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Behaving in the Dark: Locomotor, Chromatic, Postural, and Bioluminescent Behaviors of the Deep-Sea Squid Octopoteuthis deletron Young 1972

机译:在黑暗中表现:深海鱿鱼Octopoteuthis deletron Young 1972的运动,色度,姿势和生物发光行为

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摘要

Visual behaviors are prominent components of intra- and interspecific communication in shallow-water cephalopods. Meso- and bathypelagic cephalopods were believed to have limited visual communication, other than bioluminescence, due to the reduced illumination at depth. To explore potential visual behaviors in mesopelagic squid, we used undersea vehicles to observe 76 individuals of Octopoteuthis deletron. In contrast to predictions, we found this species capable of a variety of visually linked behaviors not previously reported for a deep-ocean cephalopod. The resultant ethogram describes numerous chromatic, postural, locomotor, and bioluminescent behavioral components. A few common body patterns-the whole appearance of the individual involving multiple components-are characterized. The behaviors observed from individual squid were compared using a Non-metric Multi-Dimensional Scaling (NMDS) ordination, onto which hydrographic and observation parameters were mapped. Observation length, specimen collection, and contact with the vehicle affected which behaviors were performed. A separate NMDS, analyzing the body patterns, indicated that these sets of behavioral components could be visualized as groups within the NMDS ordination. While the functional roles of the behaviors described are not yet known, our findings of numerous behaviors in O. deletron clearly indicate that bioluminescence is not the sole method of visual communication by deep-sea squid. [PUBLICATION ABSTRACT]
机译:视觉行为是浅水头足类内部和种间通讯的重要组成部分。由于生物发光,由于深度照明的减少,中,远鳍的头足类动物的视觉交流被认为是有限的。为了探索中古鱿鱼中的潜在视觉行为,我们使用了水下工具观察了76个八爪鱼的个体。与预测相反,我们发现该物种具有以前未见于深海头足类动物的各种视觉关联行为。所得的ethogram图描述了许多色度,姿势,运动和生物发光行为成分。描绘了一些常见的人体模式-涉及多个组件的个人的整体外观。使用非度量多维标度(NMDS)排序比较了从各个鱿鱼观察到的行为,并在其上绘制了水文和观测参数。观察长度,标本收集以及与车辆的接触会影响所执行的行为。单独的NMDS分析了人体模式,表明可以将这些行为组件集可视化为NMDS指令中的组。尽管尚不清楚所描述行为的功能作用,但我们在O. deletron中发现的许多行为清楚地表明,生物发光并不是深海鱿鱼视觉交流的唯一方法。 [出版物摘要]

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  • 来源
    《The Biological Bulletin》 |2009年第1期|p.7-22|共16页
  • 作者单位

    STEPHANIE L. BUSH1,2,*, BRUCE H. ROBISON2, AND ROY L. CALDWELL1 University of California, Berkeley, Department of Integrative Biology, Berkeley, California 94720, and2 Monterey Bay Aquarium Research Institute, 7700 Sandholdt Rd., Moss Landing, California 95039Received 21 May 2008: accepted 15 October 2008.* To whom correspondence should be addressed. E-mail: sbush@mbari.org,;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-17 23:33:20

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