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Nest initiation and flooding in response to season and semi-lunar spring tides in a ground-nesting shorebird

机译:巢起动和洪水响应季节和半月春潮汐在地面嵌套岸边鸟

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Marine and intertidal organisms face the rhythmic environmental changes induced by tides. The large amplitude of spring tides that occur around full and new moon may threaten nests of ground-nesting birds. These birds face a trade-off between ensuring nest safety from tidal flooding and nesting near the waterline to provide their newly hatched offspring with suitable foraging opportunities. The semi-lunar periodicity of spring tides may enable birds to schedule nest initiation adaptively, for example, by initiating nests around tidal peaks when the water line reaches the farthest into the intertidal habitat. We examined the impact of semi-lunar tidal changes on the phenology of nest flooding and nest initiation in Snowy Plovers (Charadrius nivosus) breeding at Bahía de Ceuta, a coastal wetland in Northwest Mexico. Using nest initiations and fates of 752 nests monitored over ten years we found that the laying season coincides with the lowest spring tides of the year and only 6% of all nests were flooded by tides. Tidal nest flooding varied substantially over time. First, flooding was the primary cause of nest failures in two of the ten seasons indicating high between-season stochasticity. Second, nests were flooded almost exclusively during the second half of the laying season. Third, nest flooding was associated with the semi-lunar spring tide cycle as nests initiated around spring tide had a lower risk of being flooded than nests initiated at other times. Following the spring tide rhythm, plovers appeared to adapt to this risk of flooding with nest initiation rates highest around spring tides and lowest around neap tides. Snowy Plovers appear generally well adapted to the risk of nest flooding by spring tides. Our results are in line with other studies showing that intertidal organisms have evolved adaptive responses to predictable rhythmic tidal changes but these adaptations do not prevent occasional catastrophic losses caused by stochastic events.
机译:海洋和跨透视生物面临潮汐诱导的节奏环境变化。全新的月亮周围发生的春潮的大幅度可能会威胁筑巢鸟类的巢穴。这些鸟类在确保从水线附近的潮汐洪水和嵌套筑巢之间面临权衡,以提供他们的新孵化的后代,以适当的觅食机会。弹簧潮汐的半月形周期性可以使鸟类能够自适应地安排巢开始,例如,当水线到达潮汐栖息地时启动潮汐周围的巢穴。我们研究了半月球潮汐变化对墨西哥沿海湿地BahíadeCeuta的鸟类洪水和巢型饮种的鸟类洪水和巢起动的影响。在十年内监控的752个巢穴的巢初和命中率我们发现,铺设季节与年度最低的春季潮汐吻合,只有6%的鸟类被潮汐淹没。潮汐巢洪水大幅度随着时间而变化。首先,洪水是巢失败的主要原因,其中两个季节中的两个季节表现出季节性瞬间高度。其次,在铺设季节的下半场,巢穴几乎完全被淹没。第三,巢洪水与半月春潮周期相关联,因为在春报周围发起的巢穴的巢穴的风险较低,而不是在其他时间发起的巢穴。在春潮节奏之后,Plovers似乎适应丛林潮流最高的灌溉速度的这种风险,并在NeAP潮汐周围最低。斯诺伊普遍普遍适应春天潮汐灌溉灌溉的风险。我们的结果符合其他研究表明,透模生物已经进化了对可预测节奏潮汐变化的适应性反应,但这些适应性不会阻止由随机事件引起的偶尔灾难性损失。

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