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首页> 外文期刊>Breeding science >Comparative nucleotide sequence analysis of the D genome-specific sequence-tagged-site locus A1 in Triticum aestivum and its implication for the origin of subspecies sphaerococcum
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Comparative nucleotide sequence analysis of the D genome-specific sequence-tagged-site locus A1 in Triticum aestivum and its implication for the origin of subspecies sphaerococcum

机译:小麦中D基因组特异性序列标记位点基因座A1的比较核苷酸序列分析及其对球形亚种的起源的启示

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Common wheat (Triticum aestivum) evolved through hybridization between cultivated tetraploid emmer wheat (T. turgidum), which has A and B genomes, and the wild diploid species, Aegilops tauschii, which has the D genome. Although the evolution of common wheat is generally understood, specific details remain unclear. For example, the phylogenetic relationships and origins of the six wheat subspecies (ssp. spelta, macha, vavilovi, aestivum, compactum, and sphaerococcum) have not yet been thoroughly resolved. To clarify the origin of ssp. sphaerococcum, we employed comparative sequence analysis of the D genome-specific sequence-tagged-site (STS) locus A1 in common wheat accessions, including sphaerococcum. Only the two known alleles, type A and type B were found among the accessions. Of the two sphaerococcum accessions, both possessed the type A allele. Four aestivum accessions also possessed the type A allele, while the remaining three accessions possessed the type B allele. Conversely, the accessions of the four remaining subspecies possessed the type B allele. Since sphaerococcum has morphological traits that differ from aestivum and which are pleiotropically regulated by a single recessive gene designated s, sphaerococcum most likely originated from aestivum, with the type A allele at the AI locus arising through a spontaneous mutation at the s locus.
机译:普通小麦(Triticum aestivum)通过具有A和B基因组的栽培四倍体Emmer小麦(T. turgidum)与具有D基因组的野生二倍体物种Aegilops tauschii杂交而进化而来。尽管通常了解普通小麦的进化过程,但具体细节仍不清楚。例如,尚未完全解决六个小麦亚种(spel。spelta,macha,vavilovi,aestivum,compactum和sphaerococcum)的系统发育关系和起源。澄清ssp的起源。 sphaerococcum,我们对包括小麦球菌在内的普通小麦品种的D基因组特异性序列标记位点(STS)基因座A1进行了比较序列分析。在种质中仅发现两个已知的等位基因A型和B型。在两个球形球菌中,都具有A型等位基因。四个普通小麦种还具有A型等位基因,其余三个种属具有B型等位基因。相反,其余四个亚种的种属具有B型等位基因。由于球形球菌的形态特征与普通小麦不同,并且由单一隐性基因指定为s进行多效调控,因此球形球菌很可能起源于普通小麦,在AI基因座上的A型等位基因是由该基因座的自发突变引起的。

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