Proteomic analysis of temperature-dependent developmental plasticity within the ventricle of juvenile Atlantic salmon (Salmo salar)

IF 2.1 Q3 PHYSIOLOGY Current research in physiology Pub Date : 2022-01-01 DOI:10.1016/j.crphys.2022.07.005
Carlie A. Muir, Bradley S. Bork, Bryan D. Neff, Sashko Damjanovski
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Abstract

In teleosts, cardiac plasticity plays a central role in mediating thermal acclimation. Previously, we demonstrated that exposure to elevated temperatures throughout development (+4°C) improved acute thermal tolerance of the heart in juvenile Atlantic salmon. Fish raised in a warmer thermal regime also displayed higher proportions of compact myocardium within their ventricles. In the present study, we investigated the molecular mechanisms supporting this temperature-specific phenotype by comparing relative protein abundance in ventricular tissue from the same experimental fish using mass spectrometry. We provide the first description of the ventricular proteome in juvenile Atlantic salmon and identify 79 proteins displaying differential abundance between developmental treatments. The subset of proteins showing higher abundance in fish raised under elevated temperatures was significantly enriched for processes related to ventricular tissue morphogenesis, and changes in protein abundance support a hypertrophic model of compact myocardium growth. Proteins associated with the vasculature and angiogenesis also showed higher abundance in the warm-developmental group, suggesting capillarization of the compact myocardium in the hearts of these fish. Proteins related to oxidative metabolism and protein homeostasis also displayed substantive shifts in abundance between developmental treatments, underscoring the importance of these processes in mediating thermal plasticity of cardiac function. While rapid growth under warm developmental temperatures has been linked to cardiomyopathies in farmed salmon, markers of cardiac pathology were not implicated in the present study. Thus, our findings offer a molecular footprint for adaptive temperature-dependent plasticity within the ventricle of a juvenile salmonid.

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大西洋鲑幼鱼脑室温度依赖性发育可塑性的蛋白质组学分析
在硬骨鱼中,心脏可塑性在调节热适应中起着核心作用。先前,我们证明了在整个发育过程中暴露于高温(+4°C)可以改善幼年大西洋鲑鱼心脏的急性热耐受性。在较温暖的温度环境中长大的鱼在其心室中也显示出较高比例的致密心肌。在本研究中,我们通过使用质谱法比较来自同一实验鱼的心室组织中的相对蛋白质丰度,研究了支持这种温度特异性表型的分子机制。我们首次描述了幼年大西洋鲑鱼的心室蛋白质组,并鉴定了79种蛋白质在发育处理之间表现出不同的丰度。在高温下饲养的鱼类中,显示出较高丰度的蛋白质亚群在与心室组织形态发生相关的过程中显著富集,蛋白质丰度的变化支持致密心肌生长的肥厚模型。与脉管系统和血管生成相关的蛋白质在温热发育组中也显示出更高的丰度,这表明这些鱼心脏中的致密心肌有毛细血管化。与氧化代谢和蛋白质稳态相关的蛋白质在发育处理之间也显示出实质性的丰度变化,强调了这些过程在介导心功能热可塑性中的重要性。虽然养殖鲑鱼在温暖的发育温度下的快速生长与心肌病有关,但本研究并未涉及心脏病理标志物。因此,我们的研究结果为幼年鲑鱼脑室内的适应性温度依赖可塑性提供了分子足迹。
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