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首页> 外文期刊>Marine ecology >Changes in vertical distribution and aggregative behaviour in response to population density for larval sea urchins (Strongylocentrotus droebachiensis) and sea stars (Asterias rubens)
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Changes in vertical distribution and aggregative behaviour in response to population density for larval sea urchins (Strongylocentrotus droebachiensis) and sea stars (Asterias rubens)

机译:幼虫海胆(Strongylocentrotus droebachiensis)和海星(Asterias rubens)的种群密度响应垂直分布和聚集行为的变化

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摘要

We examined the effects of the presence of larval conspecifics on larval vertical distribution of four-arm and six-arm plutei of Strongylocentrotus droebachiensis and bipinnaria of Asterias rubens, in laboratory experiments, by manipulating population density. Larvae were introduced to experimental columns (10 × 10 × 30 cm) at one of two or three population densities (S. droebachiensis: 0.1 and 10 larvae·ml~(-1); A. rubens: 0.1, 1 and 10 larvae·ml~(-1)). Subsequent changes in vertical distribution were determined from images of the larvae in the columns illuminated by a 532-nm laser and captured by a high-resolution camera. Larvae of both species were found higher in the water column in the high than in the low and intermediate population densities. The relationship between vertical swimming velocity and nearest neighbour distance (NND) was measured for four-arm plutei of S. droebachiensis, and used to determine a range in distances among individuals that may affect potential interactions. The variation in swimming velocity decreased with increasing proximity below a threshold distance among individuals of 10 mm, which was greater than the estimated distance in the high population density. We suggest that the increased larval aggregation near the water surface under high population density is the result of a behavioural response to conspecifics.
机译:在实验室实验中,我们通过控制种群密度,研究了幼虫特定物种对四臂和六臂德氏支原体轮虫和红孢双孢子虫幼虫垂直分布的影响。以两种或三种种群密度之一(S. droebachiensis:0.1和10幼虫·ml〜(-1); A。rubens:0.1、1和10幼虫·)将幼虫引入实验柱(10×10×30 cm)。 ml〜(-1))。垂直分布的后续变化是由532 nm激光照射并由高分辨率相机捕获的幼虫图像确定的。在高水位时,发现这两个物种的幼虫都比在中低密度时高。测量了droebachiensis的四臂琵琶鱼的垂直游泳速度和最近邻居距离(NND)之间的关系,并用于确定个体之间距离的范围,该距离可能影响潜在的相互作用。游泳速度的变化随着在10 mm个体之间的阈值距离以下接近度的增加而减小,这大于高人口密度下的估计距离。我们建议,在高种群密度下,水表面附近幼虫聚集的增加是对物种的行为反应的结果。

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