Comparative Testis Morphometry and Seminiferous Epithelium Cycle Length in Donkeys and Mules1
Open Access
- 1 July 2002
- journal article
- research article
- Published by Oxford University Press (OUP) in Biology of Reproduction
- Vol. 67 (1) , 247-255
- https://doi.org/10.1095/biolreprod67.1.247
Abstract
The mule (Equus mulus mulus) is a sterile hybrid domestic animal that results from the breeding of a male donkey (Equus asinus) to a female horse (Equus caballus). Usually, spermatogenesis in mules does not advance beyond spermatocytes. In the present study, we performed a comparative and more accurate morphometric and functional investigation of the testis in donkeys and mules. Due to the smaller testis size, lower seminiferous tubule volume density, and fewer germ cells, the total length of seminiferous tubules in mules was significantly smaller than in donkeys. However, the percentage of seminiferous tubules containing germ cells (spermatogonia and spermatocytes) in mules was approximately 95%. The total number of Sertoli cells per testis observed in donkeys and mules was very similar. However, the total number of Leydig cells in mules was approximately 70% lower than in donkeys. At least in part, this difference was probably related to the lower number of germ cells present in mule seminiferous tubules. Although spermatogenesis in mules did not advance beyond secondary spermatocytes/newly formed round spermatids, germ cell associations in the seminiferous epithelium and pachytene spermatocytes nuclear volume in donkeys and mules were similar. The duration of spermatogenesis was estimated using intratesticular injections of tritiated thymidine. Each spermatogenic cycle in donkeys lasted 10.5 days. A similar value was found in mules (∼10.1 days). Considering that the entire spermatogenic process takes approximately 4.5 cycles to be completed, its total duration in donkeys was estimated to last 47.2 days. The results found for mules suggest that the mechanisms involved in the determination of testis structure and function are probably originated from donkeys. Also, the data found for mules suggest that their seminiferous tubules are able to sustain complete spermatogenesis. In this regard, this species is a potential model for transplants of germ cells originated from donkeys and horses or other large animals.Keywords
This publication has 33 references indexed in Scilit:
- Chromosome pairing in inter-racial hybrids of the house musk shrew (Suncus murinus, Insectivora, Soricidae)Genome, 1998
- Hybrid sterility in the mouseTrends in Genetics, 1996
- Morphometry of rat germ cells during spermatogenesisThe Anatomical Record, 1995
- Spermatogenesis is Accelerated in the Immature Djungarian and Chinese Hamster and RatBiology of Reproduction, 1993
- Quantitative and Qualitative Characteristics of the Stages and Transitions in the Cycle of the Rat Seminiferous Epithelium: Light Microscopic Observations of Perfusion-Fixed and Plastic-Embedded Testes1Biology of Reproduction, 1990
- Genetic evidence that ZFY is not the testis-determining factorNature, 1989
- Temporal Appearance of Seasonal Changes in Numbers of Sertoli Cells, Leydig Cells, and Germ Cells in Stallions1Biology of Reproduction, 1989
- Annual cycle of the Sertoli cell population in adult stallionsReproduction, 1986
- Age-Related Changes in the Leydig Cell Population, Seminiferous Tubules, and Sperm Production in Stallions1Biology of Reproduction, 1981
- Reproductive capacity of dairy bulls. III. The effect of ejaculation frequency, unilateral vasectomy, and age on spermatogenesisJournal of Anatomy, 1962