Basin scale variability of Ostreopsis spp. blooms provides evidence of effectiveness of an integrated sampling approach

IF 5.5 1区 生物学 Q1 MARINE & FRESHWATER BIOLOGY Harmful Algae Pub Date : 2024-06-01 DOI:10.1016/j.hal.2024.102651
Mariachiara Chiantore , Valentina Asnaghi , Marie Abboud-Abi Saab , Laury Acaf , Stefano Accoroni , Ali Badreddine , Laura Escalera , Anna Fricke , Cécile Jauzein , Rodolphe Lemée , Cecilia Totti , Souad Turki , Magda Vila , Imen Zaghmourii , Adriana Zingone , Elisa Berdalet , Luisa Mangialajo
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Abstract

Ostreopsis spp. blooms have been occurring in the last two decades in the Mediterranean Sea in association with a variety of biotic and abiotic substrata (macroalgae, seagrasses, benthic invertebrates, sand, pebbles and rocks). Cells proliferate attached to the surfaces through mucilaginous trichocysts, which lump together microalgal cells, and can also be found in the plankton and on floating aggregates: such tychoplanktonic behavior makes the quantitative assessment of blooms more difficult than planktonic or benthic ones. Different techniques have been so far applied for quantifying cell abundances of benthic microalgae for research, monitoring and risk assessment purposes. In this context, the Benthic Dinoflagellates Integrator (BEDI), a non-destructive quantification method for benthic dinoflagellate abundances, was developed and tested within the EU ENPI-CBCMED project M3-HABs. This device allows mechanical detachment of cells without collecting the benthic substrate, providing an integrated assessment of both epiphytic and planktonic cells, i.e. of the number of cells potentially made available in the water volume from “resuspension” which could have harmful effects on other organisms (including humans).

The present study confirms the effectiveness of the BEDI sampling device across different environments across the Mediterranean Sea and constitutes the first large-scale study of Ostreopsis spp. blooms magnitude in function of different macro- and meso‑habitat features across the basin.

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Ostreopsis spp.水华的流域尺度变化证明了综合采样方法的有效性
在过去的二十年里,Ostreopsis 藻类在地中海与各种生物和非生物基质(大型藻类、海草、底栖无脊椎动物、沙子、鹅卵石和岩石)发生了大量繁殖。细胞通过粘液毛囊(将微藻细胞聚集在一起)附着在表面增殖,也可在浮游生物和漂浮物聚集体中发现:这种浮游行为使得对藻华的定量评估比浮游或底栖藻华更加困难。迄今为止,已有不同的技术被用于量化底栖微藻的细胞丰度,以达到研究、监测和风险评估的目的。在此背景下,欧盟 ENPI-CBCMED 项目 M3-HABs 开发并测试了底栖甲藻集成器(BEDI),这是一种非破坏性的底栖甲藻丰度量化方法。该装置可在不收集底栖基质的情况下用机械方法分离细胞,从而对附生细胞和浮游细胞进行综合评估,即评估水体中可能因 "再悬浮 "而对其他生物(包括人类)产生有害影响的细胞数量。本研究证实了 BEDI 采样装置在整个地中海不同环境中的有效性,也是对整个海盆中不同宏观和中观生境特征作用下的 Ostreopsis spp.
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来源期刊
Harmful Algae
Harmful Algae 生物-海洋与淡水生物学
CiteScore
12.50
自引率
15.20%
发文量
122
审稿时长
7.5 months
期刊介绍: This journal provides a forum to promote knowledge of harmful microalgae and macroalgae, including cyanobacteria, as well as monitoring, management and control of these organisms.
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