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利用混合寡核苷酸对粗山羊草属物种进行染色体特异性标记。

Chromosome-specific painting in Thinopyrum species using bulked oligonucleotides.

机构信息

State Key Laboratory of Crop Gene Exploration and Utilization in Southwest China, Sichuan Agricultural University, Chengdu, 611130, Sichuan, China.

Triticeae Research Institute, Sichuan Agricultural University, Chengdu, 611130, Sichuan, China.

出版信息

Theor Appl Genet. 2023 Aug 4;136(8):177. doi: 10.1007/s00122-023-04423-w.

Abstract

Chromosome-specific painting probes were developed to identify the individual chromosomes from 1 to 7E in Thinopyrum species and detect alien genetic material of the E genome in a wheat background. The E genome of Thinopyrum is closely related to the ABD genome of wheat (Triticum aestivum L.) and harbors genes conferring beneficial traits to wheat, including high yield, disease resistance, and unique end-use quality. Species of Thinopyrum vary from diploid (2n = 2x = 14) to decaploid (2n = 10x = 70), and chromosome structural variation and differentiation have arisen during polyploidization. To investigate the variation and evolution of the E genome, we developed a complete set of E genome-specific painting probes for identification of the individual chromosomes 1E to 7E based on the genome sequences of Th. elongatum (Host) D. R. Dewey and wheat. By using these new probes in oligonucleotide-based chromosome painting, we showed that Th. bessarabicum (PI 531711, EE) has a close genetic relationship with diploid Th. elongatum (EE), with five chromosomes (1E, 2E, 3E, 6E, and 7E) maintaining complete synteny in the two species except for a reciprocal translocation between 4 and 5E. All 14 pairs of chromosomes of tetraploid Th. elongatum have maintained complete synteny with those of diploid Th. elongatum (Thy14), but the two sets of E genomes have diverged. This study also demonstrated that the E genome-specific painting probes are useful for rapid and effective detection of the alien genetic material of E genome in wheat-Thinopyrum derived lines.

摘要

染色体特异性涂染探针被开发出来,用于鉴定小麦背景下的 1 号至 7E 号小麦的个别染色体,并检测小麦 E 基因组中的外源遗传物质。小麦的 E 基因组与 Thinopyrum 的 ABD 基因组密切相关,并且具有赋予小麦有益特性的基因,包括高产、抗病性和独特的终端用途品质。Thinopyrum 物种从二倍体(2n=2x=14)到十倍体(2n=10x=70)不等,在多倍化过程中出现了染色体结构的变异和分化。为了研究 E 基因组的变异和进化,我们根据 Th. elongatum (Host) D. R. Dewey 和小麦的基因组序列,开发了一套完整的 E 基因组特异性涂染探针,用于鉴定单个染色体 1E 到 7E。通过在寡核苷酸染色体涂染中使用这些新的探针,我们表明,E 基因组的 Th. bessarabicum (PI 531711, EE)与二倍体 Th. elongatum (EE)具有密切的遗传关系,除了 4 号和 5 号染色体之间的相互易位外,这两个物种的 5 个染色体(1E、2E、3E、6E 和 7E)保持完全的同线性。四倍体 Th. elongatum 的 14 对染色体与二倍体 Th. elongatum (Thy14)完全保持同线性,但两套 E 基因组已经发生了分歧。这项研究还表明,E 基因组特异性涂染探针可用于快速有效地检测小麦-Thinopyrum 衍生系中的 E 基因组的外源遗传物质。

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