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海洋贻贝的种内遗传谱系在暴露于微塑料浸出物时表现出行为上的差异。

Intraspecific genetic lineages of a marine mussel show behavioural divergence when exposed to microplastic leachates.

机构信息

CCMAR-Centro de Ciências do Mar, CIMAR Laboratório Associado, Universidade do Algarve, Campus de Gambelas, Faro, 8005-139, Portugal.

CCMAR-Centro de Ciências do Mar, CIMAR Laboratório Associado, Universidade do Algarve, Campus de Gambelas, Faro, 8005-139, Portugal; Univ. Lille, CNRS, Univ. Littoral Côte d'Opale, IRD, UMR 8187 - LOG - Laboratoire d'Océanologie et de Géosciences, F-59000, Lille, France; Department of Zoology and Entomology, Rhodes University, Grahamstown, 6140, South Africa.

出版信息

Environ Pollut. 2024 Jan 1;340(Pt 1):122779. doi: 10.1016/j.envpol.2023.122779. Epub 2023 Oct 18.

Abstract

Worldwide, microplastic pollution has numerous negative implications for marine biota, exacerbating the effects of other forms of global anthropogenic disturbance. Mounting evidence shows that microplastics (MPs) not only cause physical damage through their ingestion, but also act as vectors for hazardous compounds by leaching absorbed and adsorbed chemicals. Research on the effects of plastic pollution has, however, largely assumed that species respond uniformly, while ignoring intraspecific diversity (i.e., variation within a single species). We investigated the effects of plastic leachates derived from factory-fresh (virgin) and beached microplastics on the behavioural responses of two genetic lineages of the Mediterranean mussel Mytilus galloprovincialis. Through laboratory behavioural experiments, we found that during exposure to leachates from beached microplastics (beached MPLs), Atlantic specimens moved significantly less than Mediterranean individuals in terms of both (i) proportion of individuals responding through movement and (ii) net and gross distances crawled. In contrast, no significant intraspecific differences were observed in the behaviour of either adults or recruits when exposed to MPLs from virgin microplastics (virgin MPLs). Additionally, the reception of cues from three amino acids (L-cysteine, proline and L-leucine) at increasing concentrations (10 M to 10 M in charcoal-filtered seawater) was tested by electrophysiological analysis using mussels exposed to beached MPLs or control seawater. We found significant intraspecific differences in response to 10 M L-cysteine (regardless of treatment) and 10 M L-cysteine (in mussels exposed to beached MPLs) and to 10 M proline (in mussels exposed to beached MPLs) and 10 M L-leucine. Our study suggests that intraspecific variation in a marine mussel may prompt different responses to plastic pollution, potentially triggered by local adaptation and physiological variability between lineages. Our work highlights the importance of assessing the effects of intraspecific variation, especially in environmental sentinel species as this level of diversity could modulate responses to plastic pollution.

摘要

全球范围内,微塑料污染对海洋生物群具有诸多负面影响,加剧了其他形式的全球人为干扰的影响。越来越多的证据表明,微塑料 (MPs) 不仅通过摄入造成物理损伤,而且还通过浸出吸收和吸附的化学物质充当危险化合物的载体。然而,关于塑料污染影响的研究在很大程度上假设物种反应一致,而忽略了种内多样性(即单个物种内的变异)。我们研究了源自新鲜(原始)和海滩微塑料的塑料浸出物对地中海贻贝 Mytilus galloprovincialis 两个遗传谱系行为反应的影响。通过实验室行为实验,我们发现,在暴露于海滩微塑料浸出物(海滩 MPLs)期间,大西洋标本在运动方面的反应明显少于地中海个体,无论是(i)通过运动反应的个体比例,还是(ii)爬行的净距离和总距离。相比之下,在暴露于原始微塑料的 MPLs(原始 MPLs)时,无论是成年个体还是幼体,都没有观察到明显的种内差异。此外,通过电生理分析测试了在过滤海水的木炭中浓度增加的三种氨基酸(L-半胱氨酸、脯氨酸和 L-亮氨酸)的信号接收,测试对象是暴露于海滩 MPLs 或对照海水的贻贝。我们发现,对 10-5 M L-半胱氨酸(无论处理与否)和 10-5 M L-半胱氨酸(暴露于海滩 MPLs 的贻贝)以及 10-5 M 脯氨酸(暴露于海滩 MPLs 的贻贝)和 10-5 M L-亮氨酸,存在显著的种内差异。我们的研究表明,海洋贻贝的种内变异可能会引发对塑料污染的不同反应,这可能是由谱系之间的局部适应和生理变异性引发的。我们的工作强调了评估种内变异影响的重要性,特别是在环境哨兵物种中,因为这种多样性水平可能会调节对塑料污染的反应。

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