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Jointed goatgrass (Aegilops cylindrica Host) genetic diversity and hybridization with wheat (Triticum aestivum L.).

机译:节理山羊草(Aegilops cylindrica Host)的遗传多样性和与小麦(Triticum aestivum L.)的杂交。

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Jointed goatgrass (Aegilops cylindrica Host; 2n=4x=28; CCDD) is an agriculturally important species both as a weed and as a genetic resource for wheat (Triticum aestivum L.; 2n=6x=42; AABBDD) improvement. In order to better understand the evolution of this species, the diversity of Ae. cylindrica was evaluated along with its progenitors, Ae. markgrafii (Greuter) Hammer (2n=2x=14; CC) and Ae. tauschii Coss. (2n=2x=14; DD), using chloroplast and nuclear microsatellite markers. Ae. cylindrica had lower levels of plastome and nuclear diversity than its progenitors. The plastome diversity of Ae. cylindrica was lower than its nuclear diversity. Ae. cylindrica was found to have either C- or D-type plastomes, derived from Ae. markgrafii or Ae. tauschii, respectively, where the C-type plastome was found to occur at a lower frequency than the D-type plastome. The nuclear genomes of Ae. cylindrica accessions with C- or D-type plastome were found to be very closely related, suggesting a monotypic origin. Furthermore, analyses suggests that Ae. tauschii ssp. tauschii contributed its D genome and D-type plastome to Ae. cylindrica. Ae. cylindrica accessions collected near Van Lake in southeastern Turkey, an area where Ae. tauschii ssp. tauschii and Ae. markgrafii overlap, showed high allelic diversity and may represent the site where Ae. cylindrica formed. Population structure analyses suggested a lack of regional genetic structure in Ae. cylindrica and evidence of migration of Ae. cylindrica among various regions. Finally, Ae. cylindrica accessions in the USA were found to be closely related to accessions from at least three regions of its native range - central Anatolia, central East Turkey and western Armenia, and Caucasia.; Wheat and jointed goatgrass are closely related and both have the D-genome. These two species can hybridize and produce backcross derivatives under natural conditions, a situation that may allow gene flow between these two species. In order to better understand mating patterns between these two species, a total of 413 first-generation backcross (BC1) seeds obtained from 127 wheat-jointed goatgrass F1 hybrids, produced under natural conditions, were evaluated for their parentage using chloroplast and nuclear microsatellite markers. (Abstract shortened by UMI.)
机译:节理山羊草(Aegilops cylindrica寄主; 2n = 4x = 28; CCDD)是一种重要的农业品种,既作为杂草又作为小麦的遗传资源(普通小麦; 2n = 6x = 42; AABBDD)改良。为了更好地了解该物种的进化,Ae的多样性。对cylindrica及其祖先Ae进行了评估。 markgrafii(Greuter)锤(2n = 2x = 14; CC)和Ae。 Tauschii Coss。 (2n = 2x = 14; DD),使用叶绿体和核微卫星标记。 e cylindrica的质体和核多样性水平低于其祖细胞。 Ae的质体多样性。 cylindrica低于其核多样性。 e cylindrica被发现具有源自Ae的C型或D型质体。 markgrafii或Ae。 tauschii,其中发现C型质体的发生频率低于D型质体的发生频率。 Ae的核基因组。 cylindrica与C型或D型质体组的登录关系非常密切,表明是单型起源。此外,分析表明Ae。陶氏菌tauschii为Ae贡献了其D基因组和D型质体组。 cylindrica。 e cylindrica种质收集在土耳其东南部范湖附近,该地区是Ae。陶氏菌Tauschii和Ae。 markgrafii重叠,表现出高等位基因多样性,可能代表Ae的位点。圆柱状形成。人口结构分析表明,东非缺乏区域遗传结构。 cylindrica和Ae迁移的证据。 cylindrica在各个地区。最后,爱发现在美国的圆筒形花序的种质与来自其本国范围的至少三个地区的种质密切相关-安纳托利亚中部,东土耳其中部和亚美尼亚中部以及高加索地区。小麦和节理的山羊草密切相关,并且都具有D基因组。这两个物种可以在自然条件下杂交并产生回交衍生物,这种情况可能允许基因在这两个物种之间流动。为了更好地了解这两个物种之间的交配模式,使用叶绿体和核微卫星标记评估了在自然条件下从127个小麦连接的山羊草F1杂种中获得的总共413个第一代回交(BC1)种子的亲缘关系。 。 (摘要由UMI缩短。)

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