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寄生蜂凯氏赤眼蜂中的父本性别比染色体将父本染色体浓缩成致密的染色质团块。

The paternal sex ratio chromosome in the parasitic wasp Trichogramma kaykai condenses the paternal chromosomes into a dense chromatin mass.

作者信息

van Vugt Joke F A, Salverda Merijn, de Jong J Hans, Stouthamer Richard

机构信息

Department of Plant Sciences, Laboratory of Entomology, Wageningen Unviersity, Wageningen, The Netherland.

出版信息

Genome. 2003 Aug;46(4):580-7. doi: 10.1139/g03-044.

Abstract

A recently discovered B chromosome in the parasitoid wasp Trichogramma kaykai was found to be transmitted through males only. Shortly after fertilization, this chromosome eliminates the paternal chromosome set leaving the maternal chromosomes and itself intact. Consequently, the sex ratio in these wasps is changed in favour of males by modifying fertilized diploid eggs into male haploid offspring. In this study, we show that in fertilized eggs at the first mitosis the paternal sex ratio (PSR) chromosome condenses the paternal chromosomes into a so-called paternal chromatin mass (PCM). During this process, the PSR chromosome is morphologically unaffected and is incorporated into the nucleus containing the maternal chromosomes. In the first five mitotic divisions, 67% of the PCMs are associated with one of the nuclei in the embryo. Furthermore, in embryos with an unassociated PCM, all nuclei are at the same mitotic stage, whereas 68% of the PCM-associated nuclei are at a different mitotic phase than the other nuclei in the embryo. Our observations reveal an obvious similarity of the mode of action of the PSR chromosome in T. kaykai with that of the PSR-induced paternal genome loss in the unrelated wasp Nasonia vitripennis.

摘要

在寄生蜂凯氏赤眼蜂(Trichogramma kaykai)中最近发现的一条B染色体被发现仅通过雄性传递。受精后不久,这条染色体消除父本染色体组,使母本染色体和它自身保持完整。因此,这些黄蜂的性别比例发生变化,通过将受精的二倍体卵转变为雄性单倍体后代,从而有利于雄性。在本研究中,我们表明在受精卵的第一次有丝分裂时,父本性别比例(PSR)染色体将父本染色体浓缩成所谓的父本染色质团(PCM)。在此过程中,PSR染色体在形态上未受影响,并被纳入含有母本染色体的细胞核中。在最初的五次有丝分裂中,67%的PCM与胚胎中的一个细胞核相关联。此外,在具有未关联PCM的胚胎中,所有细胞核处于相同的有丝分裂阶段,而68%与PCM相关联的细胞核处于与胚胎中其他细胞核不同的有丝分裂阶段。我们的观察结果揭示了凯氏赤眼蜂中PSR染色体的作用模式与无关黄蜂丽蝇蛹集金小蜂(Nasonia vitripennis)中PSR诱导的父本基因组丢失的作用模式具有明显相似性。

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