首页> 外文期刊>Biological Journal of the Linnean Society >Escape dynamics of free-ranging desert kangaroo rats (Rodentia: Heteromyidae) evading rattlesnake strikes
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Escape dynamics of free-ranging desert kangaroo rats (Rodentia: Heteromyidae) evading rattlesnake strikes

机译:逃避自由范围的沙漠袋鼠大鼠(罗汀:异育)逃避响尾蛇罢工的动态

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Many animals exhibit morphological specializations driven by the extreme selective pressure of predation, and understanding how such specializations shape escape behaviours can elucidate the evolutionary context of these morphologies. We examined the kinematics of the evasive leaps of desert kangaroo rats (Dipodomys deserti) during strikes from sidewinder rattlesnakes (Crotalus cerastes) to understand the potential importance of predator evasion in shaping bipedalism in desert rodents. We found that kangaroo rats escaping from snake strikes relied on rapid response times to initiate effective evasions. During jumps, their enlarged hindlimbs propelled vertical leaps that were multiple body lengths into the air, and these leaps were often accompanied by mid-air kicks and other manoeuvres that deterred snakes. Although we found high levels of variability in kinematic factors, all kangaroo rats that successfully evaded attacks escaped in a path away from the snake and thus did not have random/protean escape trajectories. In general, our findings support the idea that bipedalism, which has evolved independently in several desert rodent lineages, might be favoured because it allows for rapid and powerful vertical leaps that are crucial for avoiding ambush predators, such as vipers and owls.
机译:许多动物表现出由极端选择性的捕食压力驱动的形态学专业,并了解这种专业逃生行为如何阐明这些形态的进化背景。我们研究了Sidewinder RattleNakes(Crotalus Celastes)的罢工期间突击沙漠袋鼠大鼠(Dipodomys deserti)的日志动系的运动学,以了解捕食者逃避在沙漠啮齿动物中塑造捕食者逃避的潜在重要性。我们发现袋鼠大鼠从蛇罢工逃脱依靠快速响应时间来启动有效的脱量。在跳跃期间,它们的扩大后线虫推进垂直跳跃,垂直跳跃进入空气中,这些跳跃通常伴随着中空踢球和其他阻止蛇的运动员。虽然我们在运动因素中发现了高水平的变化,但所有成功逃避袭击的袋鼠大鼠都在远离蛇的路径中逃脱,因此没有随机/抗议逃逸轨迹。一般而言,我们的研究结果支持了与几个沙漠啮齿动物谱系统独立进化的BipEdaLism可能受到青睐,因为它允许避免避免伏击捕食者,例如Vipers和OWL。

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