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E. Lamla F. Boschke G. Traving G. Pfotzer H. Wolter W. Walcher H. D. Dahmen H. J. Queisser W. W. Klingbeil K. Beyermann O. Müller R. R. Ernst D. Reinen H. Muth W. Becker G. Wunsch G. I. Distler L. Jaenicke H. G. v. Schnering H. Werner F. Reiff H. Schimassek W. Höll H. K. Vasil W. F. Angermeier W. Ruppel J. C. Eccles G. Spiteller H. Oettel W. Vogell P. Brosche K. J. Hsü H. -U. Schmincke 《Die Naturwissenschaften》1975,62(3):143-143
105.
Sperm competition is thought to be an important selective pressure shaping sperm form and function. However, few studies have
moved beyond gross examinations of sperm morphology. Sperm length is subject to sexual selection via sperm competition in
the scarab beetle Onthophagus taurus. Here, the structure and ultrastructure of spermatozoa in this species were investigated using light and electron microscopy.
Spermatozoa were found to be filiform, measuring about 1,200 mm in length. The sperm head consists of a three-layered acrosome
and a nuclear region bearing the anterior extension of the centriole adjunct. Acrosome and nuclear regions are bilaterally
symmetric, with their axes of symmetry being orthogonal to each other. Head and flagellar structures are connected by a well-developed
centriole adjunct. The sperm heads are asymmetrically surrounded by accessory material and embedded into the cytoplasm of
the spermatocyst cell. The accessory material is produced inside the spermatids and then transferred to the outside due to
a new membrane formed around the sperm’s organelles. The old spermatid membrane separates the accessory material from the
cyst cell. The flagellum contains a 9+9+2 axoneme, two accessory bodies, and two mitochondrial derivatives of unequal size.
The major mitochondrial derivative is significantly larger than the minor one. The axoneme is arranged in a sinusoidal manner
parallel along the major mitochondrial derivative. The spermatozoa show no progressive motility when released in buffer solution
which is likely to be the result of the flagellar arrangement and the structure of the major mitochondrial derivative. The
cross-sectional area of the minor and the major mitochondrial derivatives show different patterns of genetic variation. The
data provide the first estimates of genetic variation in sperm ultrastructure for any species, and give evidence for the persistence
of genetic variation in ultrastructure required for the rapid and divergent evolution that characterizes spermatozoa generally. 相似文献
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