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Differential acetylation of histones H3 and H4 in paternal and maternal germline chromosomes during development of sciarid files

机译:坐骨神经痛文件发展过程中父本和母本种系染色体中组蛋白H3和H4的差异乙酰化

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A classic example of chromosome elimination and genomic imprinting is found in sciarid flies (Diptera. Sciaridae), where whole chromosomes of exclusively paternal origin are discarded from the genome at different developmental stages. Two types of chromosome elimination event occur in the germline. In embryos of both sexes, the extrusion of a single paternal X chromosome occurs in early germ nuclei and in male meiotic cells the whole paternal complement is discarded. In sciarids, early germ nuclei remain undivided for a long time and exhibit a high degree of chromatin compaction, so that chromosomes are cytologically individualized. We investigated chromatin differences between parental chromosomes in Sciara ocellaris and S. coprophila by analyzing histone acetylation modifications in early germ nuclei. We examined germ nuclei from early embryonic stages to premeiotic larval stages, male meiotic cell and early somatic nuclei following fertilization. In early germ cells, only half of the regular chromosome complement is highly acetylated for histones H4 and H3. The chromosomes that are highly acetylated are paternally derived. An exception is the paternal X chromosome that is eliminated from germ nuclei. At later stages preceding the initiation of mitotic gonial divisions, all chromosomes of the germline complement show similar high levels of histone H4/H3 acetylation. In male meiosis, maternal chromosomes are highly acetylated for histones H4 and H3, whereas the entire paternal chromosome set undergoing elimination appears under-acetylated. The results suggest that histone acetylation contributes towards specifying the imprinted behavior of germline chromosomes in sciarids. [References: 36]
机译:夏枯草蝇(Diptera。Sciaridae)中发现了染色体消除和基因组印迹的经典例子,在此,父本完整的整个染色体在不同的发育阶段被从基因组中丢弃。种系中发生两种类型的染色体消除事件。在男女两性的胚胎中,单个父系X染色体的挤出发生在早期胚核中,而在雄性减数分裂细胞中,整个父系补体被丢弃。在刺槐中,早期胚核长时间不分裂,并表现出高度的染色质紧密性,因此染色体在细胞学上是个体化的。我们通过分析早期胚芽核中的组蛋白乙酰化修饰,研究了Sciara ocellaris和S. proprophila亲本染色体之间的染色质差异。我们检查了受精后从胚胎早期到减数分裂前幼虫阶段的生殖细胞核,雄性减数分裂细胞和早期体细胞核。在早期生殖细胞中,只有一半的规则染色体补体对组蛋白H4和H3高度乙酰化。高度乙酰化的染色体是父系来源的。一个例外是父系X染色体从胚核中消除。在有丝分裂性角膜分裂开始之前的后期,种系补体的所有染色体均显示相似的高水平组蛋白H4 / H3乙酰化。在男性减数分裂中,母体染色体的组蛋白H4和H3高度乙酰化,而整个父本染色体集经历的乙酰化却不足。结果表明,组蛋白乙酰化有助于确定虫中种系染色体的印迹行为。 [参考:36]

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