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首页> 外文期刊>Copeia >Oocyte Development and Staging in the Florida Bass, Micropterus floridanus (LeSueur, 1822), with Comments on the Evolution of Pelagic and Demersal Eggs in Bony Fishes
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Oocyte Development and Staging in the Florida Bass, Micropterus floridanus (LeSueur, 1822), with Comments on the Evolution of Pelagic and Demersal Eggs in Bony Fishes

机译:佛罗里达州贝司的卵母细胞开发和分期,MicroPterus floridanus(Lesueur,1822),评论骨鱼中的骨质和卵子卵的演变

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摘要

Oocyte development and staging is described from histological preparation of the ovaries of field collected specimens of the Florida Bass, Micropterus floridanus. Oocyte development in Florida Bass progresses through six stages beginning with oogonial proliferation and ending with ovulation, the release of eggs. The stages are based on mitosis and meiosis, the core processes of Adaptable Oocyte Staging. After ovulation, the postovulatory follicle complex produces a mucuslike fluid with unknown function; we speculate that it protects the eggs immediately upon ovulation and upon their release into freshwater during spawning. Atresia is rare in the ovaries of reproductive Florida Bass. The release of cortical alveoli after fertilization follows a unique, extended time-release sequence. Oocyte development in the freshwater perciform Florida Bass follows precisely a pattern that has been documented for marine perciform fishes that produce positively buoyant, pelagic, non-adhesive eggs. The eggs of Florida Bass are morphologically like these pelagic eggs in that they have a single large oil globule and no attachment filaments. Yet Florida Bass eggs have small, clear yolk globules and an adhesive egg envelope and are functionally demersal. Thus, classification of an egg as pelagic or demersal should consider Its morphology as well as its function, especially if egg type is to be used to interpret phylogenetic relationships or evolutionary patterns. The clearing of yolk due to the uptake of water during the development of actinopterygian eggs, as they progress from a demersal to a potentially pelagic phase, may be a general mechanism of oocyte maturation in teleost fishes.
机译:卵母细胞开发和分期是从佛罗里达贝司米米菌,佛罗里达州的卵巢卵巢的卵巢的组织学制备中描述。佛罗里达州卵母细胞发育在六个阶段开始以卵黄化的增殖开始,以排卵结束,释放卵。该阶段基于有丝分裂和减数分裂,适应性卵母细胞分期的核心方法。排卵后,后后卵泡复合物产生具有未知功能的粘液液;我们推测它在排卵时立即保护鸡蛋,并在产卵期间释放到淡水中。奥里西亚在生殖佛罗里达贝斯卵巢中很少见。施肥后皮质肺泡的释放遵循独特的延长时间释放序列。淡水Perciform Forlida Bass中的卵母细胞发育恰恰是一种针对海洋细胞的鱼类的模式,其产生积极的浮力,无粘性卵。佛罗里达贝司的鸡蛋在形态上就像这些卵状卵,因为它们具有单个大型油球,没有附着的长丝。然而,佛罗里达低音鸡蛋有小,透明的蛋黄球和粘合剂蛋壳,并且在功能上是倒数。因此,作为骨质或骨折的蛋的分类应该考虑其形态以及其功能,特别是如果要用于解释系统发育关系或进化模式。由于在猕猴桃卵发育过程中,蛋黄的清除,因为它们从缺口到潜在的脑膜阶段的进展,这可能是卵母细胞成熟在紧邻鱼类中的一般机制。

著录项

  • 来源
    《Copeia》 |2018年第2期|共17页
  • 作者单位

    Florida Fish &

    Wildlife Res Inst 100 8th Ave SE St Petersburg FL 33701 USA;

    Lakefront Management &

    Res 1216 Gray Court Eustis FL 32726 USA;

    Florida Fish &

    Wildlife Res Inst 100 8th Ave SE St Petersburg FL 33701 USA;

    Smithsonian Inst Natl Museum Nat Hist Dept Vertebrate Zool Div Fishes MRC 159 POB 37012 Washington DC 20013 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 鱼纲;
  • 关键词

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