Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 11 de 11
Filter
Add more filters










Publication year range
1.
Cytogenet Genome Res ; 129(1-3): 211-23, 2010 Jul.
Article in English | MEDLINE | ID: mdl-20501977

ABSTRACT

The large bread wheat genome (1C approximately 17 Gbp) contains a preponderance of repetitive DNA and the species is polyploid. These characteristics together serve to hamper the molecular analysis of the wheat genome. Its complexity can, however, be reduced by using flow cytometry to isolate individual chromosomes, and these can be exploited to construct chromosome-specific BAC libraries. Such libraries simplify the task of physical map construction, positional cloning and the targeted development of genetic markers. Rapid improvements in the efficiency and cost of DNA sequencing provide an opportunity to contemplate sequencing the wheat genome by preparing sequence-ready physical maps for each chromosome or chromosome arm in turn. The quality of the chromosome-specific libraries depends on their chromosome coverage and the mean insert size. First-generation libraries suffered from a relatively low mean insert size, but improvements to the protocol have generated a second wave of libraries with a significantly increased mean insert size and better chromosome coverage. Each chromosome (arm)-specific library is composed of a manageable number of clones, and so represents a practical tool in the area of wheat genomics.


Subject(s)
Chromosomes, Artificial, Bacterial/genetics , Chromosomes, Plant/genetics , Triticum/genetics , DNA, Plant/genetics , Flow Cytometry , Gene Library , Genetic Markers , Genome, Plant , Genomics , In Situ Hybridization, Fluorescence , Physical Chromosome Mapping , Polyploidy
2.
Plant J ; 37(6): 940-50, 2004 Mar.
Article in English | MEDLINE | ID: mdl-14996224

ABSTRACT

A novel high-resolution fluorescence in situ hybridisation (FISH) strategy, using super-stretched flow-sorted plant chromosomes as targets, is described. The technique that allows longitudinal extension of chromosomes of more than 100 times their original metaphase size is especially attractive for plant species with large chromosomes, whose pachytene chromosomes are generally too long and heterochromatin patterns too complex for FISH analysis. The protocol involves flow cytometric sorting of metaphase chromosomes, mild proteinase-K digestion of air-dried chromosomes on microscopic slides, followed by stretching with ethanol:acetic acid (3 : 1). Stretching ratios were assessed in a number of FISH experiments with super-stretched chromosomes from barley, wheat, rye and chickpea, hybridised with 45S and 5S ribosomal DNAs and the [GAA]n microsatellite, the [TTTAGGG]n telomeric repeat and a bacterial artificial chromosome (BAC) clone as probes. FISH signals on stretched chromosomes were brighter than those on the untreated control, resulting from better accessibility of the stretched chromatin and maximum observed sensitivity of 1 kbp. Spatial resolution of neighbouring loci was improved down to 70 kbp as compared to 5-10 Mbp after FISH on mitotic chromosomes, revealing details of adjacent DNA sequences hitherto not obtained with any other method. Stretched chromosomes are advantageous over extended DNA fibres from interphase nuclei as targets for FISH studies because they still retain chromosomal integrity. Although the method is confined to species for which chromosome flow sorting has been developed, it provides a unique system for controlling stretching degree of mitotic chromosomes and high-resolution bar-code FISH.


Subject(s)
Chromosomes, Plant/genetics , In Situ Hybridization, Fluorescence/methods , Plants/genetics , Chromosomes, Artificial, Bacterial/genetics , Cicer/genetics , Flow Cytometry , Hordeum/genetics , In Situ Hybridization, Fluorescence/statistics & numerical data , Secale/genetics , Sensitivity and Specificity , Triticum/genetics
3.
Genome ; 46(5): 893-905, 2003 Oct.
Article in English | MEDLINE | ID: mdl-14608406

ABSTRACT

Procedures for chromosome analysis and sorting using flow cytometry (flow cytogenetics) were developed for rye (Secale cereale L.). Suspensions of intact chromosomes were prepared by mechanical homogenization of synchronized root tips after mild fixation with formaldehyde. Histograms of relative fluorescence intensity obtained after the analysis of DAPI-stained chromosomes (flow karyotypes) were characterized and the chromosome content of the DNA peaks was determined. Chromosome 1R could be discriminated on a flow karyotype of S. cereale 'Imperial'. The remaining rye chromosomes (2R-7R) could be discriminated and sorted from individual wheat-rye addition lines. The analysis of lines with reconstructed karyotypes demonstrated a possibility of sorting translocation chromosomes. Supernumerary B chromosomes could be sorted from an experimental rye population and from S. cereale 'Adams'. Flow-sorted chromosomes were identified by fluorescence in situ hybridization (FISH) with probes for various DNA repeats. Large numbers of chromosomes of a single type sorted onto microscopic slides facilitated detection of rarely occurring chromosome variants by FISH with specific probes. PCR with chromosome-specific primers confirmed the identity of sorted fractions and indicated suitability of sorted chromosomes for physical mapping. The possibility to sort large numbers of chromosomes opens a way for the construction of large-insert chromosome-specific DNA libraries in rye.


Subject(s)
Chromosomes, Plant/genetics , Flow Cytometry/methods , Secale/genetics , Cell Separation/methods , In Situ Hybridization, Fluorescence , Karyotyping , Microsatellite Repeats , Physical Chromosome Mapping , Polymerase Chain Reaction , Translocation, Genetic
4.
Theor Appl Genet ; 104(8): 1362-1372, 2002 Jun.
Article in English | MEDLINE | ID: mdl-12582592

ABSTRACT

Previously, we reported on the development of procedures for chromosome analysis and sorting using flow cytometry (flow cytogenetics) in bread wheat. That study indicated the possibility of sorting large quantities of intact chromosomes, and their suitability for analysis at the molecular level. However, due to the lack of sufficient differences in size between individual chromosomes, only chromosome 3B could be sorted into a high-purity fraction. The present study aimed to identify wheat stocks that could be used to sort other chromosomes. An analysis of 58 varieties and landraces demonstrated a remarkable reproducibility and sensitivity of flow cytometry for the detection of numerical and structural chromosome changes. Changes in flow karyotype, diagnostic for the presence of the 1BL.1RS translocation, have been found and lines from which translocation chromosomes 5BL.7BL and 4AL.4AS-5BL could be sorted have been identified. Furthermore, wheat lines have been identified which can be used for sorting chromosomes 4B, 4D, 5D and 6D. The ability to sort any single arm of the hexaploid wheat karyotype, either in the form of a ditelosome or a isochromosome, has also been demonstrated. Thus, although originally considered recalcitrant, wheat seems to be suitable for the development of flow cytogenetics and the technology can be applied to the physical mapping of DNA sequences, the targeted isolation of molecular makers and the construction of chromosome- and arm-specific DNA libraries. These approaches should facilitate the analysis of the complex genome of hexaploid bread wheat.

5.
Chromosome Res ; 10(8): 695-706, 2002.
Article in English | MEDLINE | ID: mdl-12575797

ABSTRACT

Procedures for flow cytometric analysis and sorting of mitotic chromosomes (flow cytogenetics) have been developed for chickpea (Cicer arietinum). Suspensions of intact chromosomes were prepared from root tips treated to achieve a high degree of metaphase synchrony. The optimal protocol consisted of a treatment of roots with 2 mmol/L hydroxyurea for 18 h, a 4.5-h recovery in hydroxyurea-free medium, 2 h incubation with 10 micromol/L oryzalin, and ice-water treatment overnight. This procedure resulted in an average metaphase index of 47%. Synchronized root tips were fixed in 2% formaldehyde for 20 min, and chromosome suspensions prepared by mechanical homogenization of fixed root tips. More than 4 x 10(5) morphologically intact chromosomes could be isolated from 15 root tips. Flow cytometric analysis of DAPI-stained chromosomes resulted in histograms of relative fluorescence intensity (flow karyotypes) containing eight peaks, representing individual chromosomes and/or groups of chromosomes with a similar relative DNA content. Five peaks could be assigned to individual chromosomes (A, B, C, G, H). The parity of sorted chromosome fractions was high, and chromosomes B and H could be sorted with 100% purity. PCR on flow-sorted chromosome fractions with primers for sequence-tagged microsatellite site (STMS) markers permitted assignment of the genetic linkage group LG8 to the smallest chickpea chromosome H. This study extends the number of legume species for which flow cytogenetics is available, and demonstrates the potential of flow cytogenetics for genome mapping in chickpea.


Subject(s)
Chromosomes, Plant/genetics , Cicer/genetics , Genome, Plant , Physical Chromosome Mapping/methods , Cell Cycle , Cytogenetics , DNA, Plant/genetics , DNA, Plant/metabolism , Flow Cytometry/methods , Genetic Linkage , In Situ Hybridization, Fluorescence , Indoles , Karyotyping , Metaphase , Microsatellite Repeats , Mitosis , Plant Roots/genetics , Polymerase Chain Reaction , Sequence Tagged Sites
6.
Methods Cell Sci ; 23(1-3): 71-82, 2001.
Article in English | MEDLINE | ID: mdl-11741145

ABSTRACT

Localisation of DNA sequences to plant chromosomes in situ has traditionally been accomplished using fluorescence in situ hybridisation (FISH). Although the method is suitable for most applications it is time-consuming and requires labelled probes. Recently, primed in situ labelling (PRINS) has been developed as an alternative to FISH. PRINS is based on annealing of unlabelled oligonucleotide primer(s) to chromosome DNA and its elongation by DNA polymerase in the presence of labelled nucleotide(s). The method was found useful to detect high-copy tandem repeats on plant chromosomes. Low copy repeats were detected after a more sensitive variant of PRINS called cycling PRINS (C-PRINS), which involves a sequence of thermal cycles analogous to polymerase chain reaction. This paper describes protocols of PRINS and C-PRINS, which have been optimised for chromosome spreads and for chromosomes purified using gradient centrifugation and/or flow sorting. The methods result in clear signals with negligible non-specific labelling. Further work is needed to improve the sensitivity to allow for reliable detection of single- copy DNA sequences.


Subject(s)
DNA, Plant/genetics , Magnoliopsida/genetics , Primed In Situ Labeling/methods , Fabaceae/genetics , Hordeum/genetics , Microsatellite Repeats , Reproducibility of Results , Sensitivity and Specificity , Telomere/genetics , Triticum/genetics
8.
Genetics ; 156(4): 2033-41, 2000 Dec.
Article in English | MEDLINE | ID: mdl-11102393

ABSTRACT

The aim of this study was to develop an improved procedure for preparation of chromosome suspensions, and to evaluate the potential of flow cytometry for chromosome sorting in wheat. Suspensions of intact chromosomes were prepared by mechanical homogenization of synchronized root tips after mild fixation with formaldehyde. Histograms of relative fluorescence intensity (flow karyotypes) obtained after the analysis of DAPI-stained chromosomes were characterized and the chromosome content of all peaks on wheat flow karyotype was determined for the first time. Only chromosome 3B could be discriminated on flow karyotypes of wheat lines with standard karyotype. Remaining chromosomes formed three composite peaks and could be sorted only as groups. Chromosome 3B could be sorted at purity >95% as determined by microscopic evaluation of sorted fractions that were labeled using C-PRINS with primers for GAA microsatellites and for Afa repeats, respectively. Chromosome 5BL/7BL could be sorted in two wheat cultivars at similar purity, indicating a potential of various wheat stocks for sorting of other chromosome types. PCR with chromosome-specific primers confirmed the identity of sorted fractions and suitability of flow-sorted chromosomes for physical mapping and for construction of small-insert DNA libraries. Sorted chromosomes were also found suitable for the preparation of high-molecular-weight DNA. On the basis of these results, it seems realistic to propose construction of large-insert chromosome-specific DNA libraries in wheat. The availability of such libraries would greatly simplify the analysis of the complex wheat genome.


Subject(s)
Cell Fractionation/methods , Chromosomes , Flow Cytometry , Karyotyping/methods , Triticum/genetics , Cell Cycle , Chromosomes/classification , Chromosomes/genetics , DNA, Plant/genetics , Electrophoresis, Gel, Pulsed-Field , Gene Library , Microscopy, Fluorescence , Mitosis , Plant Roots/ultrastructure , Polymerase Chain Reaction , Triticum/ultrastructure
9.
Cytometry ; 41(2): 102-8, 2000 Oct 01.
Article in English | MEDLINE | ID: mdl-11002265

ABSTRACT

BACKGROUND: Flow-sorted plant chromosomes are being increasingly used in plant genome analysis and mapping. Consequently, there is a need for a rapid method for identification of sorted chromosomes and for determination of their purity. We report on optimization of procedures for primed in situ DNA labeling (PRINS) and cycling-PRINS (C-PRINS) for fluorescent labeling of repetitive DNA sequences on sorted plant chromosomes suitable for their identification. METHODS: Chromosomes of barley, wheat, and field bean were sorted onto microscope slides, dried, and subjected to PRINS or C-PRINS with primers for GAA microsatellites (barley and wheat) or FokI repeat (field bean). The following parameters were optimized to achieve the highest specificity and intensity of fluorescent labeling: ratio of labeled versus unlabeled nucleotides, nucleotide concentration, and the number and concentration of primers. RESULTS: Under optimal conditions, C-PRINS resulted in strong and specific labeling of GAA microsatellites on sorted barley and wheat chromosomes and FokI repeats on sorted field bean chromosomes. The labeling patterns were characteristic for each chromosome and permitted their unequivocal identification as well as determination of purity after sorting, which ranged from 96% to 99%. A standard polymerase chain reaction (PCR) with chromosome-specific primers was not sensitive enough to detect low-frequency contamination. CONCLUSIONS: The results indicate that a single C-PRINS assay with primers that give chromosome-specific labeling pattern is sufficient not only to determine chromosome content of peaks on flow karyotype but also to determine the purity of sorted chromosome fractions. The whole procedure can be performed in less than 3 h on the next day after sorting. Numerous applications are expected in the area of plant flow cytogenetics.


Subject(s)
Chromosomes/genetics , Flow Cytometry , Primed In Situ Labeling/methods , DNA Primers/genetics , DNA, Plant/analysis , Fabaceae/genetics , Genome, Plant , Hordeum/genetics , Karyotyping , Microsatellite Repeats , Microscopy, Fluorescence , Plants, Medicinal , Polymerase Chain Reaction , Triticum/genetics
10.
Chromosome Res ; 7(6): 431-44, 1999.
Article in English | MEDLINE | ID: mdl-10560966

ABSTRACT

A high-yield method for isolation of barley chromosomes in suspension, their analysis and sorting using flow cytometry is described. To accumulate meristem root tip cells at metaphase, actively growing roots were subjected to subsequent treatment with 2 mmol/L hydroxyurea for 18 h, 2.5 micromol/L amiprophos methyl for 2 h, and ice water (overnight). This treatment resulted in metaphase indices exceeding 50%. Synchronized root tips were fixed in 2% formaldehyde for 20 min and chromosomes were released into a lysis buffer by mechanical homogenization, producing, on average, 5 x 10(5) chromosomes from 50 root tips. The isolated chromosomes were morphologically intact and suitable for flow cytometric analysis and sorting. While it was possible to discriminate and sort only one chromosome from a barley cultivar with standard karyotype, up to three chromosomes could be sorted in translocation lines with morphologically distinct chromosomes. The purity of chromosome fractions, estimated after PRINS with primers specific for GAA microsatellites, reached 97%. PCR with chromosome-specific primers confirmed the purity and suitability of flow-sorted chromosomes for physical mapping of DNA sequences.


Subject(s)
Chromosomes/genetics , Hordeum/genetics , DNA Primers , Electrophoresis, Agar Gel , Flow Cytometry , Hydroxyurea/pharmacology , In Situ Hybridization, Fluorescence , Insecticides/pharmacology , Karyotyping , Metaphase , Microsatellite Repeats/genetics , Mitosis/genetics , Nitrobenzenes , Organothiophosphorus Compounds/pharmacology , Physical Chromosome Mapping , Plant Roots/genetics , Polymerase Chain Reaction
11.
Theor Appl Genet ; 86(6): 699-704, 1993 Jul.
Article in English | MEDLINE | ID: mdl-24193779

ABSTRACT

Structural alterations in mitochondrial DNAs (mtDNAs) from a plant of a sterile sugar beet line, callus derived from it, suspension-cultured cells and plants regenerated from the callus were studied. BamHI restriction analysis revealed that structural alterations between the mtDNAs of the callus and the control plant had occurred. Multiple rearrangements were also demonstrated in the mtDNA from the suspension culture, of which some were similar to those appearing in the callus, and others had arisen de novo. Rearrangements were also identified by means of blot hybridization of BamHI-digested mtDNA from suspension-cultured cells with the genes encoding subunit II of cytochrome oxidase (cox II) and subunit 1 of NADH-dehydrogenase (Nd1). No alterations were observed in the mitochondrial genome of the callus and regenerants. The location of the genes for the α-subunit of F1-ATPase (atpA) and apocytochrome b (cob) in the mtDNA remained unchanged.Our salient finding was of a plant with an altered mitochondrial genome as judged by EcoRI and BamHI restriction analysis. This exceptional plant had retained the sterile phenotype like all of the other regenerants and the parent. The set of plasmid-like molecules of mtDNA remained the same as that in the control plant and in all of the regenerants, callus and suspension-cultured cells. The only type of plasmid-like molecule found in all of the DNAs was the 1.6-kbp minicircle, which is a feature of sterile cytoplasms. These structural changes in mtDNA were obviously a consequence of somaclonal variation during the in vitro cultivation of the sugar beet cells.

SELECTION OF CITATIONS
SEARCH DETAIL
...