Biology Department, Georgia Southern University, Statesboro, Georgia, United States of America.
Friday Harbor Laboratories, University of Washington, Friday Harbor, Washington, United States of America.
PLoS One. 2019 Mar 14;14(3):e0213803. doi: 10.1371/journal.pone.0213803. eCollection 2019.
Larval swimming with cilia, unaided by muscles, is the presumed ancestral condition for echinoderms, but use of muscles in swimming has evolved several times. Ciliation and musculature of the arms of brachiolaria-stage larvae in the family Asteriidae provide unusual versatility in the use of muscles in swimming. The muscles affect swimming in two different ways. (1) Contraction of muscles moves the arms, propelling the larva. (2) Contraction of muscles changes orientation of the arms, thereby changing direction of ciliary currents and direction of swimming. New observations of the brachiolaria of the asteriid seastar Pisaster ochraceus demonstrate more versatility in both of these uses of muscles than had been previously described: the posterolateral arms stroke in more ways to propel the larva forward and to change the direction of swimming, and more pairs of the arms point ciliary currents in more directions for changes in direction of swimming. Morphology of brachiolariae suggests that these uses of muscles in swimming evolved before divergence of the families Stichasteridae and Asteriidae within forcipulate asteroids. This versatile use of muscles for swimming, both alone and in combination with ciliary currents, further distinguishes the swimming of these brachiolariae from swimming by larvae of other echinoderms and larvae of acorn worms in the sister phylum Hemichordata.
幼虫在没有肌肉帮助的情况下通过纤毛游动,这被认为是棘皮动物的原始状态,但在游泳中使用肌肉已经进化了多次。在海星科(Asteriidae)的短腕幼虫阶段的幼虫的臂部中,纤毛和肌肉的使用提供了在游泳中使用肌肉的非凡多功能性。肌肉以两种不同的方式影响游泳。(1)肌肉的收缩会移动手臂,推动幼虫。(2)肌肉的收缩改变了手臂的方向,从而改变了纤毛流的方向和游泳的方向。对棘皮动物海星 Pisaster ochraceus 的短腕幼虫的新观察表明,在这两种肌肉的使用方式中,比以前描述的更加灵活:后外侧臂以更多的方式划动,以推动幼虫前进和改变游泳方向,更多的臂对指向更多的纤毛流方向,以改变游泳方向。短腕幼虫的形态表明,在有柄海星类中的 Stichasteridae 和 Asteriidae 家族分化之前,这些游泳肌肉的使用就已经进化了。这种游泳时肌肉的多功能性的使用,无论是单独使用还是与纤毛流结合使用,都进一步将这些短腕幼虫的游泳方式与其他棘皮动物幼虫和半索动物门的柄海鞘幼虫的游泳方式区分开来。