The male reproductive system of Zorotypus caudelli Karny (Zoraptera): Sperm structure and spermiogenesis

被引:36
作者
Dallai, R. [1 ]
Mercati, D. [1 ]
Gottardo, M. [1 ]
Machida, R. [2 ]
Mashimo, Y. [2 ]
Beutel, R. G. [3 ]
机构
[1] Dept Evolutionary Biol, I-53100 Siena, Italy
[2] Univ Tsukuba, Sugadaira Montane Res Ctr, Ueda, Nagano 3862204, Japan
[3] Univ Jena, Inst Spezielle Zool & Evolut Biol, Phylet Museum, D-07743 Jena, Germany
基金
日本学术振兴会;
关键词
Insect reproduction; Insect spermiogenesis; Sperm structure; Insect phylogeny; Electron microscopy; DROSOPHILA-MELANOGASTER; SISTER-GROUP; INSECTA; AXONEME; ULTRASTRUCTURE; SPERMATOZOON; PHYLOGENY; PENTASTOMIDA; ARTHROPODA; SOLIFUGAE;
D O I
10.1016/j.asd.2011.07.001
中图分类号
Q96 [昆虫学];
学科分类号
摘要
Considering the overall uniformity of the morphology of Zoraptera, the structural diversity of the male genital system is remarkable. Structures related to the male reproductive system of Zorotypus caudelli differ profoundly from those of Zorotypus hubbardi. The testes are elongated rather than spherical, the seminal vesicle is apparently absent, and the deferent ducts are very long. A feature shared by these two species and other zorapterans examined is that the two accessory glands are closely adherent to each other and form a single large structure, from which the ejaculatory duct originates. This is a potential zorapteran autapomorphy. Another feature possibly present in the groundplan of the order is the strong elongation of the sperm cells. This may be connected with a reproductive strategy of males trying to avoid re-mating of females with other males after the first copulation. The extremely long and coiled spermathecal duct of Z. caudelli and other zorapteran species is possibly correlated with the sperm elongation, and both features combined may result in a sexual isolating mechanism. The short duration of mating of Zorotypus barberi and Zorotypus gurneyi suggests that the male introduces sperm into the female tract up to the opening of the spermathecal duct using their long coiled aedeagus. A thick glycocalyx around the sperm in the distal part of the deferent ducts probably protects the sperm cells during their forward progression towards the long spermathecal duct, and is removed when they reach the apical receptacle. The spermatogenesis of Z. caudelli follows a pattern commonly found in insects, but differs distinctly from that of Z. hubbardi in the number of spermatids in each sperm cyst. An unusual and possibly autapomorphic feature of Z. caudelli is a disconnection of sub-tubules A and B at the level of microtubule doublets 1 and 6 of the mature sperm cells. It is conceivable that this results in a shorter period of sperm motility. The character combination found in different zorapteran species supports the view that the sperm, a very compact functional unit, does not evolve as a unit, but like in other more complex body regions, sperm components can also be modified independently from each other. This results in different mosaic patterns of plesiomorphic and derived features in a very compact entity in different species of the very small and otherwise uniform order Zoraptera. In Z. caudelli, for instance, the bi-layered acrosome and small accessory bodies are plesiomorphic states among several others, whereas the mitochondrial derivatives and the elongate nucleus are apparently derived conditions. Other combinations likely occur in other zorapteran species. Only few but noteworthy sperm characters indicate possible phylogenetic affinities of Zoraptera. A possible synapomorphic feature, the presence of dense laminae radiating in a cartwheel array between neighbouring centriolar triplets, is shared with Phasmatodea and Embioptera. Another potential synapomorphy shared with Phasmatodea is the presence of 17 protofilaments in the tubular wall of the outer accessory microtubules. (C) 2011 Elsevier Ltd. All rights reserved.
引用
收藏
页码:531 / 547
页数:17
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