PAIRWISE END SEQUENCING - A UNIFIED APPROACH TO GENOMIC MAPPING AND SEQUENCING

被引:79
作者
ROACH, JC [1 ]
BOYSEN, C [1 ]
WANG, K [1 ]
HOOD, L [1 ]
机构
[1] CALTECH,DIV BIOL,PASADENA,CA 91125
关键词
D O I
10.1016/0888-7543(95)80219-C
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Strategies for large-scale genomic DNA sequencing currently require physical mapping, followed by detailed mapping, and finally sequencing. The level of mapping detail determines the amount of effort, or sequence redundancy, required to finish a project. Current strategies attempt to find a balance between mapping and sequencing efforts. One such approach is to employ strategies that use sequence data to build physical maps. Such maps alleviate the need for prior mapping and reduce the final required sequence redundancy. To this end, the utility of correlating pairs of sequence data derived from both ends of subcloned templates is well recognized. However, optimal strategies employing such pairwise data have not been established. In the present work, we simulate and analyze the parameters of pairwise sequencing projects including template length, sequence read length, and total sequence redundancy. One pairwise strategy based on sequencing both ends of plasmid subclones is recommended and illustrated with raw data simulations. We find that pairwise strategies are effective with both small (cosmid) and large (megaYAC) targets and produce ordered sequence data with a high level of mapping completeness. They are ideal for fine-scale mapping and gene finding and as initial steps for either a high- or a low-redundancy sequencing effort. Such strategies are highly automatable. (C) 1995 Academic Press, Inc.
引用
收藏
页码:345 / 353
页数:9
相关论文
共 15 条
[1]   GENOME SEQUENCING ON BOTH STRANDS - THE JANUS STRATEGY [J].
BURLAND, V ;
DANIELS, DL ;
PLUNKETT, G ;
BLATTNER, FR .
NUCLEIC ACIDS RESEARCH, 1993, 21 (15) :3385-3390
[2]   ORDERED SHOTGUN SEQUENCING, A STRATEGY FOR INTEGRATED MAPPING AND SEQUENCING OF YAC CLONES [J].
CHEN, EY ;
SCHLESSINGER, D ;
KERE, J .
GENOMICS, 1993, 17 (03) :651-656
[3]   RANDOM SUBCLONING OF SONICATED DNA - APPLICATION TO SHOTGUN DNA-SEQUENCE ANALYSIS [J].
DEININGER, PL .
ANALYTICAL BIOCHEMISTRY, 1983, 129 (01) :216-223
[4]  
EDWARDS A, 1991, Methods (Orlando), V3, P41, DOI 10.1016/S1046-2023(05)80162-8
[5]   AUTOMATED DNA SEQUENCING OF THE HUMAN HPRT LOCUS [J].
EDWARDS, A ;
VOSS, H ;
RICE, P ;
CIVITELLO, A ;
STEGEMANN, J ;
SCHWAGER, C ;
ZIMMERMANN, J ;
ERFLE, H ;
CASKEY, CT ;
ANSORGE, W .
GENOMICS, 1990, 6 (04) :593-608
[6]   COMBINATORIC STRATEGIES FOR GENOME MAPPING [J].
EVANS, GA .
BIOESSAYS, 1991, 13 (01) :39-44
[7]  
Green E D, 1991, PCR Methods Appl, V1, P77
[8]   EFFICIENT LARGE-SCALE SEQUENCING OF THE ESCHERICHIA-COLI GENOME - IMPLEMENTATION OF A TRANSPOSON-BASED AND PCR-BASED STRATEGY FOR THE ANALYSIS OF ORDERED LAMBDA PHAGE CLONES [J].
KASAI, H ;
ISONO, S ;
KITAKAWA, M ;
MINENO, J ;
AKIYAMA, H ;
KURNIT, DM ;
BERG, DE ;
ISONO, K .
NUCLEIC ACIDS RESEARCH, 1992, 20 (24) :6509-6515
[9]  
KOOP BF, 1993, BIOTECHNIQUES, V14, P442
[10]   EXOQUENCE DNA SEQUENCING [J].
LI, C ;
TUCKER, PW .
NUCLEIC ACIDS RESEARCH, 1993, 21 (05) :1239-1244