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首页> 外文期刊>Algae >Ichthyotoxic Cochlodinium polykrikoides red tides offshore in the South Sea, Korea in 2014: III. Metazooplankton and their grazing impacts on red-tide organisms and heterotrophic protists
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Ichthyotoxic Cochlodinium polykrikoides red tides offshore in the South Sea, Korea in 2014: III. Metazooplankton and their grazing impacts on red-tide organisms and heterotrophic protists

机译:2014年在韩国南海近海的鱼毒Cochlodinium polykrikoides红潮:III。 Metazooplankton及其放牧对赤潮生物和异养生物的影响

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Cochlodinium polykrikoides red tides have caused great economic losses in the aquaculture industry in many countries. To investigate the roles of metazooplankton in red tide dynamics of C. polykrikoides in the South Sea of Korea, the abundance of metazooplankton was measured at 60 stations over 1- or 2-week intervals from May to November 2014. In addition, the grazing impacts of dominant metazooplankton on red tide species and their potential heterotrophic protistan grazers were estimated by combining field data on the abundance of red tide species, heterotrophic protist grazers, and dominant metazooplankton with data obtained from the literature concerning ingestion rates of the grazers on red tide species and heterotrophic protists. The mean abundance of total metazooplankton at each sampling time during the study was 297-1,119 individuals $m^{-3}$ . The abundance of total metazooplankton was significantly positively correlated with that of phototrophic dinoflagellates (p 0.1). Thus, dinoflagellate red tides may support high abundance of total metazooplankton. Copepods dominated metazooplankton assemblages at all sampling times except from Jul 11 to Aug 6 when cladocerans and hydrozoans dominated. The calculated maximum grazing coefficients attributable to calanoid copepods on C. polykrikoides and Prorocentrum spp. were 0.018 and $0.029d^{-1}$ , respectively. Therefore, calanoid copepods may not control populations of C. polykrikoides or Prorocentrum spp. Furthermore, the maximum grazing coefficients attributable to calanoid copepods on the heterotrophic dinoflagellates Polykrikos spp. and Gyrodinium spp., which were grazers on C. polykrikoides and Prorocentrum spp., respectively, were 0.008 and $0.047d^{-1}$ , respectively. Therefore, calanoid copepods may not reduce grazing impact by these heterotrophic dinoflagellate grazers on populations of the red tide dinoflagellates.
机译:Cochlodinium polykrikoides赤潮在许多国家/地区给水产养殖业造成了巨大的经济损失。为了调查偏z浮游生物在韩国南海多角藻的赤潮动力学中的作用,在2014年5月至2014年11月的1或2周间隔内,对60个站进行了偏z浮游生物的丰度测量。此外,放牧影响通过结合关于赤潮物种,异养原生质放牧者和优势后生浮游动物的实地数据与从文献中获得的关于赤潮物种食草者的摄食率的数据相结合,估计了赤潮优势种对红潮物种及其潜在的异养原生质放牧者的影响。和异养生物。研究期间每个采样时间的总浮游动物的平均丰度为297-1,119个个体$ m ^ {-3} $。总拟浮游动物的丰度与光养性鞭毛藻的丰度显着正相关(p 0.1)。因此,鞭毛藻赤潮可能支持高总的浮游藻。在7月11日至8月6日,cl脚类和水生动物类占主导地位,但足类在所有采样时间均占优势。计算出的最大放牧系数可归因于多角衣藻和原中心物种的cal足类co足类。分别为0.018和$ 0.029d ^ {-1} $。因此,cal足类足类可能无法控制多角梭菌或原中心种的种群。此外,可归因于异养二鞭毛虫Polykrikos spp上的类an足类的最大放牧系数。和多虫属(Gyrodinium spp。)分别为多角C(C。polykrikoides)和原中心(Prorocentrum spp。)的放牧者,分别为0.008和0.047d ^ {-1} $。因此,类an足类足类动物可能不会减少这些异养性鞭毛鞭毛虫放牧者对赤潮鞭毛鞭毛虫种群的放牧影响。

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