Early morphological and histological development and allometric growth of Caspian kutum, Rutilus frisii

IF 1.4 4区 生物学 Q3 BIOLOGY Biologia Pub Date : 2024-09-16 DOI:10.1007/s11756-024-01773-8
Ghadir Ghorbanzaeh, Hadi Poorbagher, Soheil Eagderi, Gholamreza Rafiee, Andrew Jeffs, Reza Nahavandi
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Abstract

The Caspian kutum, Rutilus frisii, is an anadromous fish native to Iran and despite the development of its hatchery production, its larval development has been poorly described; hence describing its morphological growth pattern was the aim of this study. The Caspian kutum larval period in the early development was divided into three stages, namely eleuthero-embryo (0–5 dph), propterygio-larvae (5–13 dph), pterygio-larvae (13–20 dph) and after larval period early juvenile was initiated (> 20 dph). The eleuthero-embryo stage was characterized by the commencement of mix-feeding while the yolk-sac remains, while propterygio-larvae absorbed the yolk-sac and continued to develop feeding apparatus and fin-folds. In pterygio-larvae, the fins developed and squamation began to appear. During the eleuthero-embryo stage, allometry in the head, trunk and tail were nearly isometric, negative, and positive, respectively. In propterygio-larvae, the head and tail allometry were positive, while the trunk was still negative. By the pterygio-larval stage, the tail and trunk allometry were nearly isometric but the head was positive. After metamorphosis, the growth pattern changed as the head and trunk allometry became nearly isometric and positive, respectively, but the tail allometry remained almost isometric. The results confirmed that morphological development and growth patterns during early life stages in R. frisii closely match its immediate required function.

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里海金枪鱼的早期形态和组织学发育及异速生长
里海胭脂鱼(Rutilus frisii)是一种原产于伊朗的溯河洄游鱼类,尽管其孵化生产得到了发展,但对其幼体发育的描述却很少;因此,描述其形态生长模式是本研究的目的。里海乌塘鳢幼鱼早期发育分为三个阶段,分别是象鼻胚(0-5 dph)、翼尾幼鱼(5-13 dph)、翼尾幼鱼(13-20 dph),幼鱼期结束后进入幼鱼期(> 20 dph)。榄香鱼胚胎期的特点是在卵黄囊残留的情况下开始混合摄食,而翼手目幼体则吸收卵黄囊,继续发育摄食装置和鳍褶。在翼管幼体中,鳍开始发育,鳞片开始出现。在象鼻胚阶段,头部、躯干和尾部的等距度分别接近等距、负等距和正等距。在翼鱼幼体阶段,头部和尾部的等距为正,而躯干仍为负。到了翼虫-幼虫阶段,尾部和躯干的等距度接近等距,但头部为正等距。变态后,生长模式发生了变化,头部和躯干的异速分别接近等速和正速,但尾部的异速几乎保持等速。结果证实,虹鳟在生命早期阶段的形态发育和生长模式与其直接需要的功能密切相关。
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来源期刊
Biologia
Biologia 生物-生物学
CiteScore
3.30
自引率
6.70%
发文量
290
审稿时长
6 months
期刊介绍: Established in 1946, Biologia publishes high-quality research papers in the fields of microbial, plant and animal sciences. Microbial sciences papers span all aspects of Bacteria, Archaea and microbial Eucarya including biochemistry, cellular and molecular biology, genomics, proteomics and bioinformatics. Plant sciences topics include fundamental research in taxonomy, geobotany, genetics and all fields of experimental botany including cellular, whole-plant and community physiology. Zoology coverage includes animal systematics and taxonomy, morphology, ecology and physiology from cellular to molecular level.
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