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Sperm ultrastructure of Bothrops alternatus and Bothrops diporus (Viperidae, Serpentes), and its possible relation to the reproductive features of the species

机译:互生双胞胎和双生双胞胎(蛇蝎,蛇形)的精子超微结构及其与该物种生殖特征的可能关系

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Sperm ultrastructure has been described for several species of Serpentes and other Squamata in which it has been considered a valuable character source for phylogenetic studies. However, some ultrastructural traits have been also reported as adaptations to increase motility and/or longevity under sperm competition and storage conditions. Bothrops alternatus and Bothrops diporus are medium sized, viviparous, highly venomous species, and their reproductive cycles include periods of female sperm storage between mating and fertilization. In this work we provide, for the first time, a detailed ultrastructural description of the spermatozoa of B. alternatus and B. diporus and discuss its possible relation to their reproductive features. Sperm was obtained from the vas deferens, and was processed to obtain transmission electron micrographs and fluorescence micrographs. Spermatozoa of these species show similar morphological traits, which are closely related to the general model described for the Serpentes. Furthermore, several synapomorphies for the squamates can be identified in these cells. Nevertheless, the observed midpiece elongation and absence of dense bodies could augment the energy producing capabilities of the spermatozoa, thus enhancing the competitive aptitude of the ejaculate.
机译:精子的超微结构已经被描述为多种蛇形和其他鳞类的物种,其中精子超微结构被认为是系统发育研究的有价值的特征来源。但是,也有一些超微结构特征被报道为在精子竞争和储存条件下增加运动力和/或寿命的适应性。互生双胞胎和双生双胞胎是中等大小,胎生,剧毒的物种,其生殖周期包括雌性精子在交配和受精之间的储存期。在这项工作中,我们首次提供了互生双歧杆菌和双歧双歧杆菌精子的详细超微结构描述,并讨论了它们与生殖特征的可能关系。从输精管获得精子,并对其进行处理以获得透射电子显微照片和荧光显微照片。这些物种的精子表现出相似的形态特征,与为蛇形描述的一般模型密切相关。此外,在这些细胞中可以鉴定出一些鳞状突触。然而,观察到的中段伸长和不存在致密体可以增强精子的能量产生能力,从而增强了射精的竞争能力。

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