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俄勒冈招潮蟹(Hemigrapsus oregonensis)嗅觉触角的个体发育缩放及轻弹行为

Ontogenetic scaling of the olfactory antennae and flicking behavior of the shore crab, Hemigrapsus oregonensis.

作者信息

Waldrop Lindsay D

机构信息

Department of Mathematics, University of North Carolina at Chapel Hill, CB#3420, Chapel Hill, NC, USA.

出版信息

Chem Senses. 2013 Jul;38(6):541-50. doi: 10.1093/chemse/bjt024. Epub 2013 Jun 11.

Abstract

Malacostracan crustaceans such as crabs flick antennae with arrays of olfactory sensilla called aesthetascs through the water to sense odors. Flicking by crabs consists of a quick downstroke, in which aesthetascs are deflected laterally (splayed), and a slower, reversed return stroke, in which aesthetascs clump together. This motion causes water to be flushed within and then held in between aesthetascs to deliver odor molecules to olfactory receptors. Although this odor sampling method relies on a narrow range of speeds, sizes, and specific arrangements of aesthetascs, most crabs dramatically change these during ontogeny. In this study, the morphometrics of the aesthetascs, array, and antennae and the flicking kinematics of the Oregon shore crab, Hemigrapsus oregonensis (Decapoda: Brachyura), are examined to determine their scaling relationships during ontogeny. The morphometrics of the array and antennae increase more slowly than would be predicted by isometry. Juvenile crabs' aesthetascs splay relatively further apart than adults, likely due to changing material properties of aesthetasc cuticle during growth. These results suggest that disproportionate growth and altered aesthetasc splay during flicking will mediate the size changes due to growth that would otherwise lead to a loss of function.

摘要

诸如螃蟹之类的软甲亚纲甲壳动物通过在水中摆动带有称为嗅觉刚毛阵列的触角来感知气味。螃蟹的摆动由一个快速的向下冲程组成,在此冲程中嗅觉刚毛向侧面偏转(展开),以及一个较慢的、反向的返回冲程,在此冲程中嗅觉刚毛聚集在一起。这种运动使水在嗅觉刚毛内部被冲洗,然后被保持在嗅觉刚毛之间,以将气味分子传递给嗅觉感受器。尽管这种气味采样方法依赖于嗅觉刚毛的速度、大小和特定排列的狭窄范围,但大多数螃蟹在个体发育过程中会显著改变这些特征。在本研究中,对俄勒冈滨蟹(Hemigrapsus oregonensis,十足目:短尾亚目)的嗅觉刚毛、阵列和触角的形态测量以及摆动运动学进行了研究,以确定它们在个体发育过程中的比例关系。阵列和触角的形态测量增长速度比等比缩放预测的要慢。幼年螃蟹的嗅觉刚毛展开相对比成年螃蟹更远,这可能是由于嗅觉刚毛表皮在生长过程中材料特性的变化。这些结果表明,摆动过程中不成比例的生长和嗅觉刚毛展开的改变将调节因生长导致的大小变化,否则这些变化会导致功能丧失。

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