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海水酸化对微藻的比较影响:单一和多物种毒性试验。

Comparative effects of seawater acidification on microalgae: Single and multispecies toxicity tests.

机构信息

Departamento de Química-Física, Facultad de Ciencias del Mar y Ambientales, Universidad de Cádiz, Spain.

Departamento de Ecología y Gestión Costera, Instituto de Ciencias Marinas de Andalucía (CSIC), Spain.

出版信息

Sci Total Environ. 2019 Feb 1;649:224-232. doi: 10.1016/j.scitotenv.2018.08.225. Epub 2018 Aug 21.

Abstract

In order to gain knowledge about the potential effects of acidification in aquatic ecosystems, global change research based on microalgae as sentinel species has been often developed. However, these studies are limited to single species tests and there is still a research gap about the behaviour of microalgal communities under this environmental stressor. Thus, the aim of this study was to assess the negative effects of CO under an ecologically realistic scenario. To achieve this objective, two types of toxicity tests were developed; i) single toxicity tests and ii) multispecies toxicity tests, in order to evaluate the effects on each species as well as the interspecific competition. For this purpose, three microalgae species (Tetraselmis chuii, Phaeodactylum tricornutum and Nannochloropsis gaditana) were exposed to two selected pH levels (7.4, 6.0) and a control (pH 8.0). The pH values were choosen for testing different scenarios of CO enrichment including the exchange atmosphere-ocean (pH 7.4) and natural or anthropogenic sources of CO (pH 6.0). The effects on growth, cell viability, oxidative stress, plus inherent cell properties (size, complexity and autofluorescence) were studied using flow cytometry (FCM). Results showed that T. chuii was the most resistant species to CO enrichment with less abrupt changes in terms of cell density, inherent cell properties, oxidative stress and cell viability. Although P. tricornutum was the dominant species in both single and multispecies tests, this species showed the highest decrease in cell density under pH 6.0. Effects of competence were recorded in the multispecies control (pH 8) but this competence was eclipsed by the effects of low pH. The knowledge of biological interactions made by different microalgae species is a useful tool to extrapolate research data from laboratory to the field.

摘要

为了了解酸化对水生生态系统的潜在影响,基于微藻作为指示物种的全球变化研究经常被开展。然而,这些研究仅限于单一物种的测试,对于微藻群落在这种环境胁迫下的行为仍然存在研究空白。因此,本研究旨在评估 CO 在生态现实情景下的负面影响。为了实现这一目标,开发了两种类型的毒性测试;i)单一毒性测试和 ii)多物种毒性测试,以评估每种物种的影响以及种间竞争。为此,选择了三种微藻物种(Tetraselmis chuii、Phaeodactylum tricornutum 和 Nannochloropsis gaditana)进行暴露实验,暴露在两种选定的 pH 值(7.4、6.0)和一个对照(pH 8.0)下。选择这些 pH 值是为了测试 CO 富集的不同情景,包括大气-海洋交换(pH 7.4)以及 CO 的自然或人为来源(pH 6.0)。使用流式细胞术(FCM)研究了对生长、细胞活力、氧化应激以及固有细胞特性(大小、复杂性和自发荧光)的影响。结果表明,在 CO 富集方面,T. chuii 是最具抗性的物种,其细胞密度、固有细胞特性、氧化应激和细胞活力的变化较小。尽管 P. tricornutum 是单种和多物种测试中的优势物种,但在 pH 6.0 下,该物种的细胞密度下降幅度最大。在多物种对照(pH 8)中记录到了竞争效应,但这种竞争效应被低 pH 所掩盖。了解不同微藻物种之间的生物相互作用是将实验室研究数据外推到野外的有用工具。

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