首页> 美国卫生研究院文献>Annals of Botany >Flow sorting of C-genome chromosomes from wild relatives of wheat Aegilops markgrafii Ae. triuncialis and Ae. cylindrica and their molecular organization
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Flow sorting of C-genome chromosomes from wild relatives of wheat Aegilops markgrafii Ae. triuncialis and Ae. cylindrica and their molecular organization

机译:来自小麦Aegilops markgrafiiAe的野生近缘种的C基因组染色体的流分类。 Triuncialis和Ae。 cylindrica及其分子组织

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摘要

>Background and Aims Aegilops markgrafii (CC) and its natural hybrids Ae. triuncialis (UtUtCtCt) and Ae. cylindrica (DcDcCcCc) represent a rich reservoir of useful genes for improvement of bread wheat (Triticum aestivum), but the limited information available on their genome structure and the shortage of molecular (cyto-) genetic tools hamper the utilization of the extant genetic diversity. This study provides the complete karyotypes in the three species obtained after fluorescent in situ hybridization (FISH) with repetitive DNA probes, and evaluates the potential of flow cytometric chromosome sorting.>Methods The flow karyotypes obtained after the analysis of 4',6-diamidino-2-phenylindole (DAPI)-stained chromosomes were characterized and the chromosome content of the peaks on the flow karyotypes was determined by FISH. Twenty-nine conserved orthologous set (COS) markers covering all seven wheat homoeologous chromosome groups were used for PCR with DNA amplified from flow-sorted chromosomes and genomic DNA.>Key Results FISH with repetitive DNA probes revealed that chromosomes 4C, 5C, 7Ct, T6UtS.6UtL-5CtL, 1Cc and 5Dc could be sorted with purities ranging from 66 to 91 %, while the remaining chromosomes could be sorted in groups of 2–5. This identified a partial wheat–C-genome homology for group 4 and 5 chromosomes. In addition, 1C chromosomes were homologous with group 1 of wheat; a small segment from group 2 indicated 1C–2C rearrangement. An extensively rearranged structure of chromosome 7C relative to wheat was also detected.>Conclusions The possibility of purifying Aegilops chromosomes provides an attractive opportunity to investigate the structure and evolution of the Aegilops C genome and to develop molecular tools to facilitate the identification of alien chromatin and support alien introgression breeding in bread wheat.
机译:>背景和目标:埃及伊蚊(Aegilops markgrafii,CC)及其自然杂交种Ae。 Triuncialis(U t U t C t C t )和Ae。 cylindrica(D c D c C c C c )代表了丰富的有用基因,可用于改善面包小麦(Triticum aestivum),但有关其基因组结构的信息有限,以及分子(细胞)遗传工具的短缺,阻碍了现有遗传多样性的利用。本研究提供了通过重复DNA探针进行荧光原位杂交(FISH)后获得的三种物种的完整核型,并评估了流式细胞仪染色体分选的潜力。>方法表征了4',6-二ino基-2-苯基吲哚(DAPI)染色的染色体,并通过FISH确定了流型核型峰的染色体含量。将覆盖全部七个小麦同源染色体组的29个保守直系同源序列(COS)标记用于从流动排序的染色体和基因组DNA扩增的DNA进行PCR。>关键结果带有重复DNA探针的FISH显示该染色体4C,5C,7C t ,T6U t S.6U t L-5C t L,1C c 和5D c 的纯度可以从66%到91%进行分类,而其余的染色体可以2-5组进行分类。这确定了第4组和第5组染色体的部分小麦C基因组同源性。另外,1C染色体与小麦的第1组同源。第2组的一小部分表明1C–2C重排。 >结论提纯Aegilops染色体的可能性为研究Aegilops C基因组的结构和进化提供了一个诱人的机会,并开发了分子工具以促进面包中外来染色质的鉴定和支持外来基因渗入育种。

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