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热带雀鳝(Atractosteus tropicus)发育关键期内缺氧和高氧相关基因表达动态

Hypoxia- and hyperoxia-related gene expression dynamics during developmental critical windows of the tropical gar Atractosteus tropicus.

作者信息

Martínez-Bautista Gil, Martínez-Burguete Talhia, Peña-Marín Emyr Saul, Jiménez-Martínez Luis Daniel, Martínez-García Rafael, Camarillo-Coop Susana, Burggren Warren W, Álvarez-González Carlos Alfonso

机构信息

Laboratorio de Acuacultura Tropical, División Académica de Ciencias Biológicas, Universidad Juárez Autónoma de Tabasco, Villahermosa, Tabasco, Mexico; Developmental Physiology Laboratory, Developmental Integrative Biology Research Group, Department of Biological Sciences, University of North Texas, Denton, TX, United States.

Laboratorio de Acuacultura Tropical, División Académica de Ciencias Biológicas, Universidad Juárez Autónoma de Tabasco, Villahermosa, Tabasco, Mexico.

出版信息

Comp Biochem Physiol A Mol Integr Physiol. 2022 Jan;263:111093. doi: 10.1016/j.cbpa.2021.111093. Epub 2021 Oct 7.

Abstract

Aquatic hypoxia is both a naturally-occurring and anthropogenically-generated event. Fish species have evolved different adaptations to cope with hypoxic environments, including gill modifications and air breathing. However, little is known about the molecular mechanisms involved in the respiration of embryonic and larval fishes during critical windows of development. We assessed expression of the genes hif-1α, fih-1, nhe1, epo, gr and il8 using the developing tropical gar as a piscine model during three developmental periods (fertilization to hatch, 1 to 6 days post hatch (dph) and 7 to 12 dph) when exposed to normoxia (7.43 mg/L DO), hypoxia (2.5 mg/L DO) or hyperoxia (~9.15 mg/L DO). All genes had higher expression when fish were exposed to either hypoxia or hyperoxia during the first two developmental periods. However, fish continuously exposed to hypoxia had increased expression of the six genes by hatching and 6 dph, and by 12 dph only hif-1α still had increased expression. The middle developmental period was the most hypoxia-sensitive, coinciding with several changes in physiology and morphology. The oldest larvae were the most resilient to gene expression change, with little variation in expression of the six genes compared. This study is the first to relate the molecular response of an air-breathing fish to oxygen availability to developmental critical windows and contributes to our understanding of some molecular responses of developing fish to changes in oxygen availability.

摘要

水生低氧既是一种自然发生的事件,也是人为造成的事件。鱼类已经进化出不同的适应性来应对低氧环境,包括鳃的适应性变化和空气呼吸。然而,对于胚胎期和幼鱼期鱼类在关键发育阶段呼吸过程中涉及的分子机制,我们知之甚少。我们以发育中的热带雀鳝作为鱼类模型,在三个发育阶段(受精至孵化、孵化后1至6天以及孵化后7至12天)评估了基因hif-1α、fih-1、nhe1、epo、gr和il8在常氧(7.43毫克/升溶解氧)、低氧(2.5毫克/升溶解氧)或高氧(~9.15毫克/升溶解氧)环境下的表达情况。在前两个发育阶段,当鱼类暴露于低氧或高氧环境时,所有基因的表达都更高。然而,持续暴露于低氧环境的鱼类在孵化时和孵化后6天这六个基因的表达增加,到孵化后12天只有hif-1α的表达仍处于增加状态。中间发育阶段对低氧最为敏感,这与生理和形态的一些变化相吻合。最年长的幼鱼对基因表达变化的耐受性最强,相比之下这六个基因的表达变化很小。这项研究首次将空气呼吸鱼类对氧可用性的分子反应与发育关键阶段联系起来,有助于我们理解发育中鱼类对氧可用性变化的一些分子反应。

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