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首页> 外文期刊>Journal of Zoology >Kinematics of waterfall climbing in Hawaiian freshwater fishes (Goblidae): vertical propulsion at the aquatic-terrestrial interface
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Kinematics of waterfall climbing in Hawaiian freshwater fishes (Goblidae): vertical propulsion at the aquatic-terrestrial interface

机译:夏威夷淡水鱼类(哥布达科)瀑布运动的运动学:水陆界面的垂直推进

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摘要

To reach adult habitats, juveniles of three species of Hawaiian gobies (fishes under 3 cm long) climb waterfalls up to 350 m high, over 10 000 times their body length. The demands of moving through such an extreme environment could constrain the range of viable locomotor mechanisms that these fishes use. Previous qualitative observations indicated that Lentipes concolor and Awaous guamensis use 'powerbursts' of axial undulation to climb, whereas Sicyopterus stimpsoni 'inches up' vertical surfaces by alternately attaching oral and pelvic suckers to the substrate. To compare these propulsive mechanisms and their physiological requirements, high-speed video footage of climbing by juveniles from these three species on an artificial waterfall were collected, and climbing kinematics and performance for the two climbing styles were quantified. Bouts of powerburst climbing by L. concolor and A. guamensis typically begin in or near direct water flow and are initiated by a single, rapid adduction of the pectoral fins. Powerburst climbing bouts are rapid (12.4 +/- 1.0 body lengths (BL) s(-1)), but short in duration (0.07 +/- 0.02 s) with few continuous locomotor cycles (3.8 +/- 1.3 cycles bout(-1)). Powerburst climbers use high amplitude undulations along the entire body, but minimum resultant velocities of these undulations are high (>6 BL s(-1)). This suggests that these species may hybridize terrestrial propulsive mechanisms with aquatic mechanisms. In contrast, climbing by inching in S. stimpsoni involves little axial undulation or fin movement. Sicyopterus stimpsoni typically exit the water outside of direct flow and seem to use terrestrial propulsive mechanisms. As the oral disc attaches to the substrate, it expands to almost twice its resting area, after which the posterior body is pulled upwards; once the pelvic disc attaches, the oral disc releases and the anterior body advances. Climbing bouts include several continuous cycles of disc attachment (11.0 +/- 1.4 cycles bout(-1)) and last several seconds at velocities of 0.21 +/- 0.01 BL s(-1). Before climbing waterfalls during migration to adult habitats, S. stimpsoni undergo a non-feeding metamorphosis that leads to the development of the mouth as a secondary locomotor organ. The unusual behaviour and ontogenetic strategy of S. stimpsoni seem to be evolutionary novelties, rather than ancestral retentions, suggesting that the evolution of these features may have been closely correlated. The substantial performance and kinematic distinctions between powerburst and inching climbing indicate that considerable locomotor diversity can evolve even in the context of extreme environmental demands.
机译:为了到达成年栖息地,三种虾虎鱼(长3厘米以下的鱼)的幼体爬上高达350 m的瀑布,是其体长的10000倍。在这样的极端环境中移动的需求可能会限制这些鱼类使用的可行运动机制的范围。先前的定性观察表明,连色连翘和Awaous guamensis使用轴向起伏的“爆发力”进行爬升,而Sicyopterus stimpsoni通过将口腔吸盘和骨盆吸盘交替安装在基底上,从而“拉高”了垂直表面。为了比较这些推进机制及其生理要求,收集了在人工瀑布上由这三个物种进行的少年攀爬的高速录像,并对两种攀爬方式的攀爬运动学和性能进行了量化。康氏乳杆菌和拟南芥A. guamensis的爆发力爆发通常在直接水流中或附近开始,并由一次快速的胸鳍内收引起。 Powerburst攀爬动作快速(12.4 +/- 1.0体长(BL)s(-1)),但持续时间短(0.07 +/- 0.02 s),连续运动周期很少(3.8 +/- 1.3周期,bout(- 1))。 Powerburst登山者在整个身体上使用高振幅起伏,但这些起伏的最小合成速度很高(> 6 BL s(-1))。这表明这些物种可能将陆地推进机制与水生机制杂交。相比之下,通过在丁香链霉菌中进行点动攀爬几乎不会引起轴向起伏或鳍状运动。短鳍金枪鱼通常在直流水以外的地方流出水,似乎使用了地面推进机制。当口腔椎间盘附着在基底上时,其膨胀到其静息区的几乎两倍,之后将后身向上拉;一旦骨盆盘附着,口腔盘就会释放,前身前进。爬升动作包括数个连续的椎间盘附着周期(11.0 +/- 1.4个周期bout(-1)),并以0.21 +/- 0.01 BL s(-1)的速度持续几秒钟。在迁移到成年栖息地期间攀登瀑布之前,S。stimpsoni经历了非摄食性变态,导致嘴部发育为次要运动器官。 Stimpsoni的异常行为和个体发育策略似乎是进化的新奇事物,而不是祖先的留,这表明这些特征的进化可能已经密切相关。动力爆发和微动爬升之间的显着性能和运动学区别表明,即使在极端环境需求的情况下,运动能力的多样性仍可能会演变。

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