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首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Heritable epigenetic diversity for conservation and utilization of epigenetic germplasm resources of clonal East African Highland banana (EAHB) accessions
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Heritable epigenetic diversity for conservation and utilization of epigenetic germplasm resources of clonal East African Highland banana (EAHB) accessions

机译:克隆东非高原香蕉(EAHB)围攻围网资源保护和利用的遗传表观遗传多样性

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摘要

Key message Genetically identical East African Highland banana (EAHB) clones are epigenetically diverse with heritable epialleles that can contribute to morphological diversity. Heritable epigenetic variation can contribute to agronomic traits in crops and should be considered in germplasm conservation. Despite the genetic uniformity arising from a genetic bottleneck of one ancestral clone, followed by subsequent vegetative propagation, East African Highland bananas (EAHBs) display significant phenotypic diversity potentially arising from somatic mutations, heritable epialleles and/or genotype-by-environment interactions. Here, we use DNA methylation profiling across EAHB accessions representing most of the primary EAHB genepool to demonstrate that the genetically uniform EAHB genepool harbours significant epigenetic diversity. By analysing 724 polymorphic DNA methylation sites by methylation-sensitive AFLP across 90 EAHB cultivars, we could differentiate the EAHB varieties according to their regions (Kenya and Uganda). In contrast, there was minimal association of DNA methylation variation with the five morphological groups that are used to classify EAHBs. We further analysed DNA methylation patterns in parent-offspring cohort, which were maintained in offspring generated by sexual (seed) and asexual (vegetative) propagation, with higher levels of altered DNA methylation observed in vegetatively generated offspring. Our results indicate that the phenotypic diversity of near-isogenic EAHBs is mirrored by considerable DNA methylation variation, which is transmitted between generations by both vegetative reproduction and seed reproduction. Genetically uniform vegetatively propagated crops such as EAHBs harbour considerable heritable epigenetic variation, where heritable epialleles could arise in offspring and contribute to functional traits. This study provides a basis for developing strategies for conservation of epigenetic resources and for integration of epimarkers into crop breeding programmes.
机译:关键消息遗传相同的东非高地香蕉(EAHB)克隆是表现出与形态多样性有助于形态多样性的遗传性血髓的表现形象。遗传的表观遗传变异可以有助于农作物的农艺性状,并应考虑种质保护。尽管祖先克隆的遗传瓶颈产生了遗传均匀性,其次是随后的营养繁殖,东非高地香蕉(EAHBS)显示出显着的表型多样性,可能导致躯体突变,遗传血症和/或基因型逐次相互作用。在这里,我们使用DNA甲基化分析在代表大多数主要EAHB Genepool的EAHB access中,以证明遗传均匀的EAHB Genepool Harbors显着的表观遗传多样性。通过在90个EAHB品种上通过甲基化敏感的AFLP分析724多态性DNA甲基化位点,我们可以根据他们的地区(肯尼亚和乌干达)来区分EAHB品种。相反,DNA甲基化变化与用于分类EAHBS的五种形态基团的最小关系。我们进一步分析了母体后代队列中的DNA甲基化模式,其维持在被性(种子)产生的后代和既血(营养)繁殖,在营养产生的后代观察到更高水平的改变的DNA甲基化。我们的结果表明,通过相当大的DNA甲基化变异,近代甲基虫的表型多样性被镜像,其通过营养繁殖和种子繁殖之间几代人传播。基因均匀的营养繁殖繁殖作物,如EAHBS港口相当大的遗传表观遗传变异,其中遗传性表现因子可能在后代产生并有助于功能性状。本研究为制定介绍表观遗传资源和脱脂症融入作物育种计划的策略提供了基础。

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    Natl Univ Ireland Galway Plant &

    AgriBiosci Res Ctr PABC Ryan Inst Genet &

    Biotechnol Lab Univ Rd Galway H91 REW4 Ireland;

    Natl Univ Ireland Galway Plant &

    AgriBiosci Res Ctr PABC Ryan Inst Genet &

    Biotechnol Lab Univ Rd Galway H91 REW4 Ireland;

    Int Inst Trop Agr IITA POB 30709-00100 Nairobi Kenya;

    Int Inst Trop Agr IITA POB 30709-00100 Nairobi Kenya;

    Int Inst Trop Agr IITA POB 30709-00100 Nairobi Kenya;

    Natl Univ Ireland Galway Plant &

    AgriBiosci Res Ctr PABC Ryan Inst Genet &

    Biotechnol Lab Univ Rd Galway H91 REW4 Ireland;

    Natl Univ Ireland Galway Plant &

    AgriBiosci Res Ctr PABC Ryan Inst Genet &

    Biotechnol Lab Univ Rd Galway H91 REW4 Ireland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学遗传学;
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