Sperm plasma membrane characteristics and boar semen fertility.

R. A. P. Harrison
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引用次数: 67

Abstract

Much effort is being made to establish relationships between the molecular events that take place in spermatozoa under fertilizing conditions and actual sperm function during fertilization. During capacitation, the process that 'primes' spermatozoa for interaction with the egg, components of the sperm's environment, notably bicarbonate, provoke various specific changes in the architecture and functioning of the sperm plasma membrane in a large number of cells. The individual changes have been found to proceed on different time scales, and may therefore represent sequential stages in the capacitation process. However, each change takes place at different rates in individual cells, revealing considerable functional heterogeneity within the sperm population. Recent work on membrane changes provoked by cooling has indicated similarities with capacitational changes. The effect of cooling may therefore be to induce premature capacitation (and destabilization). Such an effect would greatly compromise sperm fertilizing potential. A pig sperm-egg interaction model was used to examine quantitative details of zona binding and zona penetrating abilities within capacitated sperm populations, and sperm behaviour was found not to accord with generally held beliefs. In particular, individual spermatozoa that have bound to the zona pellucida show great variation in the delay before penetrating: no evidence has been found for a specially competent subgroup. Even in sperm samples incubated to undergo maximal capacitational membrane changes, cells with actual penetrating potential represent less than 15% of the total number that attach initially to the zona pellucida. Thus detection of capacitational membrane changes appears greatly to overestimate zona penetrating capability. Future studies linking sperm membrane characteristics with semen fertility in the field will need to consider differences between in vitro and in vivo conditions. The need for survival in the female tract may require much slower sperm responses than are considered optimal for in vitro fertilization.
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精子质膜特性与猪精液育性。
人们正在努力建立受精条件下精子中发生的分子事件与受精过程中精子的实际功能之间的关系。在获能过程中,精子与卵子相互作用的“准备”过程,精子环境的成分,特别是碳酸氢盐,会引起大量细胞中精子质膜结构和功能的各种特定变化。已经发现个体的变化在不同的时间尺度上进行,因此可能代表了获能过程中的连续阶段。然而,每种变化在单个细胞中以不同的速率发生,揭示了精子群体中相当大的功能异质性。最近关于冷却引起的膜变化的研究表明了与电容变化的相似之处。因此,冷却的效果可能是诱导过早的电容化(和失稳)。这样的影响会极大地损害精子的受精潜力。我们使用猪精卵相互作用模型来检验有能力精子种群中带结合和带穿透能力的定量细节,发现精子的行为与人们普遍认为的不一致。特别是,与透明带结合的单个精子在穿透前的延迟表现出很大的差异:没有证据表明有一个特别有能力的亚群。即使在孵育以经历最大容量膜变化的精子样本中,具有实际穿透潜力的细胞也只占最初附着在透明带上的细胞总数的不到15%。因此,检测电容膜的变化似乎大大高估了带穿透能力。未来将精子膜特征与精液生育能力联系起来的研究将需要考虑体外和体内条件之间的差异。在女性生殖道中生存的需要可能需要比体外受精的最佳精子反应慢得多。
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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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