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Ultrastructure and dispersal potential of sponge larvae: tufted versus evenly ciliated parenchymellae

机译:海绵幼虫的超微结构和扩散潜能:簇状和均匀纤毛的薄壁组织

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In this work we analyse the ultrastructure and behaviour of two representative types of parenchymella sponge larvae: the evenly ciliated larva of Scopalina lop-hyropoda, and the tufted larva of Cacospongia mollior. We sought to find correlates of the dispersal abilities and distribution patterns of these species. Laboratory experiments were performed under two different conditions of water movement (still water and a slight oscillatory movement), and at different times of the larval life-span. Larvae of S. lophyropoda were motionless most of the time, maintaining a vertical posture and rotating on their main axis, and they did not respond to directional light. Larvae of C. mollior were active swimmers that responded negatively to light stimuli. In both cases, movement decreased as the larval age increased. Ultrastructurally, C. mollior larvae were more compact, with more reserves and abundant collagen bundles. Desmosome-like structures were seen connecting the apical parts of the ciliated surface in both species. Two different types of putative light-sensitive structures were found. Both structural and behavioural characteristics favour a greater dispersal capability for C. mollior and a philopatric dispersal mode for S. lophyropoda. These predictions are in agreement with the observed ecological distribution of the species.
机译:在这项工作中,我们分析了两种代表性的薄壁薄壁组织海绵幼虫的超微结构和行为:Scopalina lop-hyropoda的均匀纤毛幼虫和Cacospongia mollior的簇状幼虫。我们试图找到这些物种的分散能力和分布模式的相关性。实验室实验是在两种不同的水分运动条件(静止水和轻微的振荡运动)下以及幼虫寿命的不同时间进行的。肺吸链球菌的幼虫大部分时间都静止不动,保持垂直姿势并在主轴上旋转,并且对定向光没有反应。 C. mollior的幼虫是活跃的游泳者,对轻刺激产生负面反应。在这两种情况下,随着幼虫年龄的增加,运动减少。在超微结构中,毛囊衣藻幼虫更紧凑,具有更多的储备和丰富的胶原束。在两个物种中都看到了桥状结构,连接了纤毛表面的顶端部分。发现了两种不同类型的假定的光敏结构。结构特征和行为特征都有利于对毛囊梭菌具有更大的分散能力,并有利于对葡萄球菌的消散。这些预测与观察到的物种生态分布相符。

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