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PMID: 16995901 Published · ppublish English Comparative Study Evaluation Study Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S.

Molecular karyotyping and aneuploidy detection in Arabidopsis thaliana using quantitative fluorescent polymerase chain reaction.

The Plant journal : for cell and molecular biology ·Vol. 48 ·No. 2 ·2006-10-00 ·Pages 307-19

Henry IM, Dilkes BP, Comai L

Abstract

Certain cellular processes are sensitive to changes in gene dosage. Aneuploidy is deleterious because of an imbalance of gene dosage on a chromosomal scale. Identification, classification and characterization of aneuploidy are therefore important for molecular, population and medical genetics and for a deeper understanding of the mechanisms underlying dosage sensitivity. Notwithstanding recent progress in genomic technologies, limited means are available for detecting and classifying changes in chromosome dose. The development of an inexpensive and scalable karyotyping method would allow rapid detection and characterization of both simple and complex aneuploid types. In addition to the problem of karyotyping, genomic and molecular genetic studies of aneuploids and polyploids are complicated by multiple heterozygous combinations possible at loci present in more than two copies. Quantitative scoring of allele genotypes would enable large-scale population genetic experiments in polyploids, and permit genetic analyses on bulked populations in diploid species. Here, we demonstrate that quantitative fluorescent-polymerase chain reaction (QF-PCR) can be used to simultaneously genotype and karyotype aneuploid and polyploid Arabidopsis thaliana. Comparison of QF-PCR with flow cytometric determination of nuclear DNA content indicated near perfect agreement between the methods, but complete karyotype resolution was only possible using QF-PCR. A complex karyotype, determined by QF-PCR, was validated by comparative genomic hybridization to microarrays. Finally, we screened the progeny of tetraploid individuals and found that more than 25% were aneuploid and that our artificially induced tetraploid strain produced fewer aneuploid individuals than a tetraploid strain isolated from nature.

MeSH Terms
Alleles Aneuploidy Arabidopsis/genetics DNA/analysis Flow Cytometry Genotype In Situ Hybridization, Fluorescence Karyotyping/methods Polymerase Chain Reaction/methods Polyploidy
Chemicals
DNA
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Henry Isabelle M
Department of Biology, University of Washington, Box 355325, Seattle, WA 98195-5325, USA.
Dilkes Brian P
Comai Luca
Article Info
Journal
The Plant journal : for cell and molecular biology
Abbr.
Plant J
ISSN
0960-7412
Published
2006-10-00
Epub
2006-00-22
Pages
307-19
Language
English
Region
England
NLM ID
9207397
Subset
IM
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