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环颈旅鼠(Dicrostonyx groenlandicus)的细胞遗传学。I. 新XY性染色体系统的减数分裂行为与进化。

Cytogenetics of collared lemmings (Dicrostonyx groenlandicus). I. Meiotic behavior and evolution of the neo-XY sex-chromosome system.

作者信息

Berend S A, Hale D W, Engstrom M D, Greenbaum I F

机构信息

Department of Biology, Texas A&M University, College Station 77843-3258, USA.

出版信息

Cytogenet Cell Genet. 1997;79(3-4):288-92. doi: 10.1159/000134746.

Abstract

Electron-microscopic analysis of surface-spread synaptonemal complexes at pachynema and light-microscopic analysis of chromosomal configurations at diakinesis/metaphase I corroborate the hypothesized neo-XY derivation of the sex chromosomes of Dicrostonyx groenlandicus. Although an intact neo-XY pairing configuration was observed in a relatively small percentage of the pachytene cells in each individual, the high incidence of neo-XY bivalents at diakinesis/metaphase I suggests that the other observed pachytene configurations were artifacts of the physical stresses of the surface-spreading procedure. The very low frequency (0.6%) of univalent neo-X and neo-Y chromosomes at diakinesis and metaphase I is attributable to consistent synapsis and recombination between their homologous autosomally derived segments. The resultant stability of the sex bivalent through metaphase I may have increased the efficacy of sex-chromosome segregation, and thereby played a mechanistic role in the evolutionary incorporation of the neo-XY sex-chromosome constitution in D. groenlandicus.

摘要

对粗线期表面铺展的联会复合体进行电子显微镜分析,以及对终变期/减数第一次分裂中期的染色体构型进行光学显微镜分析,证实了关于格陵兰旅鼠(Dicrostonyx groenlandicus)性染色体的推测性新XY起源。尽管在每个个体中,相对较小比例的粗线期细胞中观察到完整的新XY配对构型,但终变期/减数第一次分裂中期新XY二价体的高发生率表明,其他观察到的粗线期构型是表面铺展过程中物理应力造成的假象。终变期和减数第一次分裂中期单价新X和新Y染色体的极低频率(0.6%)归因于其同源常染色体衍生片段之间持续的联会和重组。由此产生的性二价体在减数第一次分裂中期的稳定性可能提高了性染色体分离的效率,从而在格陵兰旅鼠新XY性染色体组成的进化整合中发挥了机制作用。

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