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首页> 外文期刊>The Biological Bulletin >Cirripede Cypris Antennules: How Much Structural Variation Exists Among Balanomorphan Species from Hard-Bottom Habitats?
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Cirripede Cypris Antennules: How Much Structural Variation Exists Among Balanomorphan Species from Hard-Bottom Habitats?

机译:Cirripede Cypris天伦(Sill-Botth-Batht-Batht-Ballancorphan)中存在多少结构变异?

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Barnacle cypris antennules are important for substratum attachment during settlement and on through metamorphosis from the larval stage to sessile adult. Studies on the morphology of cirripede cyprids are mostly qualitative, based on descriptions from images obtained using a scanning electron microscope (SEM). To our knowledge, our study is the first to use scanning electron microscopy to quantify overall structural diversity in cypris antennules by measuring 26 morphological parameters, including the structure of sensory organs. We analyzed cyprids from seven species of balanomorphan barnacles inhabiting rocky shore communities; for comparison, we also included a sponge-inhabiting balanomorphan and a verrucomorphan species. Multivariate analysis of the structural parameters resulted in two distinct clusters of species. From nonmetric multidimensional scaling plots, the sponge-inhabiting Balanus spongicola and Verruca stroemia formed one cluster, while the other balanomorphan species, all from hard bottoms, grouped together in the other cluster. The shape of the attachment disk on segment 3 is the key parameter responsible for the separation into two clusters. The present results show that species from a coastal hard-bottom habitat may share a nearly identical antennular structure that is distinct from barnacles from other habitats, and this finding supports the fact that such species also have rather similar reactions to substratum cues during settlement. Any differences that may be found in settlement biology among such speciesmust therefore be due either to differences in the properties of their adhesive mechanisms or to theway that sensory stimuli are detected by virtually identical setae and processed into settlement behavior by the cyprid.
机译:晶片Cypris天线对于沉降期间的亚样品附着和通过从幼虫阶段到无梗成人的变态来重要。基于使用扫描电子显微镜(SEM)获得的图像的描述,基于从使用图像获得的图像的描述,对Cyprids的形态主要是定性的。据我们所知,我们的研究是首先使用扫描电子显微镜通过测量26个形态参数来量化Cypris天长的整体结构多样性,包括感觉器器官的结构。我们分析了居住于岩石岸社区的七种Balanomorphan雄鹿的胞质胞垛;相比之下,我们还包括海绵栖息的巴兰甲烷和疣状物种。结构参数的多变量分析导致两个不同的物种簇。从非微量多维缩放图中,海绵栖息地植物骨囊和疣状运动症形成了一簇,而另一个巴兰甲烷种类,所有来自硬底,在另一个簇中组合在一起。段3上的附件盘的形状是负责分离成两个簇的关键参数。目前的结果表明,来自沿海硬底栖栖息地的物种可以共享与其他栖息地不同的藤内的近似相同的抗腹结构,并且该发现支持这样的事实,即这种物种在沉降期间这些物种也具有相当类似的对底层线索的反应。因此,在这些物质堡垒中可以在沉降生物学中发现的任何差异是由于其粘合机制的性质的差异,或者到几乎相同的血管检测到感官刺激并由胞质中加工成塞族体的沉降行为。

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