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Dextral and sinistral Amphidromus inversus (Gastropoda: Pulmonata: Camaenidae) produce dextral sperm

机译:右手和左手两栖两栖动物(天麻:肺炎:Camaenidae)产生右手精子

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摘要

Coiling direction in pulmonate gastropods is determined by a single gene via a maternal effect, which causes cytoskeletal dynamics in the early embryo of dextral gastropods to be the mirror image of the same in sinistral ones. We note that pulmonate gastropod spermatids also go through a helical twisting during their maturation. Moreover, we suspect that the coiling direction of the helical elements of the spermatozoa may affect their behaviour in the female reproductive tract, giving rise to the possibility that sperm chirality plays a role in the maintenance of whole-body chiral dimorphism in the tropical arboreal gastropod Amphidromus inversus (Müller, 1774). For these reasons, we investigated whether there is a relationship between a gastropod’s body chirality and the chirality of the spermatozoa it produces. We found that spermatozoa in A. inversus are always dextrally coiled, regardless of the coiling direction of the animal itself. However, a partial review of the literature on sperm morphology in the Pulmonata revealed that chiral dimorphism does exist in certain species, apparently without any relationship with the coiling direction of the body. Though our study shows that body and sperm chirality follows independent developmental pathways, it gives rise to several questions that may be relevant to the understanding of the chirality of spermatid ultrastructure and spermatozoan motility and sexual selection.
机译:肺腹足纲动物的线圈方向由母体效应决定于单个基因,这导致右腹腹足纲动物早期胚胎中的细胞骨架动力学与其在鼻窦腹足纲动物中的镜像相同。我们注意到,肺的腹足类精子细胞在成熟过程中也会经历螺旋扭曲。此外,我们怀疑精子螺旋元件的盘旋方向可能会影响其在女性生殖道中的行为,从而可能导致精子手性在热带树栖腹足纲动物体内维持整个手性二态性中发挥作用。两栖两栖动物(Müller,1774)。由于这些原因,我们调查了腹足动物的手性与其产生的精子的手性之间是否存在关系。我们发现,逆反曲霉的精子总是右旋盘旋的,而与动物自身盘旋的方向无关。然而,对肺炎精子形态学文献的部分回顾显示,某些物种确实存在手性二态性,显然与身体的卷曲方向没有任何关系。尽管我们的研究表明身体和精子的手性遵循独立的发育途径,但它引起了一些问题,这些问题可能与对精子超微结构的手性,精子运动性和性选择的理解有关。

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