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藏身于众目睽睽之下:华盛顿州的贝类杀手浮游植物。

Hiding in plain sight: Shellfish-killing phytoplankton in Washington State.

机构信息

Washington Sea Grant, University of Washington, P.O. Box 488, Shelton, WA 98584, United States.

Washington Sea Grant, University of Washington, P.O. Box 488, Shelton, WA 98584, United States.

出版信息

Harmful Algae. 2021 May;105:102032. doi: 10.1016/j.hal.2021.102032. Epub 2021 Jun 7.

Abstract

Summer bivalve shellfish mortalities have been observed in Puget Sound for nearly a century and attempts to understand and mitigate these losses have been only partially successful. Likewise, the understanding of the environmental conditions triggering shellfish mortalities and successful strategies for their mitigation are incomplete. In the literature, phytoplankton have played only a cursory role in summer shellfish mortalities in Washington State because spawning stress and bacteria were thought to be the primary causes. In recent years, the occurrence of Protoceratium reticulatum (Claparede & Lachmann) Buetschli and Akashiwo sanguinea (Hirasaka) Hansen & Moestrup, have been documented by the SoundToxins research and monitoring partnership in increasing numbers and duration and have been associated with declining shellfish health or mortality at various sites in Puget Sound. Blooms of these species occur primarily in summer months and have been shown to cause mass mortalities of shellfish in the U.S. and other parts of the world. In 2016-2017, yessotoxins (YTX) were measured in several species of Puget Sound bivalve shellfish, with a maximum concentration of 2.20 mg/kg in blue mussels, a value below the regulatory limit of 3.75 mg/kg established by the European Union for human health protection but documented to cause shellfish mortalities in other locations around the world. In July 2019, a bloom of P. reticulatum coincided with a summer shellfish mortality event, involving a dramatic surfacing of stressed, gaping Manila clams, suggesting that YTX could be the cause. YTX concentrations in their tissues were measured at a maximum of 0.28 mg/kg and histology of these clams demonstrated damage to digestive glands. A culture of P. reticulatum, isolated from North Bay during this massive bloom and shellfish mortality event, showed YTX reaching 26.6 pg/cell, the highest recorded toxin quota measured in the U.S. to date. Concentrations of YTX in phytoplankton samples reached a maximum of 920 ng/L during a P. reticulatum bloom in Mystery Bay on 13 August 2019 when cell abundance reached 1.82 million cells/L. The highest cellular YTX quota during that bloom that lasted into September was 10.8 pg/cell on 3 Sept 2019. Shellfish producers in Washington State have also noted shellfish larvae mortalities due to A. sanguinea passing through filtration intake systems into hatchery facilities. Early warning of shellfish-killing harmful algal bloom (HAB) presence in Puget Sound, through partnerships such as SoundToxins, provides options for shellfish growers to mitigate their effects through early harvest, movement of shellstock to upland facilities, or enhanced filtration at aquaculture facilities.

摘要

一个世纪以来,普吉特海湾的夏季双壳贝类死亡率一直存在,尽管人们试图了解并减轻这些损失,但收效甚微。同样,触发贝类死亡的环境条件以及减轻其损失的成功策略也并不完善。在文献中,浮游植物在华盛顿州夏季贝类死亡中的作用只是表面的,因为产卵压力和细菌被认为是主要原因。近年来,SoundToxins 研究和监测伙伴关系记录到,繁殖期赤潮藻(Protoceratium reticulatum (Claparede & Lachmann) Buetschli)和夜光藻(Akashiwo sanguinea (Hirasaka) Hansen & Moestrup)的数量和持续时间都在增加,并与普吉特海湾各个地点贝类健康状况或死亡率下降有关。这些物种的大量繁殖主要发生在夏季,已被证明会导致美国和世界其他地区贝类大量死亡。2016-2017 年,在几种普吉特海湾双壳贝类中测量到了 yessotoxins(YTX),其中贻贝中的浓度最高为 2.20 毫克/千克,低于欧盟为保护人类健康而设定的 3.75 毫克/千克的监管限值,但在世界其他地方有记录表明,该浓度会导致贝类死亡。2019 年 7 月,繁殖期赤潮藻的爆发与夏季贝类死亡事件同时发生,受影响的、张开的太平洋牡蛎大量浮出水面,这表明 YTX 可能是造成这种情况的原因。在这些组织中的浓度最高达到 0.28 毫克/千克,这些贻贝的组织学显示消化腺受损。从这次大规模繁殖和贝类死亡事件中分离出来的繁殖期赤潮藻,在北湾的一个培养物中,YTX 达到 26.6 皮克/细胞,这是美国迄今为止记录到的最高毒素配额。在 2019 年 8 月 13 日繁殖期赤潮藻在神秘湾的爆发期间,浮游植物样本中的 YTX 浓度最高达到 920 纳克/升,当时细胞丰度达到 182 万个细胞/升。在持续到 9 月的那次繁殖期间,细胞中 YTX 的最高配额是 2019 年 9 月 3 日的 10.8 皮克/细胞。华盛顿州的贝类养殖户还注意到,夜光藻通过过滤摄入系统进入孵化场设施,导致贝类幼虫死亡。通过 SoundToxins 等合作伙伴,对普吉特海湾贝类杀伤性有害藻华(HAB)存在的早期预警,为贝类养殖户提供了通过早期收获、将壳类动物转移到高地设施或在水产养殖设施中增强过滤来减轻其影响的选择。

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