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在六种精子异形的果蝇物种中,只有长精子具有受精能力。

Only long sperm are fertilization-competent in six sperm-heteromorphic Drosophila species.

作者信息

Snook R R, Karr T L

机构信息

The University of Chicago, Department of Organismal Biology and Anatomy, 1027 East 57th Street, Chicago, Illinois 60637, USA.

出版信息

Curr Biol. 1998 Feb 26;8(5):291-4. doi: 10.1016/s0960-9822(98)70112-5.

Abstract

Males of many species exhibit sperm heteromorphism, in which multiple morphologies of sperm are produced in a common testis (see references in [1]). Polymegaly, a form of sperm heteromorphism, is found in the Drosophila obscura group and is characterized by the production of two size classes of nucleated sperm that differ only in head and tail lengths [1,2]. Both the length and the ratio of sperm types produced is species-specific [1,3-5], and each sperm type develops in its own bundle deriving from a single stem cell [4]. Previous studies suggested that both types of sperm are fertilization-competent on the basis of similar ultrastructure [6], DNA content [6], nuclear protein transition during spermatogenesis [7], and storage in females [3-5]. However, a previous study demonstrated that only long sperm fertilize eggs [3]. Here, we extend this study to examine fertilization in six obscura group species using anti-sperm antibodies and digital deconvolution microscopy. Consistent with the previous study, we found that all eggs were fertilized by only the long sperm type, even in polyspermic eggs. Moreover, sperm entry and position during and following fertilization were similar to other Drosophila groups [3,8-10]. Thus, polymegaly and its maintenance appear to have arisen independently of fertilization processes per se.

摘要

许多物种的雄性表现出精子多态性,即在同一个睾丸中会产生多种形态的精子(见[1]中的参考文献)。多态性是精子多态性的一种形式,在果蝇属的暗果蝇组中被发现,其特征是产生两种大小类别的有核精子,它们仅在头部和尾部长度上有所不同[1,2]。所产生精子的长度和类型比例都是物种特异性的[1,3 - 5],并且每种精子类型都在源自单个干细胞的自己的束中发育[4]。先前的研究表明,基于相似的超微结构[6]、DNA含量[6]、精子发生过程中的核蛋白转变[7]以及在雌性体内的储存情况[3 - 5],两种类型的精子都具有受精能力。然而,先前的一项研究表明只有长精子能使卵子受精[3]。在这里,我们扩展了这项研究,使用抗精子抗体和数字反卷积显微镜来检测六个暗果蝇组物种的受精情况。与先前的研究一致,我们发现即使在多精入卵的卵子中,所有卵子也仅由长精子类型受精。此外,受精过程中和受精后的精子进入和位置与其他果蝇组相似[3,8 - 10]。因此,多态性及其维持似乎独立于受精过程本身而出现。

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