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Embryonic and larval developmental stages of African giant catfish Heterobranchus bidorsalis (Geoffroy Saint Hilaire 1809) (Teleostei Clariidae)

机译:非洲巨型cat鱼Heterobranchus bidorsalis(Geoffroy Saint Hilaire1809年)(TeleosteiClariidae)的胚胎和幼虫发育阶段

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摘要

The dearth of African giant catfish Heterobranchus bidorsalis seeds poses great threat to its aquaculture and biodiversity, hence detailed knowledge and understanding of its embryology is indispensable for its artificial propagation and conservation programmes. Photomicrographs of extruded oocyte through all developmental cell stages of live embryo to larval stage are documented with the aid of a light microscope. The optical transparency of the developing embryo enabled us to describe its deep structures, distinctive features and characterize the stages pictorially. Extruded oocyte had a mean diameter of 1 ± 0.1 mm, ~20% increase when hydrated, and bounded by double thin perivitelline membranes. The first mitotic cleavage occurred at 69 min post-fertilization (pf) resulting in 2, 4 (2 × 2 array of cells), 8 (2 × 4), 16 (4 × 4), 32 (4 × 8), 64 (2 × 4 × 8) blastomeres, then developed to morula, blastula and gastrula stages. Blastula was featured by formation of enveloping layer and yolk syncytial layer. Onset of epiboly at 3 h 57 min depicted the commencement of gastrula while closure of blastopore at 11 h 8 min marked its completion. Neurulation period was distinct from segmentation where organogenesis was fully active. Embryo sudden muscular contraction was noticed at ~17 h pf, increased prior to hatching with caudal locomotion firstly at 42 s interval. Heartbeat of embryo commenced at ~1 h before its unique eclosion at average of 72 beats/min while first larva emerged at 21 h at a controlled temperature of 28.5 ± 0.5°C. Mean total length (TL) of larvae and their pouch thickness were 5 ± 1 mm and 0.05 ± 0.02 mm respectively. 1 –day old larvae revealed 8 distinctive neuromeres and by day 3, epicanthus folds of the eyes were fully uncovered; and thereafter commenced exogenous feeding. At day 4, larvae recorded mean TL of 9 ± 1 mm and 15 caudal fin rays. The fin bifurcation to dorsal and adipose fins was observed at third and half weeks post-hatchability with the dorsal fin length to adipose fin was 1.7:1. This study, for the first time, presents significant morpho-sequential developmental stages of H. bidorsalis and registers its unique form of eclosion.
机译:非洲巨型cat鱼Heterobranchus bidorsalis种子的缺乏对其水产养殖和生物多样性构成了极大的威胁,因此,对其人工繁殖和保护计划必不可少的是对它的胚胎学的详细了解。借助于光学显微镜记录了从活胚的所有发育细胞阶段到幼虫阶段的挤出卵母细胞的显微照片。发育中的胚胎的光学透明度使我们能够以图形方式描述其深层结构,独特特征并表征各个阶段。挤出的卵母细胞的平均直径为1±0.1mm,水合后增加约20%,并被双层薄的卵白膜包围。第一次有丝分裂裂解发生在受精后69分钟(pf),导致2,4,(2×2细胞阵列),8(2×4),16(4×4),32(4×8),64 (2×4×8)个卵裂球,然后发育为桑mor,囊胚和胃胚阶段。囊胚的特征在于包膜层和卵黄合胞体层的形成。在3 h 57 min发生外延开始是胃的开始,而在11 h 8 min胚芽孔的关闭表明其已经完成。神经节期不同于器官发生完全活跃的分割。胚胎在约17 h pf出现突然的肌肉收缩,在孵化之前先以尾部运​​动在42秒的间隔内增加。胚胎的心跳开始于〜1 h,然后以平均每秒72次的速度被独特地抽出,而第一个幼虫在21 h出现,温度控制在28.5±0.5°C。幼虫的平均总长(TL)和小袋厚度分别为5±1 mm和0.05±0.02mm。 1天大的幼虫揭示了8种独特的神经绒毛,到第3天,完全露出了表can的褶皱;然后开始外源饲养。在第4天,幼虫记录的平均TL为9±±1mm,尾鳍有15条。在孵化后第三和半周观察到鳍与背鳍和脂肪鳍的分叉,背鳍与脂肪鳍的长度为1.7:1。这项研究首次提出了双峰H的重要形态顺序发育阶段,并记录了其独特的羽化形式。

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