Early development of vertebral column and appendicular skeleton in Naozhou Larimichthys crocea (Richardson, 1846).

IF 1.7 3区 农林科学 Q2 FISHERIES Journal of fish biology Pub Date : 2025-01-07 DOI:10.1111/jfb.16045
Bo-Wen Liu, Hua-Yang Guo, Bao-Suo Liu, Nan Zhang, Ke-Cheng Zhu, Kuo-Qiu Yan, Hai-Peng Qin, Dian-Chang Zhang, Jin-Hui Sun
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Abstract

Understanding the developmental sequence characteristics of the vertebral and appendicular skeletons of the larvae and juveniles of Larimichthys crocea (Naozhou population) can provide theoretical basis for seedling cultivation, environmental adaptation, and taxonomic identification. The cartilage-bone double staining method was used to stain, observe, and analyse the vertebrae, pectoral fins, anal fins, caudal fins, and dorsal fins of the larvae and juveniles of L. crocea (0-30 days post-hatching [DPH]). Results showed that the notochord of the larvae and juveniles of L. crocea was tubular. At 6 DPH, there was obvious segmentation. At 8 DPH, the neural arches began to differentiate, and at 10 DPH, the haemal arches began to differentiate, with complete segmentation of the notochord. At 14 DPH, the dorsal and ventral ribs became clear, and the neural and haemal spines were completely formed by the elongation of the neural and haemal arches, respectively. At 18 DPH, the vertebral bones began to ossify, and ossification was complete at 28 DPH. The median fins of the larvae and juveniles of L. crocea formed in the order of caudal fin, anal fin, and dorsal fin. Among the 800 L. crocea larvae samples, 248 were observed to have skeletal deformities, with a deformity rate of 31.00%. The spine of L. crocea consists of 26 vertebrae, with developmental abnormalities mainly including vertebral anterior convexity, bifurcation of neural spines, vertebral body fusion, and redundancy of neural spines. The above results provide a theoretical basis for enriching the developmental biology of L. crocea.

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Naozhou Larimichthys crocea脊柱和尾骨的早期发育(Richardson, 1846)。
了解三角帆鱼(Larimichthys crocea, Naozhou种群)幼虫和幼鱼椎、尾骨骼的发育序列特征,可为其幼苗培育、环境适应和分类鉴定提供理论依据。采用软骨-骨双染色法对孵化后0 ~ 30 d的大菱鲆幼鱼的脊椎骨、胸鳍、肛鳍、尾鳍和背鳍进行染色、观察和分析。结果表明,crocea幼虫和幼体脊索呈管状;在6 DPH时,有明显的分割。8 DPH时,神经弓开始分化,10 DPH时,血液弓开始分化,脊索完全分割。在14 DPH时,背肋和腹肋变得清晰,神经棘和血液棘分别通过神经弓和血液弓的延伸完全形成。18 DPH时,椎骨开始骨化,28 DPH时骨化完成。大菱鲆幼虫和幼鱼的中鳍发育顺序为尾鳍、肛鳍、背鳍。800只大菱鲆幼虫样本中,有248只出现骨骼畸形,畸形率为31.00%。藏红花脊柱由26节椎骨组成,发育异常主要有椎体前凸、神经棘分叉、椎体融合、神经棘冗余等。上述结果为丰富藏红花的发育生物学提供了理论依据。
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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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