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1.
The karyotypes of 200 normal individuals are examined in a study designed to investigate the extent to which the cytologist's classification of chromosomes into the A–G autosomal groups and identification of individual chromosomes are reflected in the values of measurements made on these chromosomes. The statistical technique of discriminant function analysis is employed to obtain linear functions of the chromosomal measurements which may be used to classify and identify chromosomes. The results of the study indicate that while chromosomes can be grouped with a reasonably high probability of success using measurements alone, identification of individual chromosomes is somewhat more difficult. 相似文献
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A microfluorimetric method has been developed for determination of DNA content in individual human chromosomes. The method is based on a preliminary identification of chromosomes with Hoechst 33258 followed by staining of the chromosomes with Feulgen reaction by using Schiff’s reagent type ethidium bromide-SO2 and then by measuring the fluorescence intensity of the chromosomes by using an image analyzer. The method allows determining the DNA content of individual chromosomes with an accuracy up to 4.5 fg. The DNA content of individual human chromosomes and their p-and q-arms, as well as homologous chromosomes, were measured by using the developed method. It has been shown that the DNA content in chromosomes of the normal human karyotype is unstable and can fluctuate in some chromosomes within 35–40 fg. 相似文献
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Zelenin AV 《Molekuliarnaia biologiia》2004,38(1):17-28
Physical chromosome mapping by fluorescence in situ hybridization (FISH) is among the major lines of research on the human genome (as well as genomes of numerous other organisms). To localize particular genes or anonymous DNA sequences on individual chromosomes or chromosome regions, FISH was developed in the late 1980s and early 1990s, when the International Human Genome Project and the Russian program Human Genome were launched. Now FISH continues to play a prominent part in studies of the human genome. The review considers the major steps of FISH development in Russia with special emphasis on the key roles of the Institute of Cytology and Genetics (Novosibirsk) and Engelhardt Institute of Molecular Biology (Moscow). Physical mapping of human chromosomes 3 and 13 by FISH is described in detail. The promotion of FISH in Russia contributed to the progress in the related fields such as comparative animal genomics (ZOO-FISH) and studies of plant chromosomes. 相似文献
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Elton Stubblefield Wayne Wray 《Biochemical and biophysical research communications》1978,83(4):1404-1414
The human karyotype can be subdivided into seven fractions containing specific chromosomes to provide material for recombinant DNA research. The isolated metaphase chromosomes are sorted according to size by velocity zonal centrifugation, and specific chromosome groups are further purified by electrostatic deflection in a flow microfluorometer. Rapid improvements in technology should soon provide preparations of single chromosomes. 相似文献
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Completion of human genome reading stimulated intense studies in the field of functional genomics and characterization of individual genomes. Of considerable importance is the study of the complex of multicopy ribosomal genes (RGs), but its thorough analysis was not a task of the “Human Genome” program. In this short review we present our data on the copy number of rRNA genes in individual human genomes and on their heterogeneity in the functional respect. Fractions of active and potentially active RGs as well as fractions of inactive and silent RGs intensively methylated in the transcribed region are characterized. Their location in the nucleolus structures and in metaphase chromosomes is discussed. 相似文献
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Kenneth W. Adolph 《Chromosoma》1980,76(1):23-33
New methods are presented for the bulk isolation of metaphase chromosomes from HeLa cells, and an electron microscopic study of thin sections of these chromosomes is presented. The techniques for chromosome isolation were developed to utilize solution conditions that are as mild as possible, so that further biochemical and structural studies can be directly related to the in situ state of chromosomes. — Electron micrographs of thin sections of isolated HeLa metaphase chromosomes reveal the general organization of the nucleosome-containing fibers. Chromosomes in isolation buffer show a dense, relatively uniform distribution of material across the chromatids. Swollen chromosomes reveal the primary mode of organization of the fibers to be a radial distribution from the central axes of the chromatids. A significant proportion of the fibers could also be oriented longitudinally. 相似文献
10.
Afrotheria is the clade of placental mammals that, together with Xenarthra, Euarchontoglires and Laurasiatheria, represents 1 of the 4 main recognized supraordinal eutherian clades. It reunites 6 orders of African origin: Proboscidea, Sirenia, Hyracoidea, Macroscelidea, Afrosoricida and Tubulidentata. The apparently unlikely relationship among such disparate morphological taxa and their possible basal position at the base of the eutherian phylogenetic tree led to a great deal of attention and research on the group. The use of biomolecular data was pivotal in Afrotheria studies, as they were the basis for the recognition of this clade. Although morphological evidence is still scarce, a plethora of molecular data firmly attests to the phylogenetic relationship among these mammals of African origin. Modern cytogenetic techniques also gave a significant contribution to the study of Afrotheria, revealing chromosome signatures for the group as a whole, as well as for some of its internal relationships. The associations of human chromosomes HSA1/19 and 5/21 were found to be chromosome signatures for the group and provided further support for Afrotheria. Additional chromosome synapomorphies were also identified linking elephants and manatees in Tethytheria (the associations HSA2/3, 3/13, 8/22, 18/19 and the lack of HSA4/8) and elephant shrews with the aardvark (HSA2/8, 3/20 and 10/17). Herein, we review the current knowledge on Afrotheria chromosomes and genome evolution. The already available data on the group suggests that further work on this apparently bizarre assemblage of mammals will provide important data to a better understanding on mammalian genome evolution. 相似文献
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Annelyse Thévenin Liat Ein-Dor Michal Ozery-Flato Ron Shamir 《Nucleic acids research》2014,42(15):9854-9861
Genomes undergo changes in organization as a result of gene duplications, chromosomal rearrangements and local mutations, among other mechanisms. In contrast to prokaryotes, in which genes of a common function are often organized in operons and reside contiguously along the genome, most eukaryotes show much weaker clustering of genes by function, except for few concrete functional groups. We set out to check systematically if there is a relation between gene function and gene organization in the human genome. We test this question for three types of functional groups: pairs of interacting proteins, complexes and pathways. We find a significant concentration of functional groups both in terms of their distance within the same chromosome and in terms of their dispersal over several chromosomes. Moreover, using Hi-C contact map of the tendency of chromosomal segments to appear close in the 3D space of the nucleus, we show that members of the same functional group that reside on distinct chromosomes tend to co-localize in space. The result holds for all three types of functional groups that we tested. Hence, the human genome shows substantial concentration of functional groups within chromosomes and across chromosomes in space. 相似文献
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BioNano genome mapping of individual chromosomes supports physical mapping and sequence assembly in complex plant genomes 下载免费PDF全文
Helena Staňková Alex R. Hastie Saki Chan Jan Vrána Zuzana Tulpová Marie Kubaláková Paul Visendi Satomi Hayashi Mingcheng Luo Jacqueline Batley David Edwards Jaroslav Doležel Hana Šimková 《Plant biotechnology journal》2016,14(7):1523-1531
The assembly of a reference genome sequence of bread wheat is challenging due to its specific features such as the genome size of 17 Gbp, polyploid nature and prevalence of repetitive sequences. BAC‐by‐BAC sequencing based on chromosomal physical maps, adopted by the International Wheat Genome Sequencing Consortium as the key strategy, reduces problems caused by the genome complexity and polyploidy, but the repeat content still hampers the sequence assembly. Availability of a high‐resolution genomic map to guide sequence scaffolding and validate physical map and sequence assemblies would be highly beneficial to obtaining an accurate and complete genome sequence. Here, we chose the short arm of chromosome 7D (7DS) as a model to demonstrate for the first time that it is possible to couple chromosome flow sorting with genome mapping in nanochannel arrays and create a de novo genome map of a wheat chromosome. We constructed a high‐resolution chromosome map composed of 371 contigs with an N50 of 1.3 Mb. Long DNA molecules achieved by our approach facilitated chromosome‐scale analysis of repetitive sequences and revealed a ~800‐kb array of tandem repeats intractable to current DNA sequencing technologies. Anchoring 7DS sequence assemblies obtained by clone‐by‐clone sequencing to the 7DS genome map provided a valuable tool to improve the BAC‐contig physical map and validate sequence assembly on a chromosome‐arm scale. Our results indicate that creating genome maps for the whole wheat genome in a chromosome‐by‐chromosome manner is feasible and that they will be an affordable tool to support the production of improved pseudomolecules. 相似文献
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The diploid genome sequence of an individual human 总被引:4,自引:1,他引:3
Levy S Sutton G Ng PC Feuk L Halpern AL Walenz BP Axelrod N Huang J Kirkness EF Denisov G Lin Y MacDonald JR Pang AW Shago M Stockwell TB Tsiamouri A Bafna V Bansal V Kravitz SA Busam DA Beeson KY McIntosh TC Remington KA Abril JF Gill J Borman J Rogers YH Frazier ME Scherer SW Strausberg RL Venter JC 《PLoS biology》2007,5(10):e254
Presented here is a genome sequence of an individual human. It was produced from ∼32 million random DNA fragments, sequenced by Sanger dideoxy technology and assembled into 4,528 scaffolds, comprising 2,810 million bases (Mb) of contiguous sequence with approximately 7.5-fold coverage for any given region. We developed a modified version of the Celera assembler to facilitate the identification and comparison of alternate alleles within this individual diploid genome. Comparison of this genome and the National Center for Biotechnology Information human reference assembly revealed more than 4.1 million DNA variants, encompassing 12.3 Mb. These variants (of which 1,288,319 were novel) included 3,213,401 single nucleotide polymorphisms (SNPs), 53,823 block substitutions (2–206 bp), 292,102 heterozygous insertion/deletion events (indels)(1–571 bp), 559,473 homozygous indels (1–82,711 bp), 90 inversions, as well as numerous segmental duplications and copy number variation regions. Non-SNP DNA variation accounts for 22% of all events identified in the donor, however they involve 74% of all variant bases. This suggests an important role for non-SNP genetic alterations in defining the diploid genome structure. Moreover, 44% of genes were heterozygous for one or more variants. Using a novel haplotype assembly strategy, we were able to span 1.5 Gb of genome sequence in segments >200 kb, providing further precision to the diploid nature of the genome. These data depict a definitive molecular portrait of a diploid human genome that provides a starting point for future genome comparisons and enables an era of individualized genomic information. 相似文献
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One of the main genetic factors determining the functional activity of the genome in somatic cells, including brain nerve cells, is the spatial organization of chromosomes in the interphase nucleus. For a long time, no studies of human brain cells were carried out until high-resolution methods of molecular cytogenetics were developed to analyze interphase chromosomes in nondividing somatic cells. The purpose of the present work was to assess the potential of high-resolution methods of interphase molecular cytogenetics for studying chromosomes and the nuclear organization in postmitotic brain cells. A high efficiency was shown by such methods as multiprobe and quantitative fluorescence in situ hybridization (Multiprobe FISH and QFISH), ImmunoMFISH (analysis of the chromosome organization in different types of brain cells), and interphase chromosome-specific multicolor banding (ICS-MCB). These approaches allowed studying the nuclear organization depending on the gene composition and types of repetitive DNA of specific chromosome regions in certain types of brain cells (in neurons and glial cells, in particular). The present work demonstrates a high potential of interphase molecular cytogenetics for studying the structural and functional organizations of the cell nucleus in highly differentiated nerve cells. Analysis of interphase chromosomes of brain cells in the normal and pathological states can be considered as a promising line of research in modern molecular cytogenetics and cell neurobiology, i. e., molecular neurocytogenetics. 相似文献
16.
We have used human-mouse somatic cell hybrid to study the association between the EBV genome and the cellular genome. Attempts were made to identify a specific human chromosome(s) with which the EBV genome is associated. Our data suggest that at least in the mouse fibroblast/Burkitt lymphoma hybrid combination studies, the EBV genome is not associated with any specific human chromosome. 相似文献
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H G Zachau 《Molekuliarnaia biologiia》1990,24(6):1474-1483
A review presented in Moscow on December 4, 1989 at the 5th Engelhardt Memorial Lecture on the occasion of the 30th anniversary of the Engelhardt Institute of Molecular Biology. This article was adapted from another review lecture delivered in September 1989 in (H.G. Zachau/Biol. Chem. Hoppe-Seyler, 1990. V. 371. P. 1-6). 相似文献
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I. Yu. Iourov S. G. Vorsanova I. V. Solov’ev Yu. B. Yurov 《Russian Journal of Genetics》2010,46(9):1039-1041
One of the main genetic factors determining the functional activity of the genome in somatic cells, including brain nerve
cells, is the spatial organization of chromosomes in the interphase nucleus. For a long time, no studies of human brain cells
were carried out until high-resolution methods of molecular cytogenetics were developed to analyze interphase chromosomes
in nondividing somatic cells. The purpose of the present work was to assess the potential of high-resolution methods of interphase
molecular cytogenetics for studying chromosomes and the nuclear organization in postmitotic brain cells. A high efficiency
was shown by such methods as multiprobe and quantitative fluorescence in situ hybridization (Multiprobe FISH and QFISH), ImmunoMFISH
(analysis of the chromosome organization in different types of brain cells), and interphase chromosome-specific multicolor
banding (ICS-MCB). These approaches allowed studying the nuclear organization depending on the gene composition and types
of repetitive DNA of specific chromosome regions in certain types of brain cells (in neurons and glial cells, in particular).
The present work demonstrates a high potential of interphase molecular cytogenetics for studying the structural and functional
organizations of the cell nucleus in highly differentiated nerve cells. Analysis of interphase chromosomes of brain cells
in the normal and pathological states can be considered as a promising line of research in modern molecular cytogenetics and
cell neurobiology, i. e., molecular neurocytogenetics. 相似文献
19.
Techniques for analyzing hormone metabolites in animal excreta have created many opportunities for noninvasive monitoring of health, reproduction, and welfare in zoo animals, but can be difficult to implement when individual samples are not readily identifiable in animal groups. A common approach to this problem is to feed animals an indigestible marker that subsequently appears in feces, but there has been little systematic research on the use of such “fecal markers.” First, we used an online survey to assess the prevalence of fecal marker use in North American zoological institutions. Second, we conducted a series of experimental tests utilizing commonly employed fecal markers in a variety of typical zoo taxa to determine the: (1) effectiveness of several markers to accurately distinguish samples in a variety of species, (2) minimum quantity of marker needed for detection, and (3) length of time between ingestion and detection in the feces. The majority of the 45 institutions that completed the survey reported using fecal markers with their collections. The survey also revealed that the most frequently used markers are seeds/grains and food colorants, with the former generally used in Carnivora and the latter in Primates. Our experimental data confirmed the success of these taxa/marker combinations and also revealed that food colorants function as markers in a variety of avian, reptilian, and mammalian species. Our data describe successful fecal markers for a wide variety of zoo taxa and should, therefore, be useful for zoological managers and researchers needing to employ fecal markers in future investigations. Zoo Biol 30:379–398, 2011. © 2010 Wiley‐Liss, Inc. 相似文献