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Off-grid: solar powered LED illumination impacts epigeal arthropods

机译:离网:太阳能LED照明影响因子节肢动物

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Advances in LED technology combined with solar, storable energy bring light to places remote from electricity grids. Worldwide more than 1.3 billion of people are living off-grid, often in developing regions of high insect biodiversity. In developed countries, dark refuges for wildlife are threatened by ornamental garden lights. Solar powered LEDs (SPLEDs) are cheaply available, dim, and often used to illuminate foot paths, but little is known on their effects on ground living (epigeal) arthropods. We used off-the-shelf garden lamps with a single 'white' LED (colour temperature 7250 K) to experimentally investigate effects on attraction and nocturnal activity of ground beetles (Carabidae). We found two disparate and species-specific effects of SPLEDs. (i) Some nocturnal, phototactic species were not reducing activity under illumination and were strongly attracted to lamps (&20-fold increase in captures compared to dark controls). Such species aggregate in lit areas and SPLEDs may become ecological traps, while the species is drawn from nearby, unlit assemblages. (ii) Other nocturnal species were reducing mobility and activity under illumination without being attracted to light, which may cause fitness reduction in lit areas. Both reactions offer mechanistic explanations on how outdoor illumination can change population densities of specific predatory arthropods, which may have cascading effects on epigeal arthropod assemblages. The technology may thus increase the area of artificial light at night (ALAN) impacting insect biodiversity. Measures are needed to mitigate effects, such as adjustment of light colour temperature and automated switch-offs.
机译:LED技术的进步与太阳能相结合,可储存能量带来光线远离电网的地方。全球超过13亿人在普遍存在的高昆虫生物多样性的发展区域。在发达国家,野生动物的黑暗避难所受到观赏庭院灯的威胁。太阳能LED(SPLEDS)是廉价的,暗淡,经常用于照亮脚道,但对其对地面生活(外形)节肢动物的影响很少。我们使用了带有单个“白色”LED(色温7250 k)的货架上的花园灯来实验研究了地甲虫(Carabidae)的吸引力和夜间活动。我们发现了两个不同的分配物种的分割效果。 (i)一些夜间的光或斑块物种在照明下没有减少活性,并且强烈地吸引到灯泡(& 捕获的20倍,与暗管相比)。这种物种在点亮区域和分配中可以成为生态陷阱,而这些物种是从附近的,und und组件中抽出的。 (ii)其他夜间物种在照明下减少迁移率和活性而不被吸引,这可能导致亮度降低。两种反应都提供了关于户外照明如何改变特定捕食性节肢动物的群体密度的机械解释,这可能对外形节肢动物组合具有级联作用。因此,该技术可以在夜间(ALAN)影响昆虫生物多样性的人造光面积增加。需要测量效果,例如浅色温度和自动关断的调整。

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