ICAR-National Bureau of Fish Genetic Resources, Canal Ring Road, P.O. Dilkusha, Lucknow 226002, India.
Division of Agricultural Bioinformatics, ICAR-Indian Agricultural Statistics Research Institute, Library Avenue, New Delhi 110012, India.
Int J Mol Sci. 2022 Dec 15;23(24):15958. doi: 10.3390/ijms232415958.
Construction of a physical chromosome map of a species is important for positional cloning, targeted marker development, fine mapping of genes, selection of candidate genes for molecular breeding, as well as understanding the genome organization. The genomic libraries in the form of bacterial artificial chromosome (BAC) clones are also a very useful resource for physical mapping and identification and isolation of full-length genes and the related acting elements. Some BAC-FISH based studies reported in the past were gene based physical chromosome maps of (magur) to understand the genome organization of the species and to establish the relationships with other species in respect to genes' organization and evolution in the past. In the present study, we generated end sequences of the BAC clones and analyzed those end sequences within the scaffolds of the draft genome of magur to identify and map the genes bioinformatically for each clone. A total of 36 clones mostly possessing genes were identified and used in probe construction and their subsequent hybridization on the metaphase chromosomes of magur. This study successfully mapped all 36 specific clones on 16 chromosome pairs, out of 25 pairs of magur chromosomes. These clones are now recognized as chromosome-specific makers, which are an aid in individual chromosome identification and fine assembly of the genome sequence, and will ultimately help in developing anchored genes' map on the chromosomes of for understanding their organization, inheritance of important fishery traits and evolution of magur with respect to channel catfish, zebrafish and other species.
构建物种的物理染色体图谱对于定位克隆、靶向标记开发、基因精细定位、分子育种候选基因的选择以及了解基因组组织都非常重要。以细菌人工染色体 (BAC) 克隆形式构建的基因组文库也是物理图谱和全长基因及相关调控元件的鉴定和分离的非常有用的资源。过去有一些基于 BAC-FISH 的研究报告,这些研究是关于(鲤鱼)的基因物理染色体图谱,以了解该物种的基因组组织,并在基因组织和进化方面建立与其他物种的关系。在本研究中,我们生成了 BAC 克隆的末端序列,并在鲤鱼基因组草图的支架内分析了这些末端序列,以进行生物信息学鉴定和图谱绘制每个克隆的基因。总共鉴定出 36 个主要包含基因的克隆,并用于探针构建及其随后在鲤鱼中期染色体上的杂交。这项研究成功地将 36 个特定克隆映射到鲤鱼的 16 对染色体上,其中包括 25 对染色体。这些克隆现在被认为是染色体特异性标记物,有助于个体染色体的识别和基因组序列的精细组装,并最终有助于在鲤鱼的染色体上开发锚定基因图谱,以了解其组织、重要渔业性状的遗传以及鲤鱼相对于鲶鱼、斑马鱼和其他物种的进化。