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Distribution of Activator (Ac) throughout the maize genome for use in regional mutagenesis.

A collection of Activator (Ac)-containing, near-isogenic W22 inbred lines has been generated for use in regional mutagenesis experiments. Each line is homozygous for a single, precisely positioned Ac element and the Ds reporter, r1-sc:m3. Through classical and molecular genetic techniques, 158 transposed Ac elements (tr-Acs) were distributed throughout the maize genome and 41 were precisely placed on the linkage map utilizing multiple recombinant inbred populations. Several PCR techniques were utilized to amplify DNA fragments flanking tr-Ac insertions up to 8 kb in length. Sequencing and database searches of flanking DNA revealed that the majority of insertions are in hypomethylated, low- or single-copy sequences, indicating an insertion site preference for genic sequences in the genome. However, a number of Ac transposition events were to highly repetitive sequences in the genome. We present evidence that suggests Ac expression is regulated by genomic context resulting in subtle variations in Ac-mediated excision patterns. These tr-Ac lines can be utilized to isolate genes with unknown function, to conduct fine-scale genetic mapping experiments, and to generate novel allelic diversity in applied breeding programs.

Chromosome Mapping↗

Allelic configuration and polysomic inheritance of highly variable microsatellites in tetraploid gynodioecious Thymus praecox agg.

Polyploidy plays a pivotal role in plant evolution. However, polyploids with polysomic inheritance have hitherto been severely underrepresented in plant population genetic studies, mainly due to a lack of appropriate molecular genetic markers. Here we report the establishment and experimental validation of six fully informative microsatellite markers in tetraploid gynodioecious Thymus praecox agg. Sequence data of 150 microsatellite alleles and their flanking regions revealed high variation, which may be characteristic for polyploids with a reticulate evolutionary history. Understanding the patterns of mutation (indels and substitutions) in microsatellite flanking-sequences was a prerequisite for the development of co-dominant markers for fragment analyses. Allelic segregation patterns among progeny arrays from ten test crosses revealed tetrasomic inheritance in T. praecox agg. No evidence of frequent double reduction was detected. Polymerase chain reaction (PCR) based dosage effects allowed for precise assignment of allelic configuration at all six microsatellite loci. The quantification of allele copy numbers in PCR was verified by comparisons of observed and expected gametic allele frequencies and heterozygosities in test crosses. Our study illustrates how PCR based markers can provide reliable estimates of heterozygosity and, thus, powerful tools for breeding system and population genetic analyses in polyploid organisms.

Alleles↗

Reproducibility of Gleason grading of prostate cancer can be improved by the use of reference images.

OBJECTIVES: The Gleason system has become the international standard for grading prostate cancer. Its interobserver reproducibility is fairly good but needs improvement. A national effort to standardize the Gleason grading in Sweden was evaluated. METHODS: A teaching set of 40 images illustrating the Gleason grades was distributed to 85 Swedish pathologists, including 73 specialists and 12 residents. Their ability to assign correct grades (1 to 5) to a series of microphotographs was tested before and after the distribution of the teaching set. Each test included 20 images, graded by an expert panel. RESULTS: The proportion of correct grades improved from 70.5% in the first test to 86.6% in the second test (P <0.001). Undergrading decreased from 22.5% to 9.4%. Grading errors of more than one step were uncommon in test 1 (1.9%) and almost disappeared in test 2 (0.1%). The average kappa value of tests 1 and 2 was 0.58 and 0.78, respectively. CONCLUSIONS: The results of this study reveal that a set of reference images may significantly improve the reproducibility of grading. This method is inexpensive and based on modern imaging techniques. The reference images can be easily distributed to a large number of pathologists, either as paper copies or through the Internet (http://www.pathology.ks.se/egevad/gleason.html), and can, thereby, be readily available in everyday practice.

Clinical Competence↗

An amplifiable DNA region from the Mycoplasma hyorhinis genome.

A novel amplifiable genomic region that displays variability in the number of tandem copies of a 1,368-bp DNA sequence (designated RS-2) was discovered among individual clonal derivatives within Mycoplasma hyorhinis broth-grown cell populations. Clonal isolates representing variant subpopulations from the original broth culture were of a single size variant, and although continued culture under a variety of growth conditions did not result in further amplification of RS-2, evidence for deletion events which reduced RS-2 copy number, presumably by homologous recombination, was obtained. RS-2 homologous sequences were identified in all M. hyorhinis strains tested, but only the tissue culture-derived strains GDL-1 and GDL-2 showed variability in genomic dosage. The RS-2 nucleotide sequence established that each tandem copy is flanked by direct repeats of a 20-bp sequence and suggested a possible mechanism for its original duplication as the initial phase of a genetic amplification process. The coding strand was defined by PCR amplification of a reverse transcriptase-generated cDNA, and its sequence revealed that RS-2 encodes a 456-residue internal, highly cysteine-rich domain of a larger M. hyorhinis protein whose coding sequence initiates and terminates in unique genomic sequences several hundred base pairs from RS-2 on either side of it. Changes in RS-2 copy number maintain the reading frame, and therefore the coding capacity, for this predicted size-variant protein.

Amino Acid Sequence↗

Comparative analyses of heterochromatin in Microtus: sequence heterogeneity and localized expansion and contraction of satellite DNA arrays.

Southern blotting, C-banding, base-specific fluorochrome staining, and fluorescence in situ hybridization were used to analyze the constitutive heterochromatin in eight species and subspecies of arvicolid rodents (genus Microtus). Autosomal centromeric regions portrayed considerable variability between species in the amount of C-band-positive material present; e.g., M. chrotorrhinus showed relatively little, whereas M. cabrerae exhibited extensive centromeric staining. Autosomal interstitial C-bands were noted in M. guentheri and two subspecies of M. ochrogaster. All Y chromosomes examined were predominately or completely heterochromatic, as were substantial portions of the giant X chromosomes in three species (M. agrestis, M. cabrerae, and M. chrotorrhinus). Hoechst 33258 staining (with its affinity for AT binding sites) showed bright fluorescence on the heterochromatin of the sex chromosomes of M. agrestis and moderate fluorescence on those of M. cabrerae and M. chrotorrhinus; however, only the heterochromatin of M. cabrerae and M. chrotorrhinus hybridized with an AT-rich satellite DNA probe (MSAT-160) isolated from M. chrotorrhinus. Hoechst 33258-bright autosomal centromeres of M. arvalis and M. cabrerae also hybridized to the probe, whereas the Hoechst 33258-bright Y chromosomes of M. arvalis and M. guentheri did not. Two pairs of autosomes in M. guentheri are comprised of six distinct regions, based upon C-banding, Hoechst 33258 staining, chromomycin A3/distamycin A staining, and in situ hybridization. The centromeric regions of acrocentric autosomes known to retain conserved G-banding patterns may exhibit variable hybridization intensity when different species or subspecies are compared. M. ochrogaster portrays considerable intersubspecific variability in the size and location of autosomal telomeric and interstitial C-bands that are also sites of hybridization. These latter two findings illustrate that dramatic differences in copy number of the tandem satellite array can exist at homologous chromosomal positions both within and between species.

Animals↗

Relationship of c-myc gene copy number and gene expression: cellular effects of elevated c-myc protein.

The relationship between gene copy number and expression and cellular consequences of elevated levels of c-myc protein has been investigated using recombinant Chinese hamster ovary cell lines transfected with DNA coding for the murine c-myc gene. HC-8 and LC-5 recombinant cells carry approximately 800 and 50 copies of c-myc sequences, respectively, under control of an inducible heat shock promoter. Multivariate flow cytometric analysis and clonogenic assays were used to measure the relationship among c-myc expression, rate of DNA synthesis, and cell survival. Following heat exposure, maximally induced HC-8 cells produced approximately tenfold more c-myc protein than heated LC-5 cells, suggesting a close relationship between gene copy number and level of expression. However, considerable heterogeneity in the level and time of c-myc expression was observed following heat induction, even though the amounts of genomic c-myc were relatively constant. Heterogeneity in gene expression was not attributable to variation in heat induction methodologies and/or cell cycle phase distributions. The presence of high levels of recombinant c-myc protein was associated with a decreased rate of bromodeoxyuridine incorporation into DNA. High levels of c-myc protein in HC-8 cells were inversely correlated with cell survival postheating, suggesting that high levels of c-myc protein are incompatible with cell survival.

Animals↗

Diversity of Olea genotypes and the origin of cultivated olives.

Tandem repeats belonging to three DNA sequence families ( OeTaq80, OeTaq178, and OeGEM86) were isolated from the nuclear DNA of Olea europaea cv. Carolea and dot-hybridized to the genomic DNA of 14 hypothetically different Olea species, 78 olive cultivars, and 14 wild olives. The copy number per unreplicated haploid genome of OeTaq80- and OeTaq178-related sequences was in the 10(7)-10(6) range and that of OeGEM86-related sequences was in the 10(5) range in cultivars, wild olives and some Olea species. A large variation in the frequency of repeats belonging to each sequence family was observed within each group of plants. Positive correlations existed in each genome between the frequencies of repeats belonging to each family, and their overall frequency was positively correlated to the genome size. Duncan grouping showed that the frequency variation of tandem repeats within each group of plants was not continuous. Two main groups and several subgroups of genotypes could be separated within both the olive cultivars and the wild olives. Discrete areas in the Mediterranean Basin could be delimited by the geographic distribution of cultivated olives with different genotypes and the wild plants were associated with the cultivars in these areas according to genotypic similarity. The Olea species could be divided into four genotypic groups. Three of these, comprising accessions from Asia and North Africa, showed similarity with the genotypes of cultivars and wild olives. These results suggest a polyphyletic origin of cultivated olives from different wild Olea forms distributed throughout the Mediterranean Basin.

Journal Article↗

Techniques used to define human MHC antigens: polymerase chain reaction and oligonucleotide probes.

The various HLA class II specificities, identifiable by serological or cellular typing reagents, reflect underlying polymorphisms of the constituent alpha and beta chains, encoded at several loci within the HLA-D region. Variation in these genes is concentrated in allelic hypervariable regions but can also be found elsewhere. Sequence-specific oligonucleotides (SSO) can be used to detect individual alleles with a high degree of accuracy by probing dot-blotted DNA, amplified to high copy number by the polymerase chain reaction (PCR). The classic DR specificities (DR1-DRw14) can be identified with certainty by sequential hybridization to a series of 14 SSO probes. In addition, fine resolution of specificities such as the subtypes of DR4 is possible using a combination of SSO probes and group-specific amplification in which PCR primers designed to amplify only DR4 alleles are employed. Similar methods can be applied to the typing of DQ and DP alleles even on whole blood samples which have been stored at -20 degrees C for up to 8 years. A full HLA class II type may be obtained on a large number of samples simultaneously without the need to separate and store viable lymphocytes. Thus, the sensitivity and robustiness of this technique give it major applications in the analysis of histocompatibility and disease associations, particularly in circumstances where facilities for the initial preparation and storage of samples may be limited.

Alleles↗

Molecular cytogenetic analysis of recurrent unbalanced t(11;17) in neuroblastoma.

Loss of 11q material occurs in approximately 30% of advanced stage neuroblastoma and defines a distinct genetic subtype of this disease. These tumors almost always possess unbalanced gain of the 17q, along with many additional recurrent chromosomal imbalances. Loss of 11q and gain of 17q is often the consequence of an unbalanced translocation between the long arms of both chromosomes, but because of the involvement of other chromosomal mechanisms, the actual frequency of t(11;17) is unknown. In addition, chromosomal breakpoint positions for the t(11;17) are variable in different tumors, with breakpoints on neither the 11q nor 17q being well defined. We have used interphase fluorescence in situ hybridization analysis to detect a der(11)t(11;17) in a series of neuroblastomas with 11q loss/17q gain using a statistical approach which could be applicable to the detection of translocations in other solid tumors. The frequency of der(11)t(11;17) was approximately 90% in our neuroblastoma series. A balanced t(11;17) was also detected in a MYCN amplified tumor, which is a distinctly different genetic subtype from the 11q- tumors. Breakpoint positions on 11q were determined to be variable, whereas all breakpoints on 17q appeared to cluster proximal to position 43.1 Mb on the DNA sequence map. The majority of tumors had large numbers of nuclei with 2 or more copies of der(11)t(11;17), which led to unbalanced gain of 11p, and further increases in 17q imbalance. The prevalence of t(11;17) in neuroblastoma warrants additional studies to further define the range in variation in breakpoint positions on both chromosomes and to elucidate the molecular mechanisms that lead to this important and interesting recurrent genetic abnormality.

Chromosomes, Artificial, Bacterial↗

Equine infectious anemia virus genomic evolution in progressor and nonprogressor ponies.

A primary mechanism of lentivirus persistence is the ability of these viruses to evolve in response to biological and immunological selective pressures with a remarkable array of genetic and antigenic variations that constitute a perpetual natural experiment in genetic engineering. A widely accepted paradigm of lentivirus evolution is that the rate of genetic variation is correlated directly with the levels of virus replication: the greater the viral replication, the more opportunities that exist for genetic modifications and selection of viral variants. To test this hypothesis directly, we examined the patterns of equine infectious anemia virus (EIAV) envelope variation during a 2.5-year period in experimentally infected ponies that differed markedly in clinical progression and in steady-state levels of viral replication as indicated by plasma virus genomic RNA assays. The results of these comprehensive studies revealed for the first time similar extents of envelope gp90 variation in persistently infected ponies regardless of the number of disease cycles (one to six) and viremia during chronic disease. The extent of envelope variation was also independent of the apparent steady-state levels of virus replication during long-term asymptomatic infection, varying from undetectable to 10(5) genomic RNA copies per ml of plasma. In addition, the data confirmed the evolution of distinct virus populations (genomic quasispecies) associated with sequential febrile episodes during acute and chronic EIA and demonstrated for the first time ongoing envelope variation during long-term asymptomatic infections. Finally, comparison of the rates of evolution of the previously defined EIAV gp90 variable domains demonstrated distinct differences in the rates of nucleotide and amino acid sequence variation, presumably reflecting differences in the ability of different envelope domains to respond to immune or other biological selection pressures. Thus, these data suggest that EIAV variation can be associated predominantly with ongoing low levels of virus replication and selection in target tissues, even in the absence of substantial levels of plasma viremia, and that envelope variation continues during all stages of persistent infection as the virus successfully avoids clearance by host defense mechanisms.

Acute Disease↗

An analysis of the neural representation of birdsong memory.

Songbirds, such as zebra finches, learn their song from a tutor early in life. Forebrain nuclei in the "song system" are important for the acquisition and production of song. Brain regions [including the caudomedial part of the neostriatum (NCM) and of the hyperstriatum ventrale (CMHV)] outside the song system show increased neuronal activation, measured as expression of immediate early genes (IEGs), when zebra finch males are exposed to song. IEG expression in the NCM in response to tutor song is significantly positively correlated with the strength of song learning (i.e., the number of elements copied). Here, we exposed three groups of adult zebra finch males to tutor song, to their own song, or to novel conspecific song. The two control groups were included to examine an alternative explanation of our previous results in terms of variation in predisposed levels of attentiveness. Expression of Zenk, the protein product of the IEG ZENK, was measured in the NCM, CMHV, and hippocampus. There were no significant differences in overall Zenk expression between the three experimental groups. However, there was a significant positive correlation between Zenk expression in the NCM (but not in the other two regions) and strength of song learning in the males that were exposed to the tutor song. There was no such correlation in the other two groups. These results suggest that experience-related neuronal activation is specific to the tutor song and thus unlikely to be a result of differences in attention.

Analysis of Variance↗

Integrating rare and common variation in epilepsy genetics: from genetic architecture to penetrance and clinical expressivity.

Epilepsy genetics has often been interpreted through a useful but simplified dichotomous framework in which severe epilepsies, particularly developmental and epileptic encephalopathies, are attributed mainly to rare, high-effect variants, whereas more common epilepsies are viewed as arising largely from the cumulative effects of common, small-effect variation. Although this framework has been instrumental for gene discovery, molecular diagnosis, and mechanism-based treatment, it does not fully explain incomplete penetrance, intrafamilial phenotypic heterogeneity, or marked differences in severity among individuals sharing the same molecular diagnosis. Evidence from exome sequencing, copy number variant (CNV) studies, and genome-wide association studies increasingly suggests that rare SNVs/indels, CNVs, and common variant should not be interpreted as entirely independent risk sources, but may partially converge on shared genes, pathways, cell types, and neurobiological processes relevant to neuronal excitability, network stability, and seizure susceptibility. Here, we review evidence across epilepsy subtypes, focusing on convergence and divergence across the allelic spectrum, and discuss how polygenic background and other modifiers may influence penetrance and clinical expressivity among carriers of rare pathogenic variants and CNVs. We also consider implications for variant interpretation, genetic counseling, risk stratification, and precision medicine, while emphasizing that most rare-common integrated models remain insufficiently validated for routine clinical decision-making.

common variants↗

Analysis of thymidylate synthase gene amplification and of mRNA levels in the cell cycle.

We report that the gene for thymidylate synthase (TS) is amplified in the mouse cell line L1210:C15 that was selectively grown in increasing concentrations of the competitive inhibitor of thymidylate synthase, CB3717. The gene is amplified 50-fold compared to the parental cell line. Amplification has not been accompanied by any major rearrangements, and the increase in gene copy number is reflected in elevation of thymidylate synthase mRNA levels. The amplification is relatively stable as there was only a 2- to 3-fold decrease in the number of amplified TS genes when cells were grown in the absence of selection for 375 generations. We also observe a 30- to 40-fold increase in number of copies of the dihydrofolate reductase gene with 7-fold elevation of the RNA product, and we suggest that this may be due to cross-inhibition of dihydrofolate reductase by CB3717. Thymidylate synthase mRNA levels in L1210 and L1210:C15 show no variation within the different phases of the cell cycle but are significantly reduced during quiescence.

Animals↗

Sequence variation of human papillomavirus type 16 E7 in preinvasive and invasive cervical neoplasias.

Variation in the nucleotide sequence of the HPV 16 E7 gene in preinvasive cervical intraepitherial neoplasia (CIN) and invasive cervical carcinoma specimens was analyzed. Direct DNA sequencing of PCR-amplified products with primers different from those used for PCR with 5'-end labeling generated distinct sequence ladders with a low background, even in specimens containing relatively low copy numbers of HPV. Of 14 cervical neoplasias, 11 cases showed sequence diversity from prototype HPV16, and a total of 22 nucleotide exchanges were detected. Nine of these led to single amino acid exchanges: [Thr5] to [Lys5] in one case and [Asn29] to [Ser29] in eight cases. The [Ser29] E7 was distributed uniformly among invasive carcinomas and precancerous legions, and was also found in a normal cervix. The [Lys5] E7 and [Ser29] E7 had transforming potential similar to the prototype E7 assessed by cooperation with the activated ras gene in rat embryo fibroblasts.

Amino Acid Sequence↗

A family of differentially amplified repetitive DNA sequences in the genus Beta reveals genetic variation in Beta vulgaris subspecies and cultivars.

Members of a highly abundant restriction satellite family have been isolated from the wild beet species Beta nana. The satellite DNA sequence is characterized by a conserved RsaI restriction site and is present in three of four sections of the genus Beta, namely Nanae, Corollinae, and Beta. It was not detected in species of the evolutionary old section Procumbentes, suggesting its amplification after separation of this section. Sequences of eight monomers were aligned revealing a size variation from 209 to 233 bp and an AT content ranging from 56.5% to 60.5%. The similarity between monomers in B. nana varied from 77.7% to 92.2%. Diverged subfamilies were identified by sequence analysis and Southern hybridization. A comparative study of this repetitive DNA element by fluorescent in situ hybridization and Southern analyses in three representative species was performed showing a variable genomic organization and heterogeneous localizations along metaphase chromosomes both within and between species. In B. nana the copy number of this satellite, with some 30,000 per haploid genome, is more than tenfold higher than in Beta lomatogona and up to 200 times higher than in Beta vulgaris, indicating different levels of sequence amplification during evolution in the genus Beta. In sugar beet (B. vulgaris), the large-scale organization of this tandem repeat was examined by pulsed-field gel electrophoresis. Southern hybridization to genomic DNA digested with DraI demonstrated that satellite arrays are located in AT-rich regions and the tandem repeat is a useful probe for the detection of genetic variation in closely related B. vulgaris cultivars, accessions, and subspecies.

DNA, Plant↗

Disease patterns and tissue cytokine profiles in giant cell arteritis.

OBJECTIVE: To determine whether clinical heterogeneity in patients with giant cell arteritis (GCA) is correlated with different patterns in the tissue-specific inflammatory response. METHODS: Twenty-three patients with typical histomorphologic findings of GCA were grouped according to the presence or absence of jaw claudication and/or visual abnormalities, fever, concomitant polymyalgia rheumatica (PMR), and histologic evidence of giant cell formation. The inflammatory response in temporal artery biopsy specimens was characterized by semiquantification of cytokine messenger RNA (mRNA) transcripts using reverse transcriptase-polymerase chain reaction, followed by oligonucleotide hybridization with cytokine-specific probes. Clinical patterns were then correlated with profiles of tissue cytokines. RESULTS: Inflammatory cytokines were expressed in all temporal artery tissues. In situ synthesis of interleukin-2 (IL-2), interferon-gamma (IFN gamma), and IL-1 beta mRNA, but not of IL-10 and IL-12 mRNA, distinguished different patterns of inflammation, and these patterns correlated with clinical manifestations of the disease. Patients with evidence of ischemic symptoms, indicated by jaw claudication and/or visual symptoms, typically expressed higher concentrations of IFN gamma mRNA (P = 0.008) and IL-1 beta mRNA (P = 0.02). Presence of fever was correlated with lower copy numbers of IFN gamma (P = 0.02). Formation of giant cells in the granulomatous infiltrates was associated with the local synthesis of IFN gamma mRNA (P = 0.003). Tissue from GCA patients with concomitant PMR contained higher levels of IL-2 mRNA transcripts (P = 0.001). CONCLUSION: Variations in the clinical presentation of GCA were correlated with cytokine mRNA expression in the affected temporal arteries. Differences in the effector functions of tissue-infiltrating T cells distinguished disease patterns in which either local ischemic symptoms or systemic involvement was dominant, or in which there was co-occurrence of PMR. Definition of different patterns of inflammation in GCA might, therefore, facilitate the design of differentiated therapeutic approaches.

Aged↗

Intracellular translation initiation factor levels in Saccharomyces cerevisiae and their role in cap-complex function.

Knowledge of the balance of activities of eukaryotic initiation factors (eIFs) is critical to our understanding of the mechanisms underlying translational control. We have therefore estimated the intracellular levels of 11 eIFs in logarithmically growing cells of Saccharomyces cerevisiae using polyclonal antibodies raised in rabbits against recombinant proteins. Those factors involved in 43S complex formation occur at levels comparable (i.e. within a 0.5- to 2.0-fold range) to those published for ribosomes. In contrast, the subunits of the cap-binding complex eIF4F showed considerable variation in their abundance. The helicase eIF4A was the most abundant eIF of the yeast cell, followed by eIF4E at multiple copies per ribosome, and eIF4B at approximately one copy per ribosome. The adaptor protein eIF4G was the least abundant of the eIF4 factors, with a copy number per cell that is substoichiometric to the ribosome and similar to the abundance of mRNA. The observed excess of eIF4E over its functional partner eIF4G is not strictly required during exponential growth: at eIF4E levels artificially reduced to 30% of those in wild-type yeast, growth rates and the capacity for general protein synthesis are only minimally affected. This demonstrates that eIF4E does not exercise a higher level of rate control over translation than other eIFs. However, other features of the yeast life cycle, such as the control of cell size, are more sensitive to changes in eIF4E abundance. Overall, these data constitute an important basis for developing a quantitative model of the workings of the eukaryotic translation apparatus.

Animals↗

T-DNA integration into the barley genome from single and double cassette vectors.

Patterns and sites of T-DNA integrations into the barley genome from single and double cassette vectors are of interest for the identification of cultivars with value added properties as well as for the production of selection marker-free transgenic lines that can be retransformed. T-DNA/Plant DNA junctions were obtained by capturing a single-stranded DNA with a biotinylated primer annealing to the vector adjacent to the border and an adaptor ligated to a restriction site overhang in the flanking barley DNA. The captured junction was converted into a double strand and sequenced. Fifty left and right border junctions from plants transgenic for one of five human genes were analyzed. Primers of 15-30 nucleotides designed from the genomic DNA at the insertion site can PCR amplify fragments that identify unequivocally any transformant. Adjacent transgene insertions with single cassette vectors were always in tandem direct repeat configuration. With regard to T-DNA integration the patterns were comparable to the variations found in dicotyledonous plants. Twelve of the 46 integrations characterized by blast searches were within different regions of the BARE-1 retrotransposon element occurring with a frequency of 2 x 10(5) copies in the barley genome. The use of border junctions to identify number of copies and loci of integrates in transformants is discussed.

Base Sequence↗