Spermatogenesis and Sertoli cell numbers and function in rams and bulls.

H. Mt, C. Monet-Kuntz, M. Courot
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引用次数: 69

Abstract

The two main types of cellular associations (type I, 2 generations of spermatocytes + 1 of spermatids; type II, 1 of spermatocytes and 2 of spermatids) occupy, respectively, more than half and about a third of the seminiferous epithelium cycle in rams and bulls. However, the duration of the cycle of the seminiferous epithelium and that of spermatogenesis differ between the species. A1 spermatogonia and Sertoli cell total numbers are highly correlated in adult rams and bulls. Mitosis in Sertoli cells occurs mostly in utero but may still occur for a short period after birth. Between birth and puberty there is about a 5-fold increase in the number of Sertoli cells. After that there are no seasonal- or age-related increases in the number of adult Sertoli cells. Some factors (season of birth; nutrition; genetics; hormones) affect mitosis of Sertoli cells in prepubertal animals. Sertoli cells differentiate after cessation of mitosis. Their differentiation is affected by cryptorchidism, nutrition, genetics and hormones. Their adult function is only poorly known. ABP and rete testis fluid secretions and nuclear Sertoli volume fluctuate under the influence of the same factors, but they are not always linked together. This reinforces the need for more knowledge of Sertoli cell secretions and function.
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公、公牛精子发生及支持细胞数量及功能。
两种主要的细胞关联类型(I型,2代精母细胞+ 1代精母细胞;II型(1个精母细胞和2个精母细胞)分别占公羊和公牛精系上皮周期的一半以上和约三分之一。然而,精子上皮的周期和精子发生的周期在物种之间是不同的。成年公、公牛A1精原细胞与支持细胞总数高度相关。支持细胞的有丝分裂主要发生在子宫内,但也可能在出生后的短时间内发生。从出生到青春期,支持细胞的数量大约增加了5倍。在那之后,成体支持细胞的数量没有季节性或年龄相关的增加。一些因素(出生季节;营养;遗传学;激素)影响青春期前动物支持细胞的有丝分裂。支持细胞在有丝分裂停止后分化。它们的分化受隐睾、营养、遗传和激素的影响。它们成年后的功能却鲜为人知。ABP和rette睾丸液体分泌物和核支持体积在相同因素的影响下波动,但它们并不总是联系在一起。这加强了对支持细胞分泌和功能的更多知识的需求。
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Consequences of variation in interval from insemination to ovulation on fertilization in pigs. Role of prolactin in the regulation of ovarian function in pigs. Manipulation of gametes and embryos in the pig. Hypothalamic control of gonadotrophin and prolactin secretion in pigs. Control of follicular development and ovulation rate in pigs.
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