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广盐性作为有害针胞藻赤潮异弯藻(针胞藻纲)逃避捕食的一种方式

Broad Salinity Tolerance as a Refuge from Predation in the Harmful Raphidophyte Alga Heterosigma akashiwo (Raphidophyceae).

作者信息

Strom Suzanne L, Harvey Elizabeth L, Fredrickson Kerri A, Menden-Deuer Susanne

机构信息

Shannon Point Marine Center, Western Washington University, 1900 Shannon Point Rd, Anacortes, Washington, 98221, USA.

Graduate School of Oceanography, University of Rhode Island, 215 South Ferry Rd, Narragansett, Rhode Island, 02882, USA.

出版信息

J Phycol. 2013 Feb;49(1):20-31. doi: 10.1111/jpy.12013. Epub 2012 Nov 21.

Abstract

The ability of harmful algal species to form dense, nearly monospecific blooms remains an ecological and evolutionary puzzle. We hypothesized that predation interacts with estuarine salinity gradients to promote blooms of Heterosigma akashiwo (Y. Hada) Y. Hada ex Y. Hara et M. Chihara, a cosmopolitan toxic raphidophyte. Specifically, H. akashiwo's broad salinity tolerance appears to provide a refuge from predation that enhances the net growth of H. akashiwo populations through several mechanisms. (1) Contrasting salinity tolerance of predators and prey. Estuarine H. akashiwo isolates from the west coast of North America grew rapidly at salinities as low as six, and distributed throughout experimental salinity gradients to salinities as low as three. In contrast, survival of most protistan predator species was restricted to salinities >15. (2) H. akashiwo physiological and behavioral plasticity. Acclimation to low salinity enhanced H. akashiwo's ability to accumulate and grow in low salinity waters. In addition, the presence of a ciliate predator altered H. akashiwo swimming behavior, promoting accumulation in low-salinity surface layers inhospitable to the ciliate. (3) Negative effects of low salinity on predation processes. Ciliate predation rates decreased sharply at salinities <25 and, for one species, H. akashiwo toxicity increased at low salinities. Taken together, these behaviors and responses imply that blooms can readily initiate in low salinity waters where H. akashiwo would experience decreased predation pressure while maintaining near-maximal growth rates. The salinity structure of a typical estuary would provide this HAB species a unique refuge from predation. Broad salinity tolerance in raphidophytes may have evolved in part as a response to selective pressures associated with predation.

摘要

有害藻类物种形成密集、近乎单物种水华的能力仍然是一个生态和进化难题。我们推测,捕食作用与河口盐度梯度相互作用,促进了赤潮异弯藻(Y. Hada)Y. Hada ex Y. Hara et M. Chihara的水华形成,赤潮异弯藻是一种世界性的有毒针胞藻。具体而言,赤潮异弯藻广泛的盐度耐受性似乎提供了一个免受捕食的避难所,通过多种机制提高了赤潮异弯藻种群的净生长。(1)捕食者和猎物盐度耐受性的差异。从北美西海岸分离出的河口赤潮异弯藻菌株在低至6的盐度下生长迅速,并分布在整个实验盐度梯度中,直至低至3的盐度。相比之下,大多数原生生物捕食者物种的生存仅限于盐度>15的环境。(2)赤潮异弯藻的生理和行为可塑性。适应低盐度增强了赤潮异弯藻在低盐度水域积累和生长的能力。此外,纤毛虫捕食者的存在改变了赤潮异弯藻的游动行为,促进其在对纤毛虫不适宜的低盐度表层积累。(3)低盐度对捕食过程的负面影响。在盐度<25时,纤毛虫的捕食率急剧下降,对于一个物种而言,赤潮异弯藻在低盐度下毒性增加。综上所述,这些行为和反应表明,在低盐度水域中,赤潮异弯藻的捕食压力会降低,同时保持接近最大生长速率,水华很容易在此引发。典型河口的盐度结构将为这种有害藻华物种提供一个独特的免受捕食的避难所。针胞藻广泛的盐度耐受性可能部分是作为对与捕食相关的选择压力的一种反应而进化出来的。

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