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Development of chloroplast-specific microsatellite markers for molecular characterization of alloplasmic lines and phylogenetic analysis in wheat.

机译:叶绿体特异性微卫星标记的开发,用于小麦等位基因系的分子表征和系统发育分析。

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摘要

Wheat (Triticum aestivum L.) is strictly a self-pollinated crop, where hybrid breeding requires well-characterized cytoplasmic male sterile (CMS) lines. The CMS has mostly been developed by substituting nuclear genome of wheat into the cytoplasm from wild relatives. Molecular characterization of 90 genotypes including 82 CMS lines originating from five different species, namely Aegilops speltoides, Ae. kotschyi, Ae. variabilis, Triticum araraticum and T. timopheevii, and eight popular varieties was carried out. Consequently, a set of 25 microsatellite markers specific to chloroplast (cpSSRs) were designed and successfully validated for specificity of amplification. A total of 15 cpSSRs (60%) were found polymorphic, of which three cpSSRs (TaCM7, TaCM8 and TaCM11) in genic region and twelve cpSSRs were located in intergenic region. Phylogenetic analysis of genotypes using cpSSRs revealed two major groups well in accordance with respective origin. A set of cpSSRs and phylogeny of CMS belonging to different origins developed, which will be helpful for the improvement in CMS system in wheat. The genic cpSSRs can be used for the allele mining and evolutionary studies.
机译:小麦(Triticum aestivum L.)严格来说是自花授粉作物,杂交育种需要特征明确的细胞质雄性不育(CMS)品系。 CMS主要是通过将小麦的核基因组替代野生亲缘种进入细胞质而开发的。包括82个CMS系的90个基因型的分子鉴定,这些系来自五个不同的物种,即埃及盾藻(Aegilops speltoides)。 Ae Kotschyi进行了变种,小麦,小麦和T. timopheevii等8个受欢迎的品种。因此,设计了一组针对叶绿体(cpSSRs)的25个微卫星标记,并成功验证了扩增的特异性。共有15个cpSSRs(60%)被发现是多态的,其中三个cpSSRs(TaCM7,TaCM8和TaCM11)位于基因区,而十二个cpSSRs位于基因间区。使用cpSSRs进行的基因型的系统发育分析揭示了两个主要类别,分别符合各自的起源。建立了一套不同来源的cpSSRs和CMS的系统发生学,将有助于改善小麦CMS系统。基因cpSSRs可用于等位基因挖掘和进化研究。

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