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X射线对雄性小鼠生殖细胞中突触复合体和中期染色体的阶段特异性损伤。

Stage-specific damage to synaptonemal complexes and metaphase chromosomes induced by X rays in male mouse germ cells.

作者信息

Backer L C, Sontag M R, Allen J W

机构信息

Environmental Health Research and Testing, Research Triangle Park, North Carolina 27709.

出版信息

Radiat Res. 1991 Feb;125(2):187-96.

PMID:1996377
Abstract

Synaptonemal complexes reveal mutagen-induced effects in germ cell meiotic chromosomes. This study was aimed at characterizing relationships between damage to synaptonemal complexes and metaphase I chromosomes following radiation exposure at various stages of spermatogenesis. Male mice were irradiated with doses of 0, 2, or 4 Gy, and spermatocytes were harvested at times consistent with earlier exposures as spermatogonial stem cells, preleptotene cells (premeiotic DNA synthesis), or meiotic prophase cells. After stem-cell exposure, twice as many rearrangements were observed in synaptonemal complexes as in metaphase I chromosomes. Irradiation during premeiotic DNA synthesis resulted in dose-related increases in synaptonemal complex breakage and rearrangements (including novel forms) and in metaphase chromosomal aberrations. Following prophase exposure, various types and levels of damage to synaptonemal complexes and metaphase chromosomes were observed. Irradiation of zygotene cells led to high frequencies of chromosome multivalents in metaphase I without a correspondingly high level of damage in preceding prophase synaptonemal complexes. Thus irradiation of premeiotic and meiotic cells results in variable relationships between damage to synaptonemal complexes and metaphase chromosomes. Interpretations of these relationships are based upon what is known about both radiation clastogenesis and the structural/temporal relationships between synaptonemal complexes at prophase and chromosomes at metaphase I of meiosis.

摘要

联会复合体揭示了诱变剂对生殖细胞减数分裂染色体的影响。本研究旨在表征在精子发生的各个阶段接受辐射后,联会复合体损伤与减数第一次分裂中期染色体之间的关系。雄性小鼠分别接受0、2或4 Gy的辐射剂量,并在与早期暴露一致的时间点收集精母细胞,这些时间点分别对应于精原干细胞、细线前期细胞(减数分裂前DNA合成期)或减数分裂前期细胞。在干细胞暴露后,观察到联会复合体中的重排数量是减数第一次分裂中期染色体中的两倍。减数分裂前DNA合成期的辐射导致联会复合体断裂和重排(包括新的形式)以及中期染色体畸变与剂量相关的增加。前期暴露后,观察到了联会复合体和中期染色体的各种类型和水平的损伤。偶线期细胞的辐射导致减数第一次分裂中期染色体多价体的高频率出现,而前期的联会复合体中相应的损伤水平并不高。因此,减数分裂前和减数分裂细胞的辐射导致联会复合体损伤与中期染色体损伤之间存在可变的关系。对这些关系的解释基于对辐射断裂形成以及减数分裂前期联会复合体与减数第一次分裂中期染色体之间的结构/时间关系的已知认识。

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