温度和光周期胁迫对斑马鱼幼体发育、基因调控和PGC迁移的影响

IF 2.5 3区 农林科学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
María Santos-Villadangos, Alba Sellés-Egea, Vanesa Robles, David G Valcarce
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引用次数: 0

摘要

早期生活压力是发育和行为的关键,可能会产生长期影响,因为它代表着脆弱性增加的窗口期。在我们的研究中,我们评估了两个应激源,温度和光周期-单独和联合-在斑马鱼(Danio rerio)幼虫受精后120小时。本研究的目的是研究非致死环境应激源的影响及其潜在的协同效应,直到完成整合分子、细胞和行为分析的器官发生。将幼虫置于4种实验条件下:“对照”(C)(光照14 h:黑暗10 h; T = 27±1℃);“热休克”(HS) (14 h光照:10 h黑暗;T = 34℃);“黑暗”(D) (24 h黑暗,T = 27±1℃)和“应激”(S+) (24 h黑暗,T = 34℃)。我们的结果证实了表型,行为和分子的改变。S+幼虫表现出较低的生存曲线、较低的再生能力、较高的畸形数量(主要与鱼鳔有关)、较低的运动活性以及miR29a和clockka、hspa9、hspa5和cxcr4b基因的失调。结果显示各组之间Ddx4+细胞数量相似,但S+组的迁移模式非典型。这种综合方法为胚胎发生过程中应激反应的分子机制提供了新的见解,并为研究温度和光在早期发育中的相互作用提供了新的视角。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Temperature and photoperiod stress in zebrafish larvae: impacts on development, gene regulation and PGC migration.

Early life stress is key in development and behaviour and may have long-term effects, as it represents a window of increased vulnerability. In our study we evaluated two stressors, temperature and photoperiod -alone and combined-, in zebrafish (Danio rerio) larvae up to 120 h post-fertilisation. The objective of this study was to investigate the effects of non-lethal environmental stressors and their potential synergistic effects until completion of organogenesis integrating molecular, cellular and behavioural analyses. Larvae were subjected to 4 experimental conditions: "control" (C) (14 h light: 10 h darkness; T = 27 ± 1 °C); "heat shock" (HS) (14 h light: 10 h darkness; T = 34 °C); "darkness" (D) (24 h darkness; T = 27 ± 1 °C) and "stressed" (S+) (24 h darkness; T = 34 °C). Our results confirmed phenotypic, behavioural and molecular alterations. The S+ larvae showed a lower survival curve, lower regeneration, a higher number of malformations, predominantly those related to the swim bladder, lower motor activity and a dysregulation of miR29a and clocka, hspa9, hspa5 and cxcr4b genes. The results revealed a similar number of Ddx4+ cells between groups but non-canonical migration patterns in the S+ group. This integrated approach offers new insights into the molecular mechanisms underlying the stress response during embryogenesis and provides a new perspective on the interaction between temperature and light on early-stage development.

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来源期刊
Fish Physiology and Biochemistry
Fish Physiology and Biochemistry 农林科学-生化与分子生物学
CiteScore
5.60
自引率
6.90%
发文量
106
审稿时长
4 months
期刊介绍: Fish Physiology and Biochemistry is an international journal publishing original research papers in all aspects of the physiology and biochemistry of fishes. Coverage includes experimental work in such topics as biochemistry of organisms, organs, tissues and cells; structure of organs, tissues, cells and organelles related to their function; nutritional, osmotic, ionic, respiratory and excretory homeostasis; nerve and muscle physiology; endocrinology; reproductive physiology; energetics; biochemical and physiological effects of toxicants; molecular biology and biotechnology and more.
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