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年生鱼类:对极端环境的发育适应性

Annual fish: developmental adaptations for an extreme environment.

作者信息

Berois Nibia, Arezo María J, Papa Nicolás G, Clivio Graciela A

机构信息

Sección Biología Celular, Facultad de Ciencias, Universidad de la República, Montevideo, Uruguay.

出版信息

Wiley Interdiscip Rev Dev Biol. 2012 Jul-Aug;1(4):595-602. doi: 10.1002/wdev.39. Epub 2012 Feb 16.

DOI:10.1002/wdev.39
PMID:23801535
Abstract

Annual fish are freshwater teleosts found in South America and Africa that are exposed to an extremely variable environment. They develop and reproduce in seasonal ponds that dry during the summer eliminating the entire adult population. Remarkably, desiccation-resistant embryos survive in these dry ponds that hatch during the next rainy season when the ponds are recreated. Among vertebrates, they represent one of the most remarkable extremophiles. They share several features with other fish models; however, they exhibit unique traits related to their peculiar life cycle. Epiboly is temporally and spatially uncoupled from organogenesis, and the embryos can undergo reversible developmental arrests (diapauses). These attributes make them a useful model to study diverse topics in developmental biology using a comparative and evolutionary approach. In this article, different aspects related to annual fish biology, taxonomy and phylogenetic considerations, reproductive strategy, and developmental characteristics with special focus on arrests, are summarized. The current challenge is to document and determine the factors that generate such high diversity and unique adaptations of annual fish. To understand this complexity, interdisciplinary approaches are being employed taking into consideration evolutionary biology, ethology, reproductive strategies, regulation of developmental mechanisms, and senescence.

摘要

一年生鱼类是分布于南美洲和非洲的淡水硬骨鱼,它们面临着极端多变的环境。它们在季节性池塘中发育和繁殖,这些池塘在夏季干涸,导致成年鱼全部死亡。值得注意的是,抗干燥的胚胎能在这些干涸的池塘中存活,当下一个雨季池塘重新形成时孵化。在脊椎动物中,它们是最显著的极端嗜极生物之一。它们与其他鱼类模型有一些共同特征;然而,它们表现出与独特生命周期相关的独特特性。外包在时间和空间上与器官发生解耦,胚胎可以经历可逆的发育停滞(滞育)。这些特性使它们成为一个有用的模型,可用于采用比较和进化方法研究发育生物学中的各种主题。本文总结了与一年生鱼类生物学、分类学和系统发育考量、繁殖策略以及特别关注发育停滞的发育特征相关的不同方面。当前的挑战是记录和确定导致一年生鱼类如此高度多样性和独特适应性的因素。为了理解这种复杂性,正在采用跨学科方法,同时考虑进化生物学、行为学、繁殖策略、发育机制调控和衰老等方面。

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Annual fish: developmental adaptations for an extreme environment.年生鱼类:对极端环境的发育适应性
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, an 'instant' fish from an ephemeral habitat., 一种来自短暂栖息地的“即时”鱼类。
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Is African non-annual killifish Fundulopanchax gardneri (Teleostei; Cyprinodontiformes; Nothobranchiidae) true non-annual?非洲非一年生鳉鱼加德纳底鳉(硬骨鱼纲;鲤齿目;假鳃鳉科)真的是非一年生的吗?
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Physiological strategies during animal diapause: lessons from brine shrimp and annual killifish.动物滞育期间的生理策略:来自卤虫和一年生鳉鱼的启示。
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Protocol for extracting live blastoderm cells from embryos of annual killifish.从一年生丰年虾胚胎中提取活原肠胚细胞的方案。
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Protogynous functional hermaphroditism in the North American annual killifish, Millerichthys robustus.雄鱼先熟的功能雌雄同体现象存在于北美一年生的食蚊鱼,强壮米勒鱼。
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Biomarkers of oxidative stress in the post-embryonic characterization of the neotropical annual killifish.氧化应激生物标志物在新热带年度半咸水丰年鱼胚胎后特征描述中的作用。
Biogerontology. 2021 Oct;22(5):507-530. doi: 10.1007/s10522-021-09931-0. Epub 2021 Jul 24.
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Embryonic developmental arrest in the annual killifish Austrolebias charrua: A proteomic approach to diapause III.Austrolebias charrua 胚胎发育停滞:休眠 III 的蛋白质组学方法。
PLoS One. 2021 Jun 4;16(6):e0251820. doi: 10.1371/journal.pone.0251820. eCollection 2021.
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Developmentally arrested Austrofundulus limnaeus embryos have changes in post-translational modifications of histone H3.发育停滞的南美湖鳉胚胎在组蛋白H3的翻译后修饰方面存在变化。
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Gene expression patterns that support novel developmental stress buffering in embryos of the annual killifish Austrofundulus limnaeus.支持一年生脂鲤 Austrofundulus limnaeus 胚胎新型发育应激缓冲的基因表达模式。
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Sex determination in annual fishes: Searching for the master sex-determining gene in Austrolebias charrua (Cyprinodontiformes, Rivulidae).年度鱼类的性别决定:在 Austrolebias charrua(鲤形目,脂鲤科)中寻找主效性别决定基因。
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