Bumbarger Daniel J, Crum John, Ellisman Mark H, Baldwin James G
Department of Nematology, University of California, Riverside, California 92521, USA.
J Morphol. 2007 Aug;268(8):649-63. doi: 10.1002/jmor.10535.
Nematode sensory structures can be divided into two classes; cuticular sensillae, with dendrites ending outside the epidermis, and internal receptors, that typically are single dendrites terminating within the body cavity. Fine structure of the former has been described completely in more than a dozen nematode taxa, while the latter were previously only well understood in the microbial feeder Caenorhabditis elegans. The distantly related nematode Acrobeles complexus has a similar ecology and together the two span a clade representing a large proportion of nematode biodiversity. The cuticular sensillae and internal receptors of A. complexus are here shown to be remarkably similar in number, arrangement, and morphology to those of C. elegans. Several key differences are reported that likely relate to function, and suggest that this nematode has a cuticular sensillum morphology that is closer to that of the common ancestor of the two taxa. Internal sensory receptors have more elaborate termini than those of C. elegans. The existence of a novel form of mechanoreceptor in A. complexus and spatial relationships between sensillum dendrites suggest differences between two classes of sensillae in how a touch-response behavior may be mediated.
表皮感觉器,其树突终止于表皮之外;以及内部感受器,通常是单个树突终止于体腔内。前者的精细结构已在十多个线虫类群中得到了完整描述,而后者此前仅在以微生物为食的秀丽隐杆线虫中得到了充分了解。亲缘关系较远的线虫复杂尖尾线虫具有相似的生态习性,二者共同构成了一个代表线虫生物多样性很大一部分的进化枝。本文表明,复杂尖尾线虫的表皮感觉器和内部感受器在数量、排列和形态上与秀丽隐杆线虫的极为相似。报告了几个可能与功能相关的关键差异,这表明这种线虫的表皮感觉器形态更接近这两个类群共同祖先的形态。内部感觉感受器的末端比秀丽隐杆线虫的更为复杂。复杂尖尾线虫中一种新型机械感受器的存在以及感觉器树突之间的空间关系表明,两类感觉器在介导触觉反应行为的方式上存在差异。