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颅骨和颊腔的异速生长增加了灰鲸的单位质量吞噬能力。

Skull and buccal cavity allometry increase mass-specific engulfment capacity in fin whales.

机构信息

Department of Zoology, University of British Columbia, 6270 University Boulevard, Vancouver, British Columbia, Canada.

出版信息

Proc Biol Sci. 2010 Mar 22;277(1683):861-8. doi: 10.1098/rspb.2009.1680. Epub 2009 Nov 25.

Abstract

Rorqual whales (Balaenopteridae) represent not only some of the largest animals of all time, but also exhibit a wide range in intraspecific and interspecific body size. Balaenopterids are characterized by their extreme lunge-feeding behaviour, a dynamic process that involves the engulfment of a large volume of prey-laden water at a high energetic cost. To investigate the consequences of scale and morphology on lunge-feeding performance, we determined allometric equations for fin whale body dimensions and engulfment capacity. Our analysis demonstrates that larger fin whales have larger skulls and larger buccal cavities relative to body size. Together, these data suggest that engulfment volume is also allometric, increasing with body length as L(3.5)(body). The positive allometry of the skull is accompanied by negative allometry in the tail region. The relative shortening of the tail may represent a trade-off for investing all growth-related resources in the anterior region of the body. Although enhanced engulfment volume will increase foraging efficiency, the work (energy) required to accelerate the engulfed water mass during engulfment will be relatively higher in larger rorquals. If the mass-specific energetic cost of a lunge increases with body size, it will have major consequences for rorqual foraging ecology and evolution.

摘要

弓头鲸(Balaenopteridae)不仅是有史以来体型最大的动物之一,而且在种内和种间的体型大小上也表现出广泛的差异。弓头鲸的特征是其极端的“突刺式进食行为”,这是一个涉及以高能量成本大量吞入富含猎物的水的动态过程。为了研究体型和形态对突刺式进食性能的影响,我们确定了长须鲸身体尺寸和吞入量的比例方程。我们的分析表明,相对于体型而言,较大的长须鲸具有更大的头骨和更大的口腔。这些数据表明,吞入量也是比例的,随着体长的增加而呈 L(3.5)(体)的比例增加。头骨的正比例生长伴随着尾部的负比例生长。尾部的相对缩短可能代表了一种权衡,即将所有与生长相关的资源投资于身体的前部区域。虽然增加吞入量会提高觅食效率,但在吞入过程中加速吞入的水质量所需的功(能量)在较大的须鲸中相对较高。如果突刺式吞咽的每体质量能量成本随体型增大而增加,那么这将对须鲸的觅食生态和进化产生重大影响。

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