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Studies on chloroplast and nuclear rDNA in hexaploid bread wheat and its relatives

机译:六倍体面包小麦及其近缘种的叶绿体和核rDNA的研究

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Though allohexaploid bread wheat (Triticum aestivum) is grown on more acreage than any other cereal crop, its evolutionary history and origin of its three genomes have not been cleared up in every detail. The wheats form a polyploid series with diploid, tetraploid and hexaploid forms. Hexaploid wheats (AABBDD) may have evolved by hybridization between the AABB tetraploid as cytoplasm donor and the D genome diploid Aegilops tauschii. The origin of B genome is still a matter of debate. In the present study sequences of chloroplast and nuclear rDNA regions were used for giving new data to contribute to our knowledge on evolution of wheat. Analysis of cloned nrITS sequences of T. aestivum showed that 1) more than one ITS sequence type can be derived from the same sample, 2) a rye chromosome element formerly introgressed into wheat genome can be detected and 3) a partial segment of ITS similar to that of einkorn wheats (AA genome) can be identified. These results give evidences for ancient and recent introgressions and could help us to identify all of the three genomes of hexaploid bread wheat.
机译:尽管异六倍体面包小麦(Triticum aestivum)的种植面积比任何其他谷物作物都多,但其进化历史和三个基因组的起源尚未得到每个细节的证实。小麦形成具有二倍体,四倍体和六倍体形式的多倍体系列。六倍体小麦(AABBDD)可能是通过作为细胞质供体的AABB四倍体与D基因组二倍体Aegilops tauschii杂交产生的。 B基因组的起源仍然是一个争论的问题。在本研究中,叶绿体和核rDNA区域的序列用于提供新数据,以有助于我们了解小麦的进化。克隆的普通小麦的nrITS序列分析表明:1)可以从同一样品中获得一种以上的ITS序列类型; 2)可以检测到以前渗入小麦基因组的黑麦染色体元件; 3)ITS的部分片段相似可以鉴定出与单核小麦相比(AA基因组)。这些结果为古代和近代的基因渗入提供了证据,并可以帮助我们鉴定六倍体面包小麦的所有三个基因组。

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