Integrated karyotyping of sorghum by in situ hybridization of landed BACs

被引:65
作者
Kim, JS
Childs, KL
Islam-Faridi, MN
Menz, MA
Klein, RR
Klein, PE
Price, HJ
Mullet, JE
Stelly, DM [1 ]
机构
[1] Texas A&M Univ, Dept Soil & Crop Sci, College Stn, TX 77843 USA
[2] Texas A&M Univ, Dept Biochem & Biophys, College Stn, TX 77843 USA
[3] ARS, USDA, So Plains Agr Res Ctr, College Stn, TX 77845 USA
关键词
integrated karyotyping; FISH; sorghum; BAC;
D O I
10.1139/G01-141
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
The reliability of genome analysis and proficiency of genetic manipulation are increased by assignment of linkage groups to specific chromosomes, placement of centromeres, and orientation with respect to telomeres. We have endeavored to establish means to enable these steps in sorghum (Sorghum bicolor (L.) Moench), the genome of which contains ca. 780 Mbp spread across n = 10 chromosomes. Our approach relies on fluorescence in situ hybridization (FISH) and integrated structural genomic resources, including large-insert genomic clones in bacterial artificial chromosome (BAC) libraries. To develop robust FISH probes, we selected sorghum BACs by association with molecular markers that map near the ends of linkage groups, in regions inferred to be high in recombination. Overall, we selected 22 BACs that encompass the 10 linkage groups. As a prelude to development of a multiprobe FISH cocktail, we evaluated BAC-derived probes individually and in small groups. Biotin- and digoxygenin-labeled probes were made directly from the BAC clones and hybridized in situ to chromosomes without using suppressive unlabelled C(0)t-1 DNA. Based on FISH-signal strength and the relative degree of background signal, we judged 19 BAC-derived probes to be satisfactory. Based on their relative position, and collective association with all 10 linkage groups, we chose 17 of the 19 BACs to develop a 17-locus probe cocktail for dual-color detection. FISH of the cocktail allowed simultaneous identification of all 10 chromosomes. The results indicate that linkage and physical maps of sorghum allow facile selection of BAC clones according to position and FISH-signal quality. This capability will enable development of a high-quality molecular cytogenetic map and an integrated genomics system for sorghum, without need of chromosome flow sorting or microdissection. Moreover, transgeneric FISH experiments suggest that the sorghum system might be applicable to other Gramineae.
引用
收藏
页码:402 / 412
页数:11
相关论文
共 44 条
[1]   The gene distribution in the genomes of pea, tomato and date palm [J].
Barakat, A ;
Han, DT ;
Benslimane, AA ;
Rode, A ;
Bernardi, G .
FEBS LETTERS, 1999, 463 (1-2) :139-142
[2]   The distribution of genes in the genomes of Gramineae [J].
Barakat, A ;
Carels, N ;
Bernardi, G .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1997, 94 (13) :6857-6861
[3]   Extensive duplication and reshuffling in the arabidopsis genome [J].
Blanc, G ;
Barakat, A ;
Guyot, R ;
Cooke, R ;
Delseny, I .
PLANT CELL, 2000, 12 (07) :1093-1101
[4]   Comprehensive human genetic maps: Individual and sex-specific variation in recombination [J].
Broman, KW ;
Murray, JC ;
Sheffield, VC ;
White, RL ;
Weber, JL .
AMERICAN JOURNAL OF HUMAN GENETICS, 1998, 63 (03) :861-869
[5]   Organization and distribution of a Sau3A tandem repeated DNA sequence in Picea (Pinaceae) species [J].
Brown, GR ;
Newton, CH ;
Carlson, JE .
GENOME, 1998, 41 (04) :560-565
[6]   Molecular cytogenetics of the genes encoding 18s-5.8s-26s rRNA and 5s rRNA in two species of spruce (Picea) [J].
Brown, GR ;
Carlson, JE .
THEORETICAL AND APPLIED GENETICS, 1997, 95 (1-2) :1-9
[7]   Integration of cytogenetic landmarks into the draft sequence of the human genome [J].
Cheung, VG ;
Nowak, N ;
Jang, W ;
Kirsch, IR ;
Zhao, S ;
Chen, XN ;
Furey, TS ;
Kim, UJ ;
Kuo, WL ;
Olivier, M ;
Conroy, J ;
Kasprzyk, A ;
Massa, H ;
Yonescu, R ;
Sait, S ;
Thoreen, C ;
Snijders, A ;
Lemyre, E ;
Bailey, JA ;
Bruzel, A ;
Burrill, WD ;
Clegg, SM ;
Collins, S ;
Dhami, P ;
Friedman, C ;
Han, CS ;
Herrick, S ;
Lee, J ;
Ligon, AH ;
Lowry, S ;
Morley, M ;
Narasimhan, S ;
Osoegawa, K ;
Peng, Z ;
Plajzer-Frick, I ;
Quade, BJ ;
Scott, D ;
Sirotkin, K ;
Thorpe, AA ;
Gray, JW ;
Hudson, J ;
Pinkel, D ;
Ried, T ;
Rowen, L ;
Shen-Ong, GL ;
Strausberg, RL ;
Birney, E ;
Callen, DF ;
Cheng, JF ;
Cox, DR .
NATURE, 2001, 409 (6822) :953-958
[8]   Mapping genes on an integrated sorghum genetic and physical map using cDNA selection technology [J].
Childs, KL ;
Klein, RR ;
Klein, PE ;
Morishige, DT ;
Mullet, JE .
PLANT JOURNAL, 2001, 27 (03) :243-255
[9]   A DETAILED RFLP MAP OF SORGHUM-BICOLOR X S-PROPINQUUM, SUITABLE FOR HIGH-DENSITY MAPPING, SUGGESTS ANCESTRAL DUPLICATION OF SORGHUM CHROMOSOMES OR CHROMOSOMAL SEGMENTS [J].
CHITTENDEN, LM ;
SCHERTZ, KF ;
LIN, YR ;
WING, RA ;
PATERSON, AH .
THEORETICAL AND APPLIED GENETICS, 1994, 87 (08) :925-933
[10]   A metric map of humans: 23,500 loci in 850 bands [J].
Collins, A ;
Frezal, J ;
Teague, J ;
Morton, NE .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1996, 93 (25) :14771-14775