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Contrasting biodiversity of eel larvae across the central Indian Ocean subtropical gyre

机译:对比鳗鱼幼虫的生物多样性,中部印度洋亚热带孢子

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摘要

The unique semi-enclosed Indian Ocean basin includes large Mascarene Plateau banks, offshore coral-reef islands, seasonal equatorial current jets, and cross-basin westward South Equatorial Current (SEC) flow, making it interesting for studying long larval-duration eel larvae (leptocephali) and regional eel biodiversity. Three surveys for leptocephali (in 2003, 2006, 2010) included sampling west of the Mascarene Plateau (west), a major survey and other stations off Sumatra and Java (east), and 2 cross-basin transects across the SEC. The highest numbers of leptocephali species were observed along Sumatra (2003: similar to 143 species; 2006: 72 species) and south of Java (2010: 69), with intermediate numbers being collected in the western Indian Ocean (2006: 71; 2010: 53) compared to low numbers in the hydrographically variable offshore zones (2006, 2010: 3-27). The larger continental shelf areas along Sumatra including the Mentawai Islands provide more coral reef and other habitats for species such as congrid, muraenid, ophichthid, and chlopsid eels compared to the Mascarene Plateau banks. Some larvae in these areas get transported offshore, but the majority of offshore larvae were of Nemichthyidae and Serrivomeridae mesopelagic eels that were spawning across the basin. Habitat differences between the southern Mascarene Plateau and Sumatra and southern Indonesia along the edge of the high biodiversity Coral Triangle likely explain the higher biodiversity of eel larvae observed along the western side of the basin, which for the Congridae and Ophichthidae included more species than observed previously within the central Indonesian Seas. In addition to local spawning, seasonal currents likely transport larger larvae towards Sumatra from the north or west and larvae may enter the basin from the Indonesian Throughflow in the east, but it is unknown if equatorial jets or the SEC can transport larvae across the whole basin.
机译:独特的半封闭式印度洋盆地包括大型睫毛膏高原银行,海上珊瑚礁岛,季节赤道电流喷气机和交叉盆地向西南赤道电流(SEC)流动,对学习长幼虫急性鳗鱼幼虫进行有趣( Leptocephali)和区域鳗鱼生物多样性。 leptocephali的三种调查(2003年,2006年,2010年)包括戴斯加尔州高原(西部)以西的抽样,苏门答腊和Java(东)的主要调查和其他电台,以及2个跨盆地横跨秒。沿苏门答腊省(2003年:2006年)和Java南部(2010年:69)南部,在西部印度洋(2006:71; 2010年)中收集中间号码(2006年:72种)和爪哇南部(2006年:72种)和爪哇南部53)与水文变量的海上区中的低数量相比(2006年,2010:3-27)。与睫毛高原银行相比,沿着蒙瓦群岛的苏瓦群岛等苏瓦群岛等种类提供了更多的珊瑚礁和其他栖息地,提供了更多的珊瑚礁和其他栖息地。这些地区的一些幼虫在海上运送,但大多数海洋幼虫都是Nemichthyidae和Serrivomeridae中胚轴鳗鱼在整个盆地中产卵。南部睫毛杆菌和苏门答腊和印度尼西亚南部沿着高生物多样性珊瑚三角的边缘的栖息地差异可能解释沿着盆地西侧观察到的鳗鱼幼虫的更高生物多样性,这对于恭喜和奥皮西凡德包括更多物种比以前所观察到的在印度尼西亚中部。除了当地产卵外,季节性电流可能将巨大的幼虫转向苏门答腊,从北部或西部,幼虫可以从东部的印度尼西亚流行进入盆地,但如果赤道喷射或秒可以在整个盆地上运输幼虫,但它是未知的。

著录项

  • 来源
    《Deep-Sea Research 》 |2019年第3期| 120-131| 共12页
  • 作者单位

    Nihon Univ Coll Bioresource Sci Dept Marine Sci & Resources 1866 Kameino Fujisawa Kanagawa 2520880 Japan;

    Indonesian Inst Sci Res Ctr Oceanog Jl Pasir Putih 1 Jakarta 14430 Indonesia;

    UCaen UPMC Ctr Rech & Enseignement Syst Cotiers CRESCO UMR BOREA MNHN CNRS IRD UA 38 Rue Port Blanc F-35800 Dinard France;

    Univ Tokyo Atmosphere & Ocean Res Inst Int Coastal Res Ctr Otsuchi Iwate 0281102 Japan;

    Kinki Univ Dept Fisheries Fac Agr 3327-204 Nakamachi Nara 6318505 Japan;

    Indonesian Inst Sci Ctr Deep Sea Res Jl Y Syaranamual Ambon 97233 Indonesia;

    Univ Tokyo Grad Sch Agr & Life Sci Dept Aquat Biosci Tokyo 1138657 Japan;

    Museum Natl Hist Nat Stn Marine Concarneau BP 225 F-29182 Concarneau France;

    Nihon Univ Coll Bioresource Sci Dept Marine Sci & Resources 1866 Kameino Fujisawa Kanagawa 2520880 Japan;

    Univ Tokyo Grad Sch Agr & Life Sci Dept Aquat Biosci Tokyo 1138657 Japan;

    Nihon Univ Coll Bioresource Sci Dept Marine Sci & Resources 1866 Kameino Fujisawa Kanagawa 2520880 Japan;

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

    Indian Ocean; Eel larvae; Larval transport; Mascarene Plateau; Ocean currents;

    机译:印度洋;鳗鱼幼虫;幼虫运输;睫毛胶质高原;洋流;

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