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首页> 外文期刊>Aquatic Microbial Ecology >Grazing of the heterotrophic dinoflagellate Noctiluca scintillans on dinoflagellate and raphidophyte prey
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Grazing of the heterotrophic dinoflagellate Noctiluca scintillans on dinoflagellate and raphidophyte prey

机译:放养异鞭毛藻夜光藻在鞭毛藻和斜纹夜蛾猎物上的放牧

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Noctiluca scintillans is a bloom-forming heterotrophic dinoflagellate that can ingest (and grow on) a number of phytoplankton prey, including several potentially toxic phytoplankton species. The current study documented (1) a range of N. scintillans growth rates (μ = -0.09 to 0.83 d-1) on several species of harmful dinoflagellates and raphidophytes, including Heterosigma akashiwo and Akashiwo sanguinea, and (2) the first published growth rates on Lingulodinium polyedrum, Chattonella marina, and Alexandrium catenella. N. scintillans attained maximum growth rates (μ = 0.83 d-1) on the raphidophyte H. akashiwo and negative growth rates (i.e. significant mortality) on the dinoflagellates A. catenella (μ = -0.03 d-1) and A. sanguinea (μ = -0.08 d-1) and the raphidophyte C. marina (μ = -0.09 d-1). Toxin production by A. catenella did not appear to be responsible for negative effects on N. scintillans growth, as indicated by feeding experiments using mixed algal assemblages and the addition of high concentrations of purified dissolved saxitoxin (up to 16.73 ng ml-1). However, growth of both N. scintillans and H. akashiwo was negatively affected when exposed to A. catenella culture and cell-free filtrate. These results suggest (1) a species-specific role of N. scintillans in top-down control of toxic bloom-forming dinoflagellates and raphidophytes, (2) direct, though not necessarily saxitoxin-dependent, inhibition of N. scintillans growth by A. catenella, and (3) indirect effects of A. catenella on N. scintillans growth through reduction in the availability of high-quality prey. Together, these results provide insights into the potentially significant role of N. scintillans as a grazer of blooms of these species.
机译:夜光闪烁藻是一种形成花蕾的异养藻类鞭毛藻,可以摄取(并在其中生长)许多浮游植物猎物,包括几种潜在毒性的浮游植物。当前的研究记录了(1)几种有害的鞭毛藻和斜纹植物包括斜纹夜蛾和斜纹藻的生长速度(μ= -0.09至0.83 d-1),以及(2)首次公开的生长多灵藻,小桐子海滨和亚历山大毛毛虫的价格。 N.闪烁藻在裸藻H. akashiwo上达到最大生长速率(μ= 0.83 d-1),而在鞭毛藻A. catenella(μ= -0.03 d-1)和A. sanguinea上达到最大生长速率(μ= -0.03 d-1)。 μ= -0.08 d-1)和裸藻藻(C. marina)(μ= -0.09 d-1)。通过使用混合藻类组合物和添加高浓度的纯化溶解的毒素(最高16.73 ng ml-1)进行饲喂实验表明,链霉菌产生的毒素似乎不对闪烁藻的生长产生负面影响。但是,当暴露于链状芽孢杆菌培养物和无细胞滤液时,N。scintillans和H. akashiwo的生长均受到不利影响。这些结果表明(1)闪烁藻猪种在自上而下控制有毒水华形成的鞭毛藻和水生植物方面的特定作用,(2)指导(尽管不一定是依赖毒素的)A.对闪烁藻猪种的抑制。 (3)通过降低优质猎物的可获得性,对毛链孢菌进行间接影响。综合起来,这些结果提供了对闪烁藻作为这些物种开花放牧者的潜在重要作用的见解。

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