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无脊椎动物幼虫对溶解的附着线索的快速行为反应。

Rapid behavioral responses of an invertebrate larva to dissolved settlement cue.

作者信息

Hadfield Michael G, Koehl M A R

机构信息

Kewalo Marine Laboratory, University of Hawaii, 41 Ahui St., Honolulu, Hawaii 96813, USA.

出版信息

Biol Bull. 2004 Aug;207(1):28-43. doi: 10.2307/1543626.

Abstract

Larvae of the nudibranch Phestilla sibogae were used to study whether a natural dissolved settlement cue (from their prey, Porites compressa, an abundant coral on Hawaiian reefs) induces behavioral responses that can affect larval transport to suitable settlement sites. As cue and larvae are mixed in the turbulent flow over a reef, cue is distributed in fine-scale filaments that the larva experiences as rapid (seconds) on/off encounters. To examine larval responses in this setting, individual larvae were tethered in a small flume with flow simulating water velocity relative to a freely swimming larva, and their responses to realistic temporal patterns of cue encounter were videotaped. Competent larvae quickly ceased swimming in cue filaments and resumed swimming after exiting filaments. The threshold cue concentration eliciting a response was 3%-17% of concentrations within heads of P. compressa in nature. When moving freely in filtered seawater, competent larvae swam along straight paths in all directions at approximately 0.2 cm s(-1), whereas in water conditioned by P. compressa, most ceased swimming and sank at approximately 0.1 cm s(-1). The ability of larvae to rapidly respond (by sinking) to brief encounters with dissolved settlement cues can enhance their rapid transport to the substratum, even in wave-driven turbulent flow.

摘要

裸鳃亚目动物西博加多彩海牛的幼虫被用于研究一种天然的溶解性附着线索(来自其猎物——夏威夷珊瑚礁上数量丰富的扁缩滨珊瑚)是否会引发行为反应,进而影响幼虫向适宜附着地点的迁移。由于线索和幼虫在珊瑚礁上方的湍流中混合,线索会分布成细尺度的细丝,幼虫会在数秒内快速经历这些细丝的出现和消失。为了研究幼虫在这种情况下的反应,将单个幼虫系在一个小型水槽中,水流模拟相对于自由游动幼虫的水流速度,并拍摄它们对真实线索接触时间模式的反应。具备附着能力的幼虫在遇到线索细丝时会迅速停止游动,离开细丝后又恢复游动。引发反应的线索浓度阈值为自然界中扁缩滨珊瑚虫黄藻内浓度的3% - 17%。在过滤后的海水中自由游动时,具备附着能力的幼虫以约0.2厘米/秒的速度沿各个方向直线游动,而在经扁缩滨珊瑚处理过的水中,大多数幼虫停止游动并以约0.1厘米/秒的速度下沉。幼虫对溶解性附着线索短暂接触做出快速反应(通过下沉)的能力,即使在波浪驱动的湍流中,也能增强它们向基质的快速迁移。

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