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基因对小鼠发情周期的影响:周期长度和频率受不同调控的证据。

Genetic influences on oestrous cyclicity in mice: evidence that cycle length and frequency are differentially regulated.

作者信息

Nelson J F, Karelus K, Felicio L S, Johnson T E

机构信息

Department of Physiology, University of Texas Health Science Center, San Antonio 78284-7756.

出版信息

J Reprod Fertil. 1992 Jan;94(1):261-8. doi: 10.1530/jrf.0.0940261.

Abstract

Studies in C57BL/6J, DBA/2J and C3H/HeJ mice and in two F1 hybrid strains (B6D2F1 and B6C3HF1) 2-5 months old revealed marked genotypic differences among inbred strains. C57 mice had three times as many regular (3-6 days) cycles as DBA and C3H mice, due largely to fewer pseudopregnant-like (7-14 day) cycles. C57 had longer regular cycles than DBA and C3H mice. Although the frequencies of regular cycles of DBA and C3H mice were similar, the cycles of C3H mice were shorter than those of DBA mice. The results indicated that the genetic determinants of the frequency of regular cycles differ from those specifying cycle length. Frequency of regular cycles of F1 hybrids was either intermediate between the parent strains (B6D2F1) or similar to the C57 strain (B6C3HF1), suggesting that regular cycle frequency shows additive genetic variation in the former crosses, but mostly dominant variance in the latter background. Regular cycles were either shorter than in both parent strains (B6D2F1) or similar to one of them (B6C3HF1), indicating heterosis and dominance for genes specifying short cycles. Although the lack of reciprocal crosses meant that maternal effects and possible genomic imprinting effects could not be assessed, these results reveal marked genetic influences on cycle length and frequency and suggest that some of the genes specifying these two traits differ.

摘要

对2至5月龄的C57BL/6J、DBA/2J和C3H/HeJ小鼠以及两个F1杂交品系(B6D2F1和B6C3HF1)的研究表明,近交品系之间存在显著的基因型差异。C57小鼠的正常(3至6天)周期数量是DBA和C3H小鼠的三倍,这主要是由于类似假孕(7至14天)的周期较少。C57小鼠的正常周期比DBA和C3H小鼠更长。虽然DBA和C3H小鼠的正常周期频率相似,但C3H小鼠的周期比DBA小鼠短。结果表明,正常周期频率的遗传决定因素与决定周期长度的因素不同。F1杂交种的正常周期频率要么介于亲本品系之间(B6D2F1),要么与C57品系相似(B6C3HF1),这表明在前一种杂交中,正常周期频率表现出加性遗传变异,但在后一种背景下大多是显性变异。正常周期要么比两个亲本品系都短(B6D2F1),要么与其中一个相似(B6C3HF1),这表明在决定短周期的基因上存在杂种优势和显性。虽然缺乏正反交意味着无法评估母体效应和可能的基因组印记效应,但这些结果揭示了对周期长度和频率的显著遗传影响,并表明决定这两个性状的一些基因是不同的。

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