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嗜热四膜虫诱导减数分裂I中期停滞菌株的分离:异常接合的新途径

Isolation of a Tetrahymena thermophila strain which induced metaphase I meiotic arrest: new pathway of abortive conjugation.

作者信息

Kaczanowski Andrzej, Kiersnowska Mauryla, Kaczanowska Janina

出版信息

J Eukaryot Microbiol. 2004 May-Jun;51(3):351-63. doi: 10.1111/j.1550-7408.2004.tb00579.x.

Abstract

A hypodiploid strain of Tetrahymena thermophila has been obtained that shows arrest at the stage of condensed nuclei, corresponding to metaphase I of normal conjugants and induced arrest at meiotic metaphase I (i.e. at the stage of condensed, bivalent chromosomes) in its wt partner mate. The metaphase I arrested conjugants retained their old macronuclei and most of them underwent cell fusion, instead of separation of exconjugants. The doublets were viable and cortically integrated. When the arrest inducing strain was crossed to the haploid tester strain, the haploid micronuclei were arrested in the meiotic metaphase I as the diploid ones had been; the monovalent, chromosomes were condensed, the arms of sister chromatids were not separated, and they were not segregated. Separation of the arms of sister chromatids and disjunction of bivalent chromosomes were not prerequisite for the formation of microtubular spindles in those cells that were arrested in meiotic metaphase I. After re-feeding, the doublet cells resumed cell divisions, segregating two macronuclei and micronuclei at random. One macronucleus was derived from the arrest inducing strain and the other from the tester strain. Heterokaryon strains with macronuclei derived from the parental arrest inducing strain and with the micronucleus derived from the parental wt tester strain were obtained. Surprisingly, these heterokaryons did not induce meiotic arrest. Thus, the arrest in the melotic metaphase I was induced by the micronucleus and not by the macronucleus of the arrest inducing strain.

摘要

已获得嗜热四膜虫的一个亚二倍体菌株,该菌株在浓缩核阶段停滞,这对应于正常接合体的减数分裂中期I,并能诱导其野生型伴侣在减数分裂中期I(即浓缩的二价染色体阶段)停滞。处于减数分裂中期I停滞的接合体保留了它们原来的大核,并且它们中的大多数发生了细胞融合,而不是接合后体分离。双核体是有活力的且皮层整合。当停滞诱导菌株与单倍体测试菌株杂交时,单倍体微核在减数分裂中期I停滞,就像二倍体微核那样;单价染色体浓缩,姐妹染色单体的臂未分离,并且它们没有分离。姐妹染色单体臂的分离和二价染色体的分离不是那些在减数分裂中期I停滞的细胞中形成微管纺锤体的先决条件。重新喂食后,双核体细胞恢复细胞分裂,随机分离出两个大核和微核。一个大核来自停滞诱导菌株,另一个来自测试菌株。获得了具有源自亲本停滞诱导菌株的大核和源自亲本野生型测试菌株的微核的异核体菌株。令人惊讶的是,这些异核体没有诱导减数分裂停滞。因此,减数分裂中期I的停滞是由停滞诱导菌株的微核而不是大核诱导的。

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