首页> 美国卫生研究院文献>Frontiers in Physiology >Elucidating the molecular bases of epigenetic inheritance in non-model invertebrates: the case of the root-knot nematode Meloidogyne incognita
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Elucidating the molecular bases of epigenetic inheritance in non-model invertebrates: the case of the root-knot nematode Meloidogyne incognita

机译:阐明非模式无脊椎动物表观遗传遗传的分子基础:根结线虫Meloidogyne incognita的情况

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摘要

Root-knot nematodes of the genus Meloidogyne are biotrophic plant parasites that exhibit different life cycles and reproduction modes, ranging from classical amphimixis to obligatory mitotic parthenogenesis (apomixis), depending on the species. Meloidogyne incognita, an apomictic species, exhibits a worldwide distribution and a wide host range affecting more than 3000 plant species. Furthermore, evidences suggest that apomixis does not prevent M. incognita from adapting to its environment in contrast to what is expected from mitotic parthenogenesis that should theoretically produce clonal progenies. This raises questions about mechanisms of genome plasticity leading to genetic variation and adaptive evolution in apomictic animals. We reasoned that epigenetic mechanisms might in part be responsible for the generation of phenotypic variants that provide potential for rapid adaptation. We established therefore a pipeline to investigate the principal carriers of epigenetic information, DNA methylation and post-translational histone modifications. Even if M. incognita possesses the epigenetic machinery i.e., chromatin modifying enzymes, 5-methyl-cytosine and 5-hydroxy-methyl-cytosine content is absent or very weak. In contrast, we demonstrated that the canonical histone modifications are present and chromatin shows typical nucleosome structure. This work is the first characterization of carriers of epigenetic information in M. incognita and constitutes a preamble to further investigate if M. incognita development and its adaptation to plant hosts are under epigenetic control. Our pipeline should allow performing similar types of studies in any non-model organism.
机译:根结线虫属的根结线虫是生物营养型植物寄生虫,其生命周期和繁殖方式各异,从经典的两栖类到强制性有丝分裂性孤雌生殖(apomixis),取决于物种。无融合生殖的根结线虫(Meloidogyne incognita)在世界范围内分布,宿主范围广泛,影响了3000多种植物。此外,有证据表明,与理论上应该产生克隆后代的有丝分裂孤雌生殖所期望的相反,无融合生殖不会阻止隐杆线虫适应其环境。这就引起了有关导致无融合生殖动物遗传变异和适应性进化的基因组可塑性机制的问题。我们认为表观遗传机制可能部分负责表型变异的产生,这些表型变异提供了快速适应的潜力。因此,我们建立了一个管道来研究表观遗传信息,DNA甲基化和翻译后组蛋白修饰的主要载体。即使隐身分枝杆菌具有表观遗传机制,即染色质修饰酶,5-甲基-胞嘧啶和5-羟基-甲基-胞嘧啶含量也不存在或非常弱。相反,我们证明存在典型的组蛋白修饰,染色质显示出典型的核小体结构。这项工作是隐孢子虫表观遗传信息携带者的第一个表征,并构成了进一步研究隐孢子虫的发展及其对植物宿主适应性的序言。我们的管道应允许在任何非模型生物中进行类似类型的研究。

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