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利用高频图像探测多甲藻:以一次赤潮形成、环境条件和浮游植物群落组成变化为例。

Detecting Margalefidinium polykrikoides through high-frequency imagery: Example of a bloom formation, environmental conditions, and phytoplankton community composition changes.

机构信息

University of Rhode Island, Graduate School of Oceanography, 215 South Ferry Road, Narragansett, RI, USA.

University of Rhode Island, Graduate School of Oceanography, 215 South Ferry Road, Narragansett, RI, USA.

出版信息

Harmful Algae. 2024 Jun;136:102619. doi: 10.1016/j.hal.2024.102619. Epub 2024 Apr 30.

DOI:10.1016/j.hal.2024.102619
PMID:38876523
Abstract

In August 2018, the harmful algae species Margalefidinium polykrikoides bloomed to levels previously unobserved in the open waters of Narragansett Bay, Rhode Island, in a transient but intense bloom. Detected by an Imaging FlowCytobot providing hourly data, it is characterized by a time span of less than a week and patchiness with sub-daily oscillations in concentration. The highest concentrations are recorded at lower salinity and higher temperature, suggesting the bloom may have developed in the upper bay and was transported south. The proportion of chains increased during the height of the bloom, and many of the images contained 4-cells per chain. The development of the bloom was favored by optimal temperature and salinity conditions as well as increased nitrogen coincident with greater precipitation and river flow. The period preceding bloom formation also saw a sharp decrease in the dominating large chain-forming diatom Eucampia sp. and highly abundant Skeletonema spp., thus reducing competition over resources for the slow-growing M. polykrikoides. The height of the bloom was reached during the lowest tidal range of the month when the turbulence and water displacement were lower. This time series highlights an out-of-the-ordinary bloom's environmental and biological conditions and the importance of frequent sampling during known favorable conditions.

摘要

2018 年 8 月,马加利菲青霉菌(Margalefidinium polykrikoides)这种有害藻类物种在罗得岛的纳拉甘西特湾开阔水域中爆发,其规模是前所未有的。通过提供每小时数据的成像流式细胞仪检测到了这一现象,其特征是持续时间不到一周且分布不均匀,浓度存在亚日变化。在较低盐度和较高温度下记录到的浓度最高,表明该藻华可能在上湾发展,并向南输送。在藻华高峰期,链的比例增加,许多图像包含每链 4 个细胞。藻华的发展得益于最佳的温度和盐度条件,以及与更多降水和河流流量相伴的增加的氮。在藻华形成之前的一段时间,占主导地位的大型链状硅藻 Eucampia sp. 和高度丰富的 Skeletonema spp.数量急剧减少,从而减少了对生长缓慢的马加利菲青霉菌的资源竞争。藻华的高峰期出现在当月潮汐范围最低的时候,此时的动荡和水位移较低。这个时间序列突出了异常藻华的环境和生物条件,以及在已知有利条件下频繁采样的重要性。

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