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多代环境热扰动检测促进热带鱼发育阶段的代谢权衡。

Multigenerational inspections of environmental thermal perturbations promote metabolic trade-offs in developmental stages of tropical fish.

机构信息

Marine Research Station, Institute of Cellular and Organismic Biology, Academia Sinica, I-Lan County, Taiwan; Biodiversity Program, Taiwan International Graduate Program, Academia Sinica and National Taiwan Normal University, Taipei City, Taiwan; Department of Life Science, National Taiwan Normal University, Taipei City, Taiwan.

School of Marine Biosciences, Kitasato University, Tokyo, Japan.

出版信息

Environ Pollut. 2022 Sep 1;308:119605. doi: 10.1016/j.envpol.2022.119605. Epub 2022 Jun 9.

Abstract

Global warming both reduces global temperature variance and increases the frequency of extreme weather events. In response to these ambient perturbations, animals may be subject to trans- or intra-generational phenotype modifications that help to maintain homeostasis and fitness. Here, we show how temperature-associated transgenerational plasticity in tilapia affects metabolic trade-offs during developmental stages under a global warming scenario. Tropical tilapia reared at a stable temperature of 27 °C for a decade were divided into two temperature-experience groups for four generations of breeding. Each generation of one group was exposed to a single 15 °C cold-shock experience during its lifetime (cold-experienced CE group), and the other group was kept stably at 27 °C throughout their lifetimes (cold-naïve CN group). The offspring at early life stages from the CE and CN tilapia were then assessed by metabolomics-based profiling, and the results implied that parental cold-experience might affect energy provision during reproduction. Furthermore, at early life stages, progeny may be endowed with metabolic traits that help the animals cope with ambient temperature perturbations. This study also applied the feature rescaling and Uniform Manifold Approximation and Projection (UMAP) to visualize metabolic dynamics, and the result could effectively decompose the complex omic-based datasets to represent the energy trade-off variability. For example, the carbohydrate to free amino acid conversion and enhanced compensatory features appeared to be hypothermic-responsive traits. These multigenerational metabolic effects suggest that the tropical ectothermic tilapia may exhibit transgenerational phenotype plasticity, which could optimize energy allocation under ambient temperature challenges. Knowledge about such metabolism-related transgenerational plasticity effects in ectothermic aquatic species may allow us to better predict how adaptive mechanisms will affect fish populations in a climate with narrow temperature variation and frequent extreme weather events.

摘要

全球变暖既降低了全球温度变化幅度,又增加了极端天气事件的发生频率。为了应对这些环境干扰,动物可能会经历跨代或代内表型修饰,以帮助维持体内平衡和适应度。在这里,我们展示了罗非鱼与温度相关的跨代可塑性如何影响在全球变暖情景下发育阶段的代谢权衡。将在 27°C 稳定温度下饲养了十年的热带罗非鱼分为两组进行温度体验,每组进行四代繁殖。其中一组在其一生中经历了一次 15°C 的冷休克体验(冷体验 CE 组),另一组则在其一生中一直保持在 27°C(冷无知 CN 组)。然后通过基于代谢组学的分析评估来自 CE 和 CN 罗非鱼的早期生命阶段的后代,结果表明亲代的冷体验可能会影响繁殖期间的能量供应。此外,在早期生命阶段,后代可能具有帮助动物应对环境温度干扰的代谢特征。本研究还应用特征重缩放和一致流形逼近和投影(UMAP)来可视化代谢动态,结果可以有效地分解复杂的基于组学的数据集,以表示能量权衡变化的差异。例如,碳水化合物到游离氨基酸的转化和增强的补偿特征似乎是对低温的响应特征。这些多代代谢效应表明,热带变温罗非鱼可能表现出跨代表型可塑性,这可以在环境温度挑战下优化能量分配。了解变温水生物种中与代谢相关的跨代可塑性效应的知识,可能使我们能够更好地预测适应机制将如何影响气候变异性小且极端天气事件频繁的鱼类种群。

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