Mussel larval responses to turbulence are unaltered by larval age or light conditions

Heidi L. Fuchs, Claudio DiBacco
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引用次数: 32

Abstract

Larval responses to hydromechanical cues potentially have important effects on larval dispersal and settlement. This study examined the behavior of mussel larvae (Mytilus edulis) in laboratory-generated turbulence representative of nearshore currents. We video recorded the behavior of early- and late-stage veligers in a grid-stirred tank at five turbulence levels under light and dark conditions. Water velocities and kinetic energy dissipation rates were measured using particle image velocimetry and acoustic Doppler velocimetry. We characterized the vertical velocity distributions for sinking, hovering, and swimming modes in still water and calculated the average larval behavioral velocity in turbulence. In still water, young larvae had more positive (upward) velocities than old larvae, and both stages had more positive velocities in light than in dark. In turbulence, the mean larval vertical velocity varied from positive at low dissipation rates to negative at dissipation rates above a threshold of 8.3 × 10 − 2 cm2 s − 3. At this threshold, the Kolmogorov length scale (η = 590 μm) was two to three times the mean larval shell lengths (171–256 μm), implying that turbulence is detectable even by larvae that are smaller than the smallest eddies. Responses to turbulence were unaffected by larval age or light conditions and contributed substantial behavioral variation. By sinking in strong turbulence, mussel larvae could increase their flux to the bed in energetic coastal flows, particularly over rough substrates like mussel beds. The response to turbulence by early-stage larvae will also affect their dispersal and may help larvae remain near coastal populations.

Abstract Image

贻贝幼虫对湍流的反应不受幼虫年龄或光照条件的影响
幼虫对流体机械线索的反应可能对幼虫的扩散和定居有重要影响。本研究考察了贻贝幼虫(Mytilus edulis)在实验室产生的具有代表性的近岸流湍流中的行为。我们在一个网格搅拌槽中,在光照和黑暗条件下,记录了五种湍流水平下,早期和晚期veligers的行为。用粒子图像测速和声波多普勒测速测量了水流速度和动能耗散率。研究了静水中下沉、悬停和游动模式的垂直速度分布,并计算了湍流中幼虫的平均行为速度。在静水中,幼鱼的正(向上)速度大于老鱼,且两个阶段在光照条件下的正速度均大于黑暗条件下。在湍流中,平均幼虫垂直速度在低耗散率下为正,在耗散率超过8.3 × 10−2 cm2 s−3阈值时为负。在这个阈值下,Kolmogorov长度尺度(η = 590 μm)是幼虫平均壳长(171 ~ 256 μm)的2 ~ 3倍,这意味着即使比最小涡流小的幼虫也能探测到湍流。对湍流的反应不受幼虫年龄或光照条件的影响,并导致了大量的行为变化。通过在强湍流中下沉,贻贝幼虫可以增加它们在高能海岸流中的通量,特别是在粗糙的基材上,如贻贝床。早期幼虫对湍流的反应也会影响它们的扩散,并可能帮助幼虫留在沿海种群附近。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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