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基于图像的浮游植物群落对拟菱形藻赤潮响应的指示指标。

Image-derived indicators of phytoplankton community responses to Pseudo-nitzschia blooms.

机构信息

Graduate School of Oceanography, University of Rhode Island, Narragansett, USA.

Graduate School of Oceanography, University of Rhode Island, Narragansett, USA; Laboratoire d'Océanographie de Villefanche, Sorbonne Université, CNRS, Villefranche-sur-mer, France.

出版信息

Harmful Algae. 2024 Sep;138:102702. doi: 10.1016/j.hal.2024.102702. Epub 2024 Jul 31.

DOI:10.1016/j.hal.2024.102702
PMID:39244237
Abstract

Phytoplankton populations in the natural environment interact with each other. Despite rising global concern with Pseudo-nitzschia blooms, which can produce the potent neurotoxin domoic acid, we still do not fully understand how other phytoplankton genera respond to the presence of Pseudo-nitzschia. Here, we used a 4-year high-resolution imaging dataset for 9 commonly found phytoplankton genera in Narragansett Bay, alongside environmental data, to identify potential interactions between phytoplankton genera and their response to elevated Pseudo-nitzschia abundance. Our results indicate that Pseudo-nitzschia tends to bloom either concurrently with or right after other phytoplankton genera. Such bloom periods coincide with higher water temperatures and lower salinity. Pseudo-nitzschia image abundance tends to increase the most from March-May and peaks during May-Jun, whereas the image-derived biovolume and width of Pseudo-nitzschia chains increase the most during Jan-Feb. For most phytoplankton genera, their relationship with Pseudo-nitzschia abundance is noticeably different from their relationship with Pseudo-nitzschia image features. Despite the complexity in the phytoplankton community, our analysis suggests several ecological indicators that may be used to determine the risk of harmful algal blooms.

摘要

浮游植物种群在自然环境中相互作用。尽管人们越来越关注拟菱形藻藻华,因为它会产生强效神经毒素软骨藻酸,但我们仍然不完全了解其他浮游植物属如何应对拟菱形藻的存在。在这里,我们使用了纳拉甘塞特湾 9 种常见浮游植物属的 4 年高分辨率成像数据集以及环境数据,以确定浮游植物属之间的潜在相互作用及其对拟菱形藻丰度增加的反应。我们的结果表明,拟菱形藻往往与其他浮游植物属同时或紧随其后大量繁殖。这种繁殖期与较高的水温和较低的盐度相吻合。拟菱形藻图像丰度从 3 月到 5 月增加最多,并在 5 月到 6 月达到峰值,而拟菱形藻链的图像生物量和宽度在 1 月到 2 月增加最多。对于大多数浮游植物属来说,它们与拟菱形藻丰度的关系明显不同于它们与拟菱形藻图像特征的关系。尽管浮游植物群落非常复杂,但我们的分析提出了一些生态指标,这些指标可能用于确定有害藻类大量繁殖的风险。

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Harmful Algae. 2024 Sep;138:102702. doi: 10.1016/j.hal.2024.102702. Epub 2024 Jul 31.
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