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High-Resolution Single-Copy Gene Fluorescence in Situ Hybridization and Its Use in the Construction of a Cytogenetic Map of Maize Chromosome 9

机译:高分辨率单拷贝基因荧光原位杂交及其在玉米9染色体细胞遗传图谱构建中的应用

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摘要

High-resolution cytogenetic maps provide important biological information on genome organization and function, as they correlate genetic distance with cytological structures, and are an invaluable complement to physical sequence data. The most direct way to generate a cytogenetic map is to localize genetically mapped genes onto chromosomes by fluorescence in situ hybridization (FISH). Detection of single-copy genes on plant chromosomes has been difficult. In this study, we developed a squash FISH procedure allowing successful detection of single-copy genes on maize (Zea mays) pachytene chromosomes. Using this method, the shortest probe that can be detected is 3.1 kb, and two sequences separated by ∼100 kb can be resolved. To show the robust nature of this protocol, we localized nine genetically mapped single-copy genes on chromosome 9 in one FISH experiment. Integration of existing information from genetic maps and the BAC contig-based physical map with the cytological structure of chromosome 9 provides a comprehensive cross-referenced cytogenetic map and shows the dramatic reduction of recombination in the pericentromeric heterochromatic region. To establish a feasible mapping system for maize, we also developed a probe cocktail for unambiguous identification of the 10 maize pachytene chromosomes. These results provide a starting point toward constructing a high-resolution integrated cytogenetic map of maize.
机译:高分辨率细胞遗传学图谱提供了有关基因组组织和功能的重要生物学信息,因为它们将遗传距离与细胞学结构相关联,并且是物理序列数据的宝贵补充。生成细胞遗传图谱的最直接方法是通过荧光原位杂交(FISH)将遗传图谱基因定位到染色体上。检测植物染色体上的单拷贝基因非常困难。在这项研究中,我们开发了一种南瓜FISH程序,可以成功检测玉米(Zea mays)粗线染色体上的单拷贝基因。使用这种方法,可以检测到的最短探针为3.1 kb,并且可以分辨出两个间隔约为100 kb的序列。为了显示此协议的鲁棒性,我们在一个FISH实验中将9个基因定位的单拷贝基因定位在9号染色体上。来自遗传图谱和基于BAC重叠群的物理图谱的现有信息与9号染色体的细胞学结构的整合提供了全面的交叉引用的细胞遗传学图谱,并显示了着重在着丝粒的异色区的重组显着减少。为了建立一个可行的玉米作图系统,我们还开发了一个探针混合物,用于明确鉴定10个玉米粗线染色体。这些结果为构建高分辨率的玉米综合细胞遗传图谱提供了起点。

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