首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >A Transgenomic Cytogenetic Sorghum (Sorghum propinquum) Bacterial Artificial Chromosome Fluorescence in Situ Hybridization Map of Maize (Zea mays L.) Pachytene Chromosome 9, Evidence for Regions of Genome Hyperexpansion
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A Transgenomic Cytogenetic Sorghum (Sorghum propinquum) Bacterial Artificial Chromosome Fluorescence in Situ Hybridization Map of Maize (Zea mays L.) Pachytene Chromosome 9, Evidence for Regions of Genome Hyperexpansion

机译:玉米(Zea mays L.)Pachytene染色体9的转基因细胞遗传高粱(Sorghum propinquum)细菌人工染色体荧光原位杂交图,基因组过度扩增区域的证据

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A cytogenetic FISH map of maize pachytene-stage chromosome 9 was produced with 32 maize marker-selected sorghum BACs as probes. The genetically mapped markers used are distributed along the linkage maps at an average spacing of 5 cM. Each locus was mapped by means of multicolor direct FISH with a fluorescently labeled probe mix containing a whole-chromosome paint, a single sorghum BAC clone, and the centromeric sequence, CentC. A maize-chromosome-addition line of oat was used for bright unambiguous identification of the maize 9 fiber within pachytene chromosome spreads. The locations of the sorghum BAC–FISH signals were determined, and each new cytogenetic locus was assigned a centiMcClintock position on the short (9S) or long (9L) arm. Nearly all of the markers appeared in the same order on linkage and cytogenetic maps but at different relative positions on the two. The CentC FISH signal was localized between cdo17 (at 9L.03) and tda66 (at 9S.03). Several regions of genome hyperexpansion on maize chromosome 9 were found by comparative analysis of relative marker spacing in maize and sorghum. This transgenomic cytogenetic FISH map creates anchors between various maps of maize and sorghum and creates additional tools and information for understanding the structure and evolution of the maize genome.
机译:用32个玉米标记选择的高粱BAC作探针,生成了玉米粗线期9号染色体的细胞遗传FISH图。所使用的遗传图谱标记沿着连锁图以5 cM的平均间隔分布。每个位点通过多色直接FISH与荧光标记的探针混合物进行映射,该探针混合物包含全染色体涂料,单个高粱BAC克隆和着丝粒序列CentC。燕麦的玉米染色体加成系用于明亮地识别粗线染色体染色体传播中的玉米9纤维。确定了高粱BAC–FISH信号的位置,并为每个新的细胞遗传基因座在短臂(9S)或长臂(9L)上指定了centiMcClintock位置。几乎所有标记在连锁图和细胞遗传图上都以相同的顺序出现,但在两者上的相对位置不同。 CentC FISH信号位于cdo17(9L.03)和tda66(9S.03)之间。通过对玉米和高粱中相对标记间距的比较分析,发现了玉米第9号染色体上基因组过度扩增的几个区域。这种转基因组细胞遗传学FISH图谱在玉米和高粱的各种图谱之间创建了锚点,并创建了其他工具和信息,以了解玉米基因组的结构和进化。

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