Sequence of formation and inheritance of meristic variation in the post-cranial axial skeleton of Atlantic salmon (Salmo salar).

IF 1.7 3区 农林科学 Q2 FISHERIES Journal of fish biology Pub Date : 2024-12-04 DOI:10.1111/jfb.16004
Antony J Praphu Philip, Thomas W K Fraser, Kari Nordvik, Antony J Prabhu Philip, Sofie Remø, Tom J Hansen, Paul Eckhard Witten, Harald Kryvi, Per Gunnar Fjelldal
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Abstract

Atlantic salmon is an important aquaculture species that has fascinated naturalists for centuries, resulting in its biology being widely characterized. Certain details about the early development and the inheritance of meristic variation in the post-cranial axial skeleton are, however, largely unexplored. The present study gives a detailed description of the sequence of formation of the post-cranial axial skeleton based on whole-mount staining and used radiology to investigate the inheritance of meristic variation in isogenic hybrid all-male families of Atlantic salmon (~4 kg). Eight different families were created by crossing two homozygous double haploid XX females (dam A, B) with four different double haploid homozygous YY super males (sires a to d). In the caudal fin complex, the first bone to form is hypural 1 and its associated lepidotrichia followed by a bidirectional formation of new bones. In the dorsal and anal fins, development starts in the cranial part, and new bones form bidirectionally towards the head and tail fin. The neural and haemal arches start to form at segment 43, and further development is bidirectional. The first parapophysis form in the caudal part of the abdomen followed by a unidirectional completion cranially. The first ribs form at segment 3 and new ribs develop unidirectional caudally. Chordacentra formation starts at segment 24 followed by formation of chordacentrum number 58 (caudal-most vertebra). New chordacentrae form bidirectionally from segment 24 in parallel with the formation of chordacentrum number 57. The first epineuralia form at segment 1 followed by a unidirectional completion caudally until segment 30. The first supraneuralia to develop is number 10 closely followed by number 1, then new supraneurals form bidirectionally from number 10. Analysis of the inheritance on the post-cranial axial skeletal bones showed a strong maternal effect on total vertebrae centra and tail fin lepidotrichia counts. For these skeletal counts, dam A produced offspring with modes of 58 and 45 respectively, while dam B produced offspring with modes of 59 and 42. The higher number of total vertebrae centra produced by dam B was associated with additional abdominal and/or transitional vertebrae. The completion of formation in different post-cranial axial skeletal parts are either bi- or unidirectional, and the initiation of formation is site specific for each skeletal part with some inter-part similarities. Further, the present results may suggest that there has been a maternally driven selection for more abdominal vertebrae associated with a higher number of total vertebrae, and more tail fin lepidotrichia associated with a lower number of total vertebrae. These changing meristic counts may impact on important fitness-related traits, such as fecundity and swimming ability, making the present findings relevant for both ecological and aquaculture sciences.

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大西洋鲑(Salmo salar)后颅轴骨分生变异的形成序列和遗传。
大西洋鲑鱼是一种重要的水产养殖物种,几个世纪以来一直吸引着博物学家,导致其生物学被广泛表征。然而,关于颅后轴骨的早期发育和分生变异遗传的某些细节在很大程度上尚未被探索。本研究基于全载染色技术详细描述了颅后轴骨的形成序列,并利用放射学研究了大西洋鲑鱼(~ 4kg)等基因杂交全雄性家族分生变异的遗传。通过将两个纯合子双单倍体XX雌性(雄性A、雄性B)与四个不同的双单倍体纯合子YY超级雄性(雄性A至雄性d)杂交,形成了8个不同的家族。在尾鳍复合体中,首先形成的骨是1号尾膜及其相关的鳞毛,然后是双向形成的新骨。背鳍和肛鳍从颅部开始发育,朝向头和尾鳍的方向双向形成新的骨骼。43节开始形成神经弓和血液弓,进一步的发育是双向的。第一个突旁形成于腹部尾侧接着是颅骨的单向完成。第一个肋在第3节形成,新的肋在尾端单向发育。脊索中心的形成始于第24节,随后是第58号脊索中心(最尾椎)的形成。与第57弦央的形成平行,从第24段双向形成新的弦央。第一个神经外膜形成于第1节段,然后在尾侧单向完成,直到第30节。第一个形成的上脉是10号,紧随其后的是1号,然后新的上脉从10号开始双向形成。对后颅轴骨的遗传分析表明,母系对总椎中央数和尾鳍鳞毛数有很强的影响。对于这些骨骼计数,大坝A产生的后代分别为58和45,而大坝B产生的后代分别为59和42。坝B产生的总椎体中位数越多,则与额外的腹部和/或过渡性椎体有关。不同的颅后轴向骨骼部位形成的完成是双向的或单向的,形成的开始是特定于每个骨骼部位的,并且在部分之间有一定的相似性。此外,目前的结果可能表明,有一个母系驱动的选择,更多的腹部椎骨与更多的总椎骨数量有关,更多的尾鳍鳞毛与更少的总椎骨数量有关。这些变化的分分体计数可能会影响重要的健康相关性状,如繁殖力和游泳能力,使目前的研究结果与生态和水产养殖科学相关。
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来源期刊
Journal of fish biology
Journal of fish biology 生物-海洋与淡水生物学
CiteScore
4.00
自引率
10.00%
发文量
292
审稿时长
3 months
期刊介绍: The Journal of Fish Biology is a leading international journal for scientists engaged in all aspects of fishes and fisheries research, both fresh water and marine. The journal publishes high-quality papers relevant to the central theme of fish biology and aims to bring together under one cover an overall picture of the research in progress and to provide international communication among researchers in many disciplines with a common interest in the biology of fish.
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