首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Precise tuning of barnacle leg length to coastal wave action.
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Precise tuning of barnacle leg length to coastal wave action.

机译:精确调节藤壶腿长以适应海浪作用。

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摘要

Both spatial and temporal variation in environmental conditions can favour intraspecific plasticity in animal form. But how precise is such environmental modulation? Individual Balanus glandula Darwin, a common northeastern Pacific barnacle, produce longer feeding legs in still water than in moving water. We report here that, on the west coast of Vancouver Island, Canada, the magnitude and the precision of this phenotypic variation is impressive. First, the feeding legs of barnacles from protected bays were nearly twice as long (for the same body mass) as those from open ocean shores. Second, leg length varied surprisingly precisely with wave exposure: the average maximum velocities of breaking waves recorded in situ explained 95.6-99.5% of the variation in average leg length observed over a threefold range of wave exposure. The decline in leg length with increasing wave action was less than predicted due to simple scaling, perhaps due to changes in leg shape or material properties. Nonetheless, the precision of this relationship reveals a remarkably close coupling between growth environment and adult form, and suggests that between-population differences in barnacle leg length may be used for estimating differences in average wave exposure easily and accurately in studies of coastal ecology.
机译:环境条件的时空变化均可促进动物形式的种内可塑性。但是这种环境调制有多精确?东北太平洋常见的藤壶Balanus glandula Darwin在静止的水中比在运动的水中产生更长的觅食腿。我们在这里报告,在加拿大温哥华岛的西海岸,这种表型变异的强度和精确度令人印象深刻。首先,来自受保护海湾的藤壶的喂养腿(对于相同的体重)的长度几乎是来自开阔海域的藤壶的两倍。其次,腿长随波曝光而精确地变化:原位记录的碎波的平均最大速度解释了在三倍波曝光范围内观察到的平均腿长变化的95.6-99.5%。由于简单的缩放,可能是由于腿部形状或材料特性的变化,随着波浪作用的增加,腿部长度的下降小于预期。但是,这种关系的精确性揭示了生长环境与成年形态之间的紧密联系,并表明在沿海生态学研究中,藤壶腿长的种群间差异可用于轻松,准确地估计平均波浪暴露差异。

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