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Artificial light on water attracts turtle hatchlings during their near shore transit

机译:水上的人造光在靠近岸边运输过程中吸引了乌龟幼龟

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摘要

We examined the effect of artificial light on the near shore trajectories of turtle hatchlings dispersing from natal beaches. Green turtle (Chelonia mydas) hatchlings were tagged with miniature acoustic transmitters and their movements tracked within an underwater array of 36 acoustic receivers placed in the near shore zone. A total of 40 hatchlings were tracked, 20 of which were subjected to artificial light during their transit of the array. At the same time, we measured current speed and direction, which were highly variable within and between experimental nights and treatments. Artificial lighting affected hatchling behaviour, with 88% of individual trajectories oriented towards the light and spending, on average, 23% more time in the 2.25 ha tracking array (19.5 ± 5 min) than under ambient light conditions (15.8 ± 5 min). Current speed had little to no effect on the bearing (angular direction) of the hatchling tracks when artificial light was present, but under ambient conditions it influenced the bearing of the tracks when current direction was offshore and above speeds of approximately 32.5 cm s−1. This is the first experimental evidence that wild turtle hatchlings are attracted to artificial light after entering the ocean, a behaviour that is likely to subject them to greater risk of predation. The experimental protocol described in this study can be used to assess the effect of anthropogenic (light pollution, noise, etc.) and natural (wave action, current, wind, moonlight) influences on the in-water movements of sea turtle hatchlings during the early phase of dispersal.
机译:我们研究了人造光对自然海滩分散的龟龟近岸轨迹的影响。绿龟(Chelonia Mydas)幼龟被标记为带有微型声音发射器的标记及其在位于靠近岸区的36个声学接收器的水下阵列内跟踪。跟踪了总共40个幼龟,其中20个在其阵列的过境过程中受到人造光。同时,我们测量了当前速度和方向,在实验夜和治疗中具有高度变化。人工灯光影响了孵化行为,88%的个体轨迹面向光线和支出,平均而言,在2.25公顷的追踪阵列(19.5±5分钟)下比环境光条件下的23%更多的时间(15.8±5分钟)。当人造光存在时,电流速度几乎没有对孵化轨道的轴承(角度方向)没有影响,但在环境条件下,当电流方向近上和高于约32.5cm S-1的速度时,它影响轨道的轴承。这是第一个实验证据,即在进入海洋后,野龟孵化器被人造光所吸引,这种行为可能将它们受到更大的捕食风险。本研究中描述的实验方案可用于评估人为(光污染,噪声等)和自然(波动,电流,风,月光)对海龟幼龟水中运动的影响分散的早期阶段。

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