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Luminescent defensive behaviors of polynoid polychaete worms to natural predators

机译:no类多毛蠕虫对自然天敌的发光防御行为

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摘要

The intertidal polynoid scale worm Harmothoe imbricata emits a bright green luminescence from its elytra when provoked. These worms are hypothesized to use both luminescence and autotomization (voluntary loss of body parts) as specialized defenses against predators. Previous studies had focused on the mechanisms of light production or used human manipulation to provoke luminescent displays, rather than using actual predators. Worms and local crustacean predators collected in Cum-berland County, Maine at three intertidal locations between June 2011 and March 2013 were placed in a small chamber with a removable center divider and their interaction was recorded with infrared cameras, a night vision device with an infrared barrier filter, and photomultipliers. Three different luminescent responses were observed: attached scale flashing, autotomized glowing scales, and autotomized flashing/glowing posterior segments. In some cases, autotomized scales/segments acted as successful decoys, with the anterior portion of the worm crawling away while the attacker focused on the posterior glowing portion. Worms appeared to use different combinations of defensive behaviors in different scenarios, such as when attacked by different predators. Luminescent defensive displays were also more complex than predicted and suggest that the predator's actions during and following an attack may inadvertently aid in the scale worm's escape. The use of live predators was pivotal to describing the worm's defense mechanism and providing insight into how luminescence may be used in nature.
机译:引起潮间带多角垢的蠕虫Harmothoe imbricata在激发时会从其鞘翅中发出亮绿色的发光。据推测,这些蠕虫既可以利用发光也可以利用自动切杀(身体部位的自愿性丧失)作为对天敌的专门防御。先前的研究集中在光产生的机制或使用人类操纵来激发发光显示,而不是使用实际的掠食者。 2011年6月至2013年3月在缅因州卡姆伯兰县的三个潮间带采集的蠕虫和当地甲壳类动物被放置在一个带有可移动中心分隔物的小房间中,并使用红外摄像头(带红外夜视仪)记录了它们的相互作用势垒滤光片和光电倍增管。观察到三种不同的发光响应:附着的鳞片闪烁,自动断尾的发光鳞片和自动断尾的闪烁/发光的后段。在某些情况下,自动切开的鳞片/段充当成功的诱饵,蠕虫的前部爬行而攻击者将注意力集中在后发光部上。蠕虫似乎在不同情况下使用不同的防御行为组合,例如在受到不同掠食者攻击时。发光防御显示也比预期的要复杂,这表明掠食者在攻击过程中和攻击后的行为可能会无意中帮助鳞虫的逃生。使用活食掠食者对于描述蠕虫的防御机制以及深入了解如何在自然界中使用发光至关重要。

著录项

  • 来源
    《Marine biology 》 |2018年第9期| 149.1-149.12| 共12页
  • 作者单位

    Bowdoin Coll, Dept Biol, Brunswick, ME 04011 USA;

    Bowdoin Coll, Dept Biol, Brunswick, ME 04011 USA;

    Bowdoin Coll, Dept Biol, Brunswick, ME 04011 USA;

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  • 正文语种 eng
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