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首页> 外文期刊>Marine biology >Development of the nasal olfactory organs in the larvae, settlement-stages and some adults of 14 species of Caribbean reef fishes (Labridae, Scaridae, Pomacentridae)
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Development of the nasal olfactory organs in the larvae, settlement-stages and some adults of 14 species of Caribbean reef fishes (Labridae, Scaridae, Pomacentridae)

机译:14种加勒比礁鱼类(唇形科,甲虫,波马角科)的幼虫,定居阶段和某些成年的鼻嗅器官的发育

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摘要

Larval fishes likely use a variety of settlement cues to locate and navigate toward the habitats they will inhabit as juveniles. Information about the morphology and state of development of the sensory organs of larval stages of fishes provides insight into their capabilities at the time of settlement. The peripheral olfactory organ of wild-caught late-stage larvae and early juveniles and some adults of 14 species of the Caribbean reef fishes wrasses (Labridae), parrot fishes (Scaridae) and damselfish (Pomacentridae) were examined using scanning electron microscopy and compared in terms of settlement specificity. Ages in days after hatching and days post-settlement were determined from the otoliths. Morphology of the nares and the olfactory epithelium are described for these species by stage. The separation of the anterior and posterior nares occurred before settlement in the labrids but in some specimens of scarids this separation was not complete by the time of settlement. Densities of ciliated and microvillous receptor cells and non-sensory ciliated epithelial cells were calculated. Densities of ciliated receptor cells ranged from 0.389 μm~(-2) in a specimen of Thallasoma bifasciatum to 0.0057 μm~(-2) in Bodianus rufus and of microvillous receptor cells from 0.038 μm~(-2) in a Clepticus parrae juvenile to 0.266 μm~(-2) in a juvenile Doratonotus megalepis. Densities of non-sensory cilia, also associated with high olfactory ability, were also high. The olfactory organ in wrasses is well developed prior to settlement and is comparable to that of adult fishes. The possible role of olfaction in larval schooling, reef cue detection and orientation toward habitat at settlement is discussed.
机译:幼鱼可能会使用各种定居线索来定位并导航到它们将作为幼鱼栖息的栖息地。有关鱼类幼体阶段感觉器官的形态和发育状态的信息可帮助您了解其在定居时的能力。使用扫描电子显微镜检查了野生捕捞的后期幼虫和早期幼虫的外围嗅觉器官,以及14种加勒比礁鱼濑鱼(唇形科),鹦鹉鱼(Scaridae)和雀鲷(Pomacentridae)的一些成年动物,并进行了比较。结算专用条款。从耳石确定孵化后天数和沉降后天数的年龄。分阶段介绍了这些物种的鼻孔和嗅觉上皮的形态。前鼻孔和后鼻孔的分离发生在三角洲的沉降之前,但是在一些猩猩的标本中,这种分离在沉降时尚未完成。计算了纤毛和微绒毛受体细胞以及非感觉纤毛的上皮细胞的密度。紫茎泽兰(Thallasoma bifasciatum)标本中纤毛状受体细胞的密度范围从0.389μm〜(-2)到红dian子(Bodianus rufus)的纤毛状受体细胞的密度为0.0057μm〜(-2),而克拉皮幼鱼的微绒毛受体细胞的密度为0.038μm〜(-2)-少年Doratonotus megalepis中的0.266μm〜(-2)。非感官纤毛的密度也与高嗅觉能力有关。在定居之前,濑鱼的嗅觉器官发育良好,与成年鱼的嗅觉器官相当。讨论了嗅觉在幼虫教育,礁岩线索检测以及在定居地朝向生境的可能作用。

著录项

  • 来源
    《Marine biology》 |2008年第1期|p.51-64|共14页
  • 作者

    Monica R. Lara;

  • 作者单位

    Cooperative Institute for Marine and Atmospheric Studies, University of Miami/NOAA-SEFSC, 4600 Rickenbacker Cswy, Miami, FL 33149, USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境生物学;
  • 关键词

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