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Harmful Algal Blooms in Fjords, Coastal Embayments, and Stratified Systems: Recent Progress and Future Research

机译:峡湾,沿海港口和分层系统中的有害藻类大量繁殖:最新进展和未来研究

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摘要

Harmful algal blooms (HABs) are natural phenomena that result from the interplay of biological, chemical, physical, and sedimentary processes occurring at different temporal and spatial scales. This paper provides an integrated description of HAB dynamics occurring at the mesoscale (10–100 km, sensu Haury et al., 1978) in confined and semi-confined coastal environments and under stratified water column conditions in a diversity of habitats where HAB events occur. It also focuses on relevant aspects occurring at fine-scale and even smaller cellular scales that are critical to species interactions with their environments. Examples include the key role of life-history stages in the recurrence of HABs in certain embayments; the physical-biological interactions driving the formation, maintenance, and decline of thin layers of plankton, including harmful microalgae; the fascinating, but poorly understood, domain of small-scale chemical interactions between HAB species and components of the food web; the potential link between human activities and climate change; and the trends in HAB occurrence. Development of new observing and sampling technologies and of new modeling approaches has resulted in greater understanding of these phenomena. Two Core Research Projects initiated under the GEOHAB Implementation Strategy, “HABs in Fjords and Coastal Embayments” and “HABs in Stratified Systems,” are discussed and priorities for future research toward improving the management and mitigation of HAB impacts are outlined.
机译:有害藻华(HABs)是自然现象,是由于在不同时空尺度上发生的生物,化学,物理和沉积过程相互影响而引起的。本文提供了在密闭和半密闭沿海环境中以及分层水柱条件下发生HAB事件的多种生境中尺度(10-100 km,sensu Haury等,1978)发生的HAB动力学的综合描述。 。它还关注于在小规模甚至更小的细胞尺度上发生的相关方面,这对于物种与其环境的相互作用至关重要。实例包括生命史阶段在某些巢穴中HAB复发中的关键作用;物理-生物相互作用驱动浮游生物薄层(包括有害微藻)的形成,维持和下降; HAB物种与食物网成分之间小规模化学相互作用的迷人但知之甚少的领域;人类活动与气候变化之间的潜在联系;以及HAB发生的趋势。新的观测和采样技术以及新的建模方法的发展使人们对这些现象有了更深入的了解。讨论了在GEOHAB实施策略下发起的两个核心研究项目,“峡湾和沿海通道中的HAB”和“分层系统中的HAB”,并概述了未来研究的重点,以改善对HAB影响的管理和缓解。

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