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赤潮异弯藻产生的有害藻华和环境特征调节赤潮异弯藻在富营养化条件下的数量。

Harmful algal blooms of Heterosigma akashiwo and environmental features regulate Mesodinium cf. rubrum abundance in eutrophic conditions.

机构信息

Botany Department, Nelson Mandela University, Port Elizabeth 6031, South Africa; DSI/NRF Research Chair in Shallow Water Ecosystems, Institute for Coastal and Marine Research (CMR), Nelson Mandela University, Port Elizabeth 6031, South Africa.

DSI/NRF Research Chair in Shallow Water Ecosystems, Institute for Coastal and Marine Research (CMR), Nelson Mandela University, Port Elizabeth 6031, South Africa; Zoology Department, Nelson Mandela University, Port Elizabeth 6031, South Africa.

出版信息

Harmful Algae. 2020 Dec;100:101943. doi: 10.1016/j.hal.2020.101943. Epub 2020 Nov 12.

Abstract

Functional drivers of phytoplankton that can potentially form harmful algal blooms (HABs) are important to understand given the increased prevalence of anthropogenic modification and pressure on coastal habitats. However, teasing these drivers apart from other influences is problematic in natural systems, while laboratory assessments often fail to replicate relevant natural conditions. One such potential bloom-forming species complex highlighted globally is Mesodinium cf. rubrum, a planktonic ciliate. This species occurs persistently in the Sundays Estuary in South Africa yet has never been observed to "bloom" (> 1,000 cell.ml). Modified by artificial nutrient-rich baseflow conditions, the Sundays Estuary provides a unique Southern Hemisphere case study to identify the autecological drivers of this ciliate due to artificial seasonally "controlled" abiotic environmental conditions. This study utilised a three-year monitoring dataset (899 samples) to assess the drivers of M. cf. rubrum using a generalised modelling approach. Key abiotic variables that influenced population abundance were season and salinity, with M. cf. rubrum populations peaking in summer and spring and preferring polyhaline salinity regions (>18) with pronounced water column salinity stratification, especially in warmer months. This was reflected in the diel vertical migration (DVM) behaviour of this species, demonstrating its ability to utilise the optimal daylight photosynthetic surface conditions and high-nutrient bottom waters at night. The only phytoplankton groups clearly associated with M. cf. rubrum were Raphidophyceae and Cryptophyceae. Although M. cf. rubrum reflects a niche overlap with the dominant HAB-forming phytoplankton in the estuary (the raphidophyte, Heterosigma akashiwo), its reduced competitive abilities restrict its abundance. In contrast, the mixotrophic foraging behaviour of M. cf. rubrum exerts a top-down control on cryptophyte prey abundance, yet, the limited availability of these prey resources (mean < 300 cells ml) seemingly inhibits the formation of red-water accumulations. Hydrodynamic variability is necessary to ensure that no single phytoplankton HAB-forming taxa outcompetes the rest. These results confirm aspects of the autecology of M. cf. rubrum related to salinity associations and DVM behaviour and contribute to a global understanding of managing HABs in estuaries.

摘要

浮游植物的功能驱动因素可能会形成有害藻类水华(HAB),鉴于人为的改造和对沿海栖息地的压力不断增加,了解这些驱动因素非常重要。然而,在自然系统中,将这些驱动因素与其他影响因素区分开来是很困难的,而实验室评估往往无法复制相关的自然条件。在全球范围内,一种突出的潜在浮游植物水华形成物种复杂体是Mesodinium cf. rubrum,一种浮游纤毛虫。该物种在南非的星期天河口持续存在,但从未观察到“爆发”(> 1000 个细胞/ml)。由于人为的季节性“控制”的非生物环境条件,经过人工富营养基流条件的改变,星期天河口为识别这种纤毛虫的自生性驱动因素提供了一个独特的南半球案例研究。本研究利用三年的监测数据集(899 个样本),通过广义建模方法评估了 M. cf. rubrum 的驱动因素。影响种群丰度的主要非生物变量是季节和盐度,M. cf. rubrum 种群在夏季和春季达到高峰,更喜欢多盐度区域(> 18),具有明显的水柱盐度分层,特别是在温暖的月份。这反映在该物种的昼夜垂直迁移(DVM)行为中,表明其能够利用最佳的日光光合作用表面条件和夜间高营养底部水域。与 M. cf. rubrum 明显相关的浮游植物组只有红藻和隐藻。尽管 M. cf. rubrum 反映了与河口中占主导地位的有害藻类水华形成浮游植物(红藻 Heterosigma akashiwo)的生态位重叠,但它的竞争能力较弱限制了它的丰度。相比之下,M. cf. rubrum 的混合营养觅食行为对隐藻猎物的丰度施加了自上而下的控制,但这些猎物资源的有限可用性(平均值<300 个细胞/ml)似乎抑制了红水的积累。水动力的变化是必要的,以确保没有一种浮游植物水华形成类群能够胜过其他类群。这些结果证实了 M. cf. rubrum 与盐度关联和 DVM 行为相关的自生性的某些方面,并有助于全球范围内对河口有害藻类水华管理的理解。

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