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早熟染色体的寡核苷酸-FISH 可提高核型分析和基因组组装。

Oligo-FISH of Pachytene Chromosomes Improves Karyotyping and Genome Assembly.

机构信息

State Key Laboratory of Tree Genetics and Breeding, Co-Innovation Center for Sustainable Forestry in Southern China, College of Forestry, Nanjing Forestry University, Nanjing 210037, China.

出版信息

Int J Mol Sci. 2023 Jun 9;24(12):9950. doi: 10.3390/ijms24129950.

Abstract

Poplar was one of the first woody species whose individual chromosomes could be identified using chromosome specific painting probes. Nevertheless, high-resolution karyotype construction remains a challenge. Here, we developed a karyotype based on the meiotic pachytene chromosome of which is a Chinese native species with many excellent traits. This karyotype was anchored by oligonucleotide (oligo)-based chromosome specific painting probes, a centromere-specific repeat (Ps34), ribosomal DNA, and telomeric DNA. We updated the known karyotype formula for to 2n = 2x = 38 = 26m + 8st + 4t and the karyotype was 2C. The fluorescence in situ hybridization (FISH) results revealed some errors in the current genome assembly. The 45S rDNA loci were located at the end of the short arm of chromosomes 8 and 14 by FISH. However, they were assembled on pseudochromosomes 8 and 15. In addition, the Ps34 loci were distributed in every centromere of the chromosome in the FISH results, but they were only found to be present in pseudochromosomes 1, 3, 6, 10, 16, 17, 18, and 19. Our results reveal that pachytene chromosomes oligo-FISH is a powerful tool for constructing high-resolution karyotypes and improving the quality of genome assembly.

摘要

杨属是最早能够使用染色体特异性绘画探针鉴定单个染色体的木本物种之一。然而,高分辨率核型构建仍然是一个挑战。在这里,我们开发了一种基于 的减数分裂粗线期染色体的核型, 是一种具有许多优良特性的中国本土物种。该核型通过基于寡核苷酸 (oligo) 的染色体特异性绘画探针、着丝粒特异性重复 (Ps34)、核糖体 DNA 和端粒 DNA 进行锚定。我们更新了 的已知核型公式为 2n = 2x = 38 = 26m + 8st + 4t,核型为 2C。荧光原位杂交 (FISH) 结果表明当前 的基因组组装存在一些错误。45S rDNA 基因座通过 FISH 定位在染色体 8 和 14 的短臂末端,但它们被组装在假染色体 8 和 15 上。此外,Ps34 基因座在 FISH 结果中分布在 染色体的每个着丝粒上,但仅在假染色体 1、3、6、10、16、17、18 和 19 中发现它们的存在。我们的结果表明,粗线期染色体寡核苷酸 FISH 是构建高分辨率核型和提高基因组组装质量的有力工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/005c/10297927/da438fca01a5/ijms-24-09950-g001.jpg

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