首页> 外文期刊>Chromosome research: An international journal on the molecular, supramolecular and evolutionary aspects of chromosome biology >Tissue-specific genome instability in synthetic interspecific hybrids of Pennisetum purpureum (Napier grass) and Pennisetum glaucum (pearl millet) is caused by micronucleation
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Tissue-specific genome instability in synthetic interspecific hybrids of Pennisetum purpureum (Napier grass) and Pennisetum glaucum (pearl millet) is caused by micronucleation

机译:紫草(Napier grass)和青草(Penissetum glaucum)(珍珠小米)的合成种间杂种中的组织特异性基因组不稳定性是由微核导致的

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摘要

Genome instability is observed in several species hybrids. We studied the mechanisms underlying the genome instability in hexaploid hybrids of Napier grass (Pennisetum purpureum R.) and pearl millet (Pennisetum glaucum L.) using a combination of different methods. Chromosomes of both parental genomes are lost by micronucleation. Our analysis suggests that genome instability occurs preferentially in meristematic root tissue of hexaploid hybrids, and chromosome elimination is not only caused by centromere inactivation. Likely, beside centromere dysfunction, unrepaired DNA double-strand breaks result in fragmented chromosomes in synthetic hybrids.
机译:在几种杂种中观察到基因组不稳定。我们研究了结合使用不同方法的纳皮尔草(Pennisetum purpureum R.)和珍珠粟(Pennisetum glaucum L.)的六倍体杂种的基因组不稳定的潜在机制。两个亲本基因组的染色体都因微核而丢失。我们的分析表明,基因组的不稳定性优先发生在六倍体杂种的分生组织的根组织中,而染色体的消除不仅是由着丝粒失活引起的。除着丝粒功能障碍外,未修复的DNA双链断裂可能会导致合成杂种中的染色体碎片。

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