首页> 外文期刊>Journal of Experimental Marine Biology and Ecology >The ontogeny of larval swimming behavior in the crab Hemigrapsus sanguineus: Implications for larval transport
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The ontogeny of larval swimming behavior in the crab Hemigrapsus sanguineus: Implications for larval transport

机译:蟹Higraprapus sanguineus幼虫游泳行为的个体发育:幼虫运输的意义。

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摘要

Many estuarine crab species are exported from this habitat at spawning and are physically transported to coastal waters where they undergo zoeal development. Later, they recruit back to the adult habitat as megalopae. Larval behavior within the context of wind-driven coastal circulation contributes to this process. The present study tested whether the crab Hemigrapsus sanguineus, an invasive species to the mid-Atlantic coast of the United States as well as in Europe, possesses behavioral responses to exogenous cues (gravity and light) and endogenous rhythms that would facilitate this scenario. Throughout larval development, H. sanguineus zoeae were negatively buoyant. In a laboratory test chamber, early stage (Z1) larvae displayed a strong negative geotaxis in darkness which resulted in surface swimming that was not offset by behavioral responses to light exposure. These Z1 stage larvae also possessed an endogenous tidal rhythm in swimming activity that was in phase with ebb tides in the spawning habitat and was independent of light exposure. These behaviors are consistent with export of larvae from estuarine to coastal waters where larval development occurs. Intermediate (Z3) and late (Z5) stage larvae exhibited a predominant negative geotaxis and surface swimming, with some zoeae showing positive geotaxis and/or sinking in the Z5 stage. Visual spectral sensitivity of eyes in Z3 larvae peaked between 450 and 510 nm, with a secondary peak evident at short-wavelengths (~370 nm). In both the Z3 and Z5 stages, larvae descended in response to light exposure, as expected under a negative feedback model of depth regulation common among crab larvae. Photoresponse thresholds of 5.8 × 10~(12) and 1.2 × 10~(14) photons m~(-2) s~(-1) for Z3 and Z5 stage larvae, respectively, predict both stages to be in the lower water column during the day. After molting to megalopae, H. sanguineus display positive geotaxis and/or sinking in darkness and lack a phototactic response, consistent with settlement in the adult benthic habitat Thus, larvae of the invasive crab H. sanguineus possess endogenous rhythms and behavioral responses to environmental cues that are similar to those observed in successful native species with a similar coastal larval development pattern.
机译:许多河口蟹在产卵时从该栖息地输出,并被物理运输到沿海水域,并在那里进行动物的幼体发育。后来,他们以巨lop的身份回到成年人的栖息地。风力驱动的沿海环流环境中的幼虫行为促成了这一过程。本研究测试了螃蟹Hemigrapsus sanguineus(一种侵入美国和欧洲中部大西洋沿岸的入侵物种)是否具有对外源线索(重力和光照)和内源节律的行为反应,这将有助于这种情况。在整个幼虫发育过程中,血红斑鸠杆菌负浮力。在实验室测试室中,早期(Z1)幼虫在黑暗中表现出强烈的负地轴性,这导致表面游泳不能被对光照的行为响应所抵消。这些Z1期幼虫在游泳活动中也具有内源性潮汐节律,与产卵栖息地的潮汐同相,并且不受光照的影响。这些行为与幼虫从河口向发生幼虫发育的沿海水域的出口相一致。中级(Z3)和后期(Z5)幼虫表现出主要的负地向性和表面游动性,某些兽类在Z5阶段显示出正地性和/或下沉。 Z3幼虫的眼睛视觉光谱灵敏度在450至510 nm之间达到峰值,在短波长(〜370 nm)处出现一个次要峰。在Z3和Z5阶段,如在蟹幼虫之间常见的深度调节负反馈模型中所预期的那样,幼虫响应于光照而下降。 Z3和Z5阶段幼虫的光响应阈值分别为5.8×10〜(12)和1.2×10〜(14)个光子m〜(-2)s〜(-1),预测两个阶段都在较低的水柱中白天。蜕变为巨后,血红血吸虫表现出良好的地理趋向性和/或在黑暗中下沉,并且缺乏光战术反应,与成虫底栖生境中的沉降一致。因此,入侵血红血吸虫幼虫具有内生节律和对环境线索的行为反应与在成功的本地物种中观察到的相似,具有相似的沿海幼体发育模式。

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  • 作者单位

    College of Earth, Ocean and Environment, School of Marine Science and Policy, University of Delaware, 700 Pilottown Road, Lewes, DE 19958, USA;

    College of Earth, Ocean and Environment, School of Marine Science and Policy, University of Delaware, 700 Pilottown Road, Lewes, DE 19958, USA;

    College of Earth, Ocean and Environment, School of Marine Science and Policy, University of Delaware, 700 Pilottown Road, Lewes, DE 19958, USA;

    College of Earth, Ocean and Environment, School of Marine Science and Policy, University of Delaware, 700 Pilottown Road, Lewes, DE 19958, USA;

    Department of Marine Sciences, University of New England, 11 Hills Beach Road, Biddeford, ME 04005, USA;

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

    Geotaxis; Larval dispersal; Phototaxis; Vertical migration;

    机译:地标;幼虫扩散;趋光性;纵向迁移;

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