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首页> 外文期刊>Marine ecology progress series >Facultative habitat selection in Pacific tarpon Megalops cyprinoides as revealed by otolith Sr:Ca ratios
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Facultative habitat selection in Pacific tarpon Megalops cyprinoides as revealed by otolith Sr:Ca ratios

机译:耳石Sr:Ca比值揭示了太平洋海豚cyprinoides的兼性生境选择

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摘要

The Pacific tarpon Megalops cyprinoides is a euryhaline fish that is widely distributed in offshore waters of the tropical and subtropical Indo-Pacific Ocean. It spawns in offshore waters and the larvae drift with tidal currents before recruiting to estuarine nursery areas at ~25 to 30 d post-hatching. Young Pacific tarpon are found in coastal waters, rivers, estuaries, inner bays, and mangrove areas. However, their age-specific migratory behavior and habitat selection are still unclear. The strontium (Sr) concentration in seawater is ~100× higher than in fresh water, and the Sr:Ca ratios in fish otoliths are positively correlated with ambient salinity and are thus widely used in studying fish migration between seawater and freshwater environments. To understand the migratory environmental history of the Pacific tarpon, otolith Sr:Ca ratios of leptocephali collected from the estuary and sub-adults collected from both Tadu Creek and offshore waters on the west coast of Taiwan were examined using an electron probe microanalyzer (EPMA). Fish were aged by counting otolith annuli. The Sr:Ca ratios in leptocephalus otoliths were high (7.4 ± 0.03 × 10~(-3)). However, the patterns of otolith Sr:Ca ratios in 1 to 3 yr old sub-adults were diverse and can be divided into 3 types: largely brack-ishwater residents, largely freshwater residents, and vagrants between brackish and fresh waters. Fish older than 4 to 5 yr all return to the marine environment. This study demonstrates that habitat selection in the Pacific tarpon after the leptocephalus stage is facultative and that their migratory environmental history can be reconstructed from otolith Sr:Ca ratios.
机译:太平洋油ponMegalops cyprinoides是一种淡淡的鱼,广泛分布于热带和亚热带印度太平洋的近海水域。它在近海产卵,在孵化后约25至30 d进入河口育苗区之前,幼虫随潮流而漂移。在沿海水域,河流,河口,内湾和红树林地区发现了年轻的太平洋Pacific。但是,它们的特定年龄的迁徙行为和栖息地选择仍然不清楚。海水中锶(Sr)的浓度比淡水高约100倍,鱼耳石中Sr:Ca的比例与环境盐度呈正相关,因此被广泛用于研究鱼类在海水和淡水环境之间的迁移。为了了解太平洋的迁徙环境历史,使用电子探针显微分析仪(EPMA)检查了从台湾河西岸的Tadu Creek和近海水域采集的河口和亚成体的小头虫的耳石Sr:Ca比值。通过计数耳石圆环使鱼变老。小脑耳石的Sr:Ca比值较高(7.4±0.03×10〜(-3))。然而,在1至3岁的亚成年人中,耳石Sr:Ca的比值模式是多种多样的,可分为3种类型:咸淡水居民,淡水居民和淡水和淡水之间的流浪。 4至5岁以上的鱼全部返回海洋环境。这项研究表明,在小脑期之后,太平洋海带中的栖息地选择是兼收并蓄的,并且可以从耳石Sr:Ca比率重建它们的迁徙环境历史。

著录项

  • 来源
    《Marine ecology progress series》 |2009年第2009期|255-263|共9页
  • 作者单位

    Institute of Fisheries Science, College of Life Science, National Taiwan University, Taipei, Taiwan 106, ROC;

    National Museum of Marine Biology and Aquarium, Pingtung, Taiwan 944, ROC Institute of Marine Biodiversity and Evolutionary Biology, National Donghwa University, Hualien, Taiwan 974, ROC;

    Institute of Earth Sciences, Academia Sinica, Nankang, Taipei, Taiwan 115, ROC;

    Department oi Liie Science, College of Life Science, National Taiwan University, Taipei, Taiwan 106, ROC Institute of Fisheries Science, College of Life Science, National Taiwan University, Taipei, Taiwan 106, ROC;

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

    megalops cyprinoides; pacific tarpon; leptocephalus; otolith; Sr:Ca ratio;

    机译:cy太平洋塔彭小脑耳石Sr:Ca比;

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