化时,NON - IND培养物的吸引力相对较低。这些克隆的数据表明,在攻击鱼类猎物时,尽管强度不同但与毒性效应不同,可能存在一种共同的捕食行为反应。数据还表明,费氏藻物种的功能类型在对鱼、藻类猎物和无机养分富集的反应上表现出明显差异。总体而言,这些实验表明,不应使用NON - IND菌株进行研究以深入了解费氏藻有毒菌株的环境控制情况。

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