Climate challenges for fish larvae: Interactive multi-stressor effects impair acclimation potential of Atlantic herring larvae.

IF 5.4 2区 医学 Q2 MATERIALS SCIENCE, BIOMATERIALS
Andrea Franke, Till Bayer, Catriona Clemmesen, Fabian Wendt, Andreas Lehmann, Olivia Roth, Ralf F Schneider
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引用次数: 0

Abstract

Fish early life stages are particularly vulnerable and heavily affected by changing environmental factors. The interactive effects of multiple climate change-related stressors on fish larvae remain, however, largely underexplored. As rising temperatures can increase the abundance and virulence of bacteria, we investigated the combination of a spring heat wave and bacterial exposure on the development of Atlantic herring larvae (Clupea harengus). Eggs and larvae of Western Baltic Spring-spawners were reared at a normal and high temperature ramp and exposed to Vibrio alginolyticus and V. anguillarum, respectively. Subsequently, mRNA and miRNA transcriptomes, microbiota composition, growth and survival were assessed. Both high temperature and V. alginolyticus exposure induced a major downregulation of gene expression likely impeding larval cell proliferation. In contrast, interactive effects of elevated temperature and V. alginolyticus resulted in minimal gene expression changes, indicating an impaired plastic response, which may cause cellular damage reducing survival in later larval stages. The heat wave alone or in combination with V. alginolyticus induced a notable shift in miRNA expression leading to the down- but also upregulation of predicted target genes. Moreover, both increased temperature and the Vibrio exposures significantly altered the larval microbiota composition, with warming reducing microbial richness and diversity. The outcomes of this study highlight the high sensitivity of herring early life stages towards multiple climate change-related stressors. Our results indicate that interactive effects of rapidly changing environmental factors may exceed the larval stress threshold impairing essential acclimation responses, which may contribute to the ongoing recruitment decline of Western Baltic Spring-Spawning herring.

气候对鱼类幼体的挑战:多重压力的交互影响损害了大西洋鲱鱼幼体的适应潜力。
鱼类的早期生命阶段特别容易受到不断变化的环境因素的严重影响。然而,与气候变化相关的多种压力因素对鱼类幼体的交互影响在很大程度上仍未得到充分探索。由于气温升高会增加细菌的数量和毒性,我们研究了春季热浪和细菌暴露对大西洋鲱鱼(Clupea harengus)幼体发育的综合影响。波罗的海西部春季产卵鱼的卵和幼体分别在常温和高温斜坡下饲养,并分别暴露于藻类弧菌和鳗鲡弧菌。随后,对 mRNA 和 miRNA 转录组、微生物群组成、生长和存活进行了评估。高温和藻溶酵母菌都会引起基因表达的严重下调,这可能会阻碍幼虫细胞的增殖。相比之下,高温和藻溶酵母菌的交互作用导致的基因表达变化极小,表明可塑性反应受损,这可能会造成细胞损伤,降低幼虫后期的存活率。热浪单独或与海藻酸酵母菌结合会引起 miRNA 表达的显著变化,导致预测的目标基因下调或上调。此外,温度升高和弧菌暴露都显著改变了幼虫微生物群的组成,升温降低了微生物的丰富度和多样性。这项研究的结果凸显了鲱鱼早期生命阶段对与气候变化相关的多重压力因素的高度敏感性。我们的研究结果表明,快速变化的环境因素的交互影响可能会超过幼鱼的应激阈值,从而损害必要的适应反应,这可能是导致波罗的海西部春产卵鲱鱼持续减少的原因之一。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Biomaterials Science & Engineering
ACS Biomaterials Science & Engineering Materials Science-Biomaterials
CiteScore
10.30
自引率
3.40%
发文量
413
期刊介绍: ACS Biomaterials Science & Engineering is the leading journal in the field of biomaterials, serving as an international forum for publishing cutting-edge research and innovative ideas on a broad range of topics: Applications and Health – implantable tissues and devices, prosthesis, health risks, toxicology Bio-interactions and Bio-compatibility – material-biology interactions, chemical/morphological/structural communication, mechanobiology, signaling and biological responses, immuno-engineering, calcification, coatings, corrosion and degradation of biomaterials and devices, biophysical regulation of cell functions Characterization, Synthesis, and Modification – new biomaterials, bioinspired and biomimetic approaches to biomaterials, exploiting structural hierarchy and architectural control, combinatorial strategies for biomaterials discovery, genetic biomaterials design, synthetic biology, new composite systems, bionics, polymer synthesis Controlled Release and Delivery Systems – biomaterial-based drug and gene delivery, bio-responsive delivery of regulatory molecules, pharmaceutical engineering Healthcare Advances – clinical translation, regulatory issues, patient safety, emerging trends Imaging and Diagnostics – imaging agents and probes, theranostics, biosensors, monitoring Manufacturing and Technology – 3D printing, inks, organ-on-a-chip, bioreactor/perfusion systems, microdevices, BioMEMS, optics and electronics interfaces with biomaterials, systems integration Modeling and Informatics Tools – scaling methods to guide biomaterial design, predictive algorithms for structure-function, biomechanics, integrating bioinformatics with biomaterials discovery, metabolomics in the context of biomaterials Tissue Engineering and Regenerative Medicine – basic and applied studies, cell therapies, scaffolds, vascularization, bioartificial organs, transplantation and functionality, cellular agriculture
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