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首页> 外文期刊>The Plant Cell >Regulation and Flexibility of Genomic Imprinting during Seed Development
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Regulation and Flexibility of Genomic Imprinting during Seed Development

机译:种子发育过程中基因组印迹的调控和灵活性

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Genomic imprinting results in monoallelic gene expression in a parent-of-origin-dependent manner. It is achieved by the differential epigenetic marking of parental alleles. Over the past decade, studies in the model systems Arabidopsis thaliana and maize (Zea mays) have shown a strong correlation between silent or active states with epigenetic marks, such as DNA methylation and histone modifications, but the nature of the primary imprint has not been clearly established for all imprinted genes. Phenotypes and expression patterns of imprinted genes have fueled the perception that genomic imprinting is specific to the endosperm, a seed tissue that does not contribute to the next generation. However, several lines of evidence suggest a potential role for imprinting in the embryo, raising questions as to how imprints are erased and reset from one generation to the next. Imprinting regulation in flowering plants shows striking similarities, but also some important differences, compared with the mechanisms of imprinting described in mammals. For example, some imprinted genes are involved in seed growth and viability in plants, which is similar in mammals, where imprinted gene regulation is essential for embryonic development. However, it seems to be more flexible in plants, as imprinting requirements can be bypassed to allow the development of clonal offspring in apomicts.
机译:基因组印记以原代依赖的方式导致单等位基因表达。这是通过父母等位基因的差异表观遗传标记实现的。在过去的十年中,对拟南芥和玉米(Zea mays)模型系统的研究表明,具有表观遗传标记的沉默或活跃状态(例如DNA甲基化和组蛋白修饰)之间具有很强的相关性,但是主要印迹的性质尚未得到证实。为所有印迹基因明确建立。印迹基因的表型和表达模式加剧了人们的印象,即基因组印迹是胚乳特有的,胚乳是一种对下一代无害的种子组织。但是,有几条证据表明烙印可能在胚胎中发挥潜在作用,这引发了有关如何擦除烙印并从一代到下一代重置的疑问。与哺乳动物中描述的印迹机制相比,开花植物中的印迹调控显示出惊人的相似性,但也存在一些重要差异。例如,某些印迹基因参与植物的种子生长和生存力,这与哺乳动物相似,在哺乳动物中,印迹基因的调控对于胚胎发育至关重要。但是,它似乎在植物中更为灵活,因为可以绕过印迹要求,从而允许无融合生殖细胞克隆后代的发育。

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