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PMID: 15342909 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S.

Chromosome painting using repetitive DNA sequences as probes for somatic chromosome identification in maize.

Kato A, Lamb JC, Birchler JA

Abstract

Study of the maize (Zea mays L.) somatic chromosomes (2n = 20) has been difficult because of a lack of distinguishing characteristics. To identify all maize chromosomes, a multicolor fluorescence in situ hybridization procedure was developed. The procedure uses tandemly repeated DNA sequences to generate a distinctive banding pattern for each of the 10 chromosomes. Fluorescence in situ hybridization screening trials of nonsubtracted or subtracted PCR libraries resulted in the isolation of microsatellite 1-26-2, subtelomeric 4-12-1, and 5S rRNA 2-3-3 clones. These three probes, plus centromeric satellite 4 (Cent4), centromeric satellite C (CentC), knob, nucleolus-organizing region (NOR), pMTY9ER telomere-associated sequence, and tandemly repeated DNA sequence 1 (TR-1) were used as a mixture for hybridization to root-tip chromosomes. All 10 chromosomes were identified by the banding and color patterns in the 14 examined lines. There was significant quantitative variation among lines for the knob, microsatellite, TR-1, and CentC signals. The same probe mixture identifies meiotic pachytene, late prophase I, and metaphase I chromosomes. The procedure could facilitate the study of chromosomal structure and behavior and be adapted for other plant species.

MeSH Terms
Chromosome Painting/methods Chromosomes, Plant/genetics DNA Probes/genetics Karyotyping Molecular Sequence Data Repetitive Sequences, Nucleic Acid/genetics Zea mays/genetics
Chemicals
DNA Probes
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Kato Akio
Division of Biological Sciences, Tucker Hall, University of Missouri, Columbia, MO 65211-7400.
Lamb Jonathan C
Birchler James A
References (24)
24 references, click to expand
  1. Air drying method using nitrous oxide for chromosome counting in maize.
    Biotech Histochem. 1999 May;74(3):160-6 PMID: 10416789
  2. Identification and chromosomal location of a new tandemly repeated DNA in maize.
    Genome. 2000 Feb;43(1):181-4 PMID: 10701128
  3. An assessment of the phylogenetic relationship among sugarcane and related taxa based on the nucleotide sequence of 5S rRNA intergenic spacers.
    Genetica. 2000;108(3):285-95 PMID: 11294615
  4. Characterization of a maize chromosome 4 centromeric sequence: evidence for an evolutionary relationship with the B chromosome centromere.
    Genetics. 2001 Sep;159(1):291-302 PMID: 11560905
  5. Abundance, distribution, and transcriptional activity of repetitive elements in the maize genome.
    Genome Res. 2001 Oct;11(10):1660-76 PMID: 11591643
  6. A molecular cytogenetic map of sorghum chromosome 1. Fluorescence in situ hybridization analysis with mapped bacterial artificial chromosomes.
    Genetics. 2002 May;161(1):345-53 PMID: 12019248
  7. Centromeric retroelements and satellites interact with maize kinetochore protein CENH3.
    Plant Cell. 2002 Nov;14(11):2825-36 PMID: 12417704
  8. Cytogenetics in reproductive medicine: the contribution of comparative genomic hybridization (CGH).
    Bioessays. 2003 Mar;25(3):289-300 PMID: 12596234
  9. Molecular and cytological analyses of large tracks of centromeric DNA reveal the structure and evolutionary dynamics of maize centromeres.
    Genetics. 2003 Feb;163(2):759-70 PMID: 12618412
  10. Recent progress in chromosome painting of Arabidopsis and related species.
    Chromosome Res. 2003;11(3):195-204 PMID: 12769287
  11. A new single-locus cytogenetic mapping system for maize (Zea mays L.): overcoming FISH detection limits with marker-selected sorghum (S. propinquum L.) BAC clones.
    Plant J. 2003 Sep;35(5):647-59 PMID: 12940957
  12. Pinning down loose ends: mapping telomeres and factors affecting their length.
    Plant Cell. 1992 Aug;4(8):953-60 PMID: 1356536
  13. Meiosis in maize.
    J Hered. 1950 Mar;41(3):59-67 PMID: 15422115
  14. The origin and behavior of mutable loci in maize.
    Proc Natl Acad Sci U S A. 1950 Jun;36(6):344-55 PMID: 15430309
  15. A CYTOLOGICAL DEMONSTRATION OF THE LOCATION OF AN INTERCHANGE BETWEEN TWO NON-HOMOLOGOUS CHROMOSOMES OF ZEA MAYS.
    Proc Natl Acad Sci U S A. 1930 Dec 15;16(12):791-6 PMID: 16577311
  16. Highly repeated DNA sequence limited to knob heterochromatin in maize.
    Proc Natl Acad Sci U S A. 1981 Jul;78(7):4490-4 PMID: 16593063
  17. The Effect of Abnormal Chromosome 10 on Preferential Segregation and Crossing over in Maize.
    Genetics. 1966 May;53(5):989-1020 PMID: 17248306
  18. High resolution bands in maize chromosomes by G-banding methods.
    Theor Appl Genet. 1990 Aug;80(2):265-72 PMID: 24220906
  19. Metaphase and interphase fluorescence in situ hybridization mapping of the rice genome with bacterial artificial chromosomes.
    Proc Natl Acad Sci U S A. 1995 May 9;92(10):4487-91 PMID: 7753830
  20. Molecular characterization of a maize B chromosome centric sequence.
    Genetics. 1993 Oct;135(2):589-97 PMID: 8244015
  21. An evaluation of a new series of fluorescent dUTPs for fluorescence in situ hybridization.
    J Histochem Cytochem. 1996 May;44(5):525-9 PMID: 8627009
  22. Cloning maize telomeres by complementation in Saccharomyces cerevisiae.
    Genome. 1996 Aug;39(4):736-48 PMID: 8776865
  23. A knob-associated tandem repeat in maize capable of forming fold-back DNA segments: are chromosome knobs megatransposons?
    Proc Natl Acad Sci U S A. 1998 Sep 1;95(18):10785-90 PMID: 9724782
  24. Chromosome-specific molecular organization of maize (Zea mays L.) centromeric regions.
    Proc Natl Acad Sci U S A. 1998 Oct 27;95(22):13073-8 PMID: 9789043
Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
0027-8424
Published
2004-09-14
Epub
2004-00-01
Pages
13554-9
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC518793
Subset
IM
Databases
GENBANK
CL569181, CL569243
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