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恶性疟原虫2号染色体的光学图谱

Optical mapping of Plasmodium falciparum chromosome 2.

作者信息

Jing J, Lai Z, Aston C, Lin J, Carucci D J, Gardner M J, Mishra B, Anantharaman T S, Tettelin H, Cummings L M, Hoffman S L, Venter J C, Schwartz D C

机构信息

W.M. Keck Laboratory for Biomolecular Imaging, New York University, Department of Chemistry, New York, New York 10003 USA.

出版信息

Genome Res. 1999 Feb;9(2):175-81.

PMID:10022982
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC310721/
Abstract

Detailed restriction maps of microbial genomes are a valuable resource in genome sequencing studies but are toilsome to construct by contig construction of maps derived from cloned DNA. Analysis of genomic DNA enables large stretches of the genome to be mapped and circumvents library construction and associated cloning artifacts. We used pulsed-field gel electrophoresis purified Plasmodium falciparum chromosome 2 DNA as the starting material for optical mapping, a system for making ordered restriction maps from ensembles of individual DNA molecules. DNA molecules were bound to derivatized glass surfaces, cleaved with NheI or BamHI, and imaged by digital fluorescence microscopy. Large pieces of the chromosome containing ordered DNA restriction fragments were mapped. Maps were assembled from 50 molecules producing an average contig depth of 15 molecules and high-resolution restriction maps covering the entire chromosome. Chromosome 2 was found to be 976 kb by optical mapping with NheI, and 946 kb with BamHI, which compares closely to the published size of 947 kb from large-scale sequencing. The maps were used to further verify assemblies from the plasmid library used for sequencing. Maps generated in silico from the sequence data were compared to the optical mapping data, and good correspondence was found. Such high-resolution restriction maps may become an indispensable resource for large-scale genome sequencing projects.

摘要

微生物基因组的详细限制图谱在基因组测序研究中是一种宝贵的资源,但通过从克隆DNA衍生的图谱进行重叠群构建来构建却很繁琐。对基因组DNA的分析能够对大片段基因组进行图谱绘制,并规避文库构建及相关的克隆假象。我们使用脉冲场凝胶电泳纯化的恶性疟原虫2号染色体DNA作为光学图谱绘制的起始材料,光学图谱绘制是一种从单个DNA分子集合中制作有序限制图谱的系统。DNA分子被结合到衍生化的玻璃表面,用NheI或BamHI切割,并用数字荧光显微镜成像。对包含有序DNA限制片段的大片段染色体进行了图谱绘制。从50个分子组装图谱,产生平均15个分子的重叠群深度以及覆盖整个染色体的高分辨率限制图谱。通过用NheI进行光学图谱绘制,发现2号染色体为976 kb,用BamHI绘制则为946 kb,这与大规模测序公布的947 kb大小非常接近。这些图谱被用于进一步验证用于测序的质粒文库的组装。将从序列数据中通过计算机模拟生成的图谱与光学图谱数据进行比较,发现两者吻合良好。这种高分辨率限制图谱可能会成为大规模基因组测序项目不可或缺的资源。

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本文引用的文献

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Whole-genome shotgun optical mapping of Deinococcus radiodurans.耐辐射球菌的全基因组鸟枪法光学图谱分析。
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Optical mapping: an approach for fine mapping.光学作图:一种精细定位的方法。
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High-resolution restriction maps of bacterial artificial chromosomes constructed by optical mapping.通过光学图谱构建的细菌人工染色体的高分辨率限制图谱。
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Science. 1993 Oct 1;262(5130):110-4. doi: 10.1126/science.8211116.
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Establishing a physical map of chromosome No. 4 of Plasmodium falciparum.
Mol Biochem Parasitol. 1994 Jun;65(2):189-99. doi: 10.1016/0166-6851(94)90071-x.