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Dual roles of human BubR1, a mitotic checkpoint kinase, in the monitoring of chromosomal instability.

In this study, we show that the formation of polyploidy following sustained mitotic checkpoint activation appears to be preceded by the ubiquitin-dependent proteolysis of hBubR1. In addition, the level of hBubR1 is significantly reduced not only in polyploid cells created by sustained mitotic spindle damage, but also in 21 (31.3%) of 67 human colon adenocarcinomas tested. Importantly, the introduction of hBubR1 triggers the apoptosis of polyploid cells formed by aberrant exit from mitosis and inhibits the growth of tumors established with these cells in athymic nude mice. These results suggest that hBubR1-mediated apoptosis prevents the propagation of cells that breach the mitotic checkpoint and that the control of hBubR1 protein level is an important factor in the acquisition of preneoplastic polyploidy.

Adenocarcinoma↗

Scanning electron microscopy analysis of the human zona pellucida: influence of maturity and fertilization on morphology and sperm binding pattern.

Human oocytes from the same as well as from different patients have an extremely heterogeneous morphology of the zona pellucida surface as shown by scanning electron microscopy. For years it has been believed that this heterogeneous morphology plays an important part in the sperm-oocyte interaction. It was the aim of this investigation to analyse the morphology and the sperm binding patterns of the human zona pellucida. Oocytes were divided into four categories: mature, immature, fertilized and unfertilized. Four different types of zona morphology were detectable. They ranged from a porous, net-like structure to a nearly smooth and compact surface. No correlation could be established between zona type and oocyte maturity or zona type and achieved fertilization. However, fertilized (polyploid) oocytes had a more compact and smooth zona surface than unfertilized ones. The analysis of the number and distribution patterns of bound spermatozoa on the zona pellucida revealed extremely variable patterns regardless of the zona morphology. Significant differences between mature and immature oocytes did not appear. In both groups there were oocytes with either no or numerous bound spermatozoa on the zona pellucida. Oocytes overloaded with spermatozoa could only be found in the mature group. Unfertilized oocytes had fewer bound spermatozoa on average than polyploid zygotes.

Cell Differentiation↗

[Effects of Helicobacter pylori infection on porcine gastric epithelial cell proliferation].

OBJECTIVE: To investigate the association between porcine gastric epithelial cell proliferation and Helicobacter pylori (Hp) infection. METHOD: Animal models of gastritis associated with Hp infection were established using "Chinese No.1 pigs". The expressions of proliferating cell nuclear antigen (PCNA) and DNA polyploid content in porcine gastric epithelial cells were quantitatively assayed by means of immunohistochemistry and Feulgen stain respectively. RESULTS: The values of PCNA labeling index (LI) in the porcine gastric epithelial cells of the experimental group were significantly higher than those of the control group (40.95+/-3.60 vs 29.4+/-12.82, P<0.01). The DNA diploid or approximate diploid content in the gastric mucosa of the pigs was significantly lower (70.78% vs 90.65%, P<0.01), but the proliferation polyploid and non-doubleploid of DNA significantly higher in the experimental group than in the control group (P<0.01). CONCLUSION: Hp infection may play a role to enhance the proliferation of gastric epithelial cells in pigs.

Animals↗

Transition to tetraploidy in 1,25-dihydroxyvitamin D3-resistant HL60 cells is preceded by reduced growth factor dependence and constitutive up-regulation of Sp1 and AP-1 transcription factors.

Increased ploidy is an ominous event in the progression of human malignancies. It is usually associated with an increased growth rate of the neoplastic cells and a generally more autonomous and aggressive biological behavior. However, it has not been established whether the more rapid growth rate and growth factor independence are consequences of the polyploid, karyotypically increasingly aberrant nature of these cells or whether the accelerated, more autonomous growth contributes to polyploidization. In this study, we have examined a recently described (H. J. Wajchman et al., Exp. Cell Res., 224: 312-322, 1996) series of sublines of HL60 cells with increasing resistance to the monocytic differentiation-inducing steroid hormone 1,25-dihydroxyvitamin D3 (1,25D3) and found that growth factor independence, shown by reduced requirement for serum supplementation of the medium and the ability to grow at low seeding densities, precedes polyploidization of these cultures. The growth factor independence was found to be accompanied by constitutive changes in the DNA binding pattern of the ubiquitous transcription factor Sp1, characteristic of an exposure to 1,25D3. Similar changes in the pattern of AP-1 binding were also observed in the 1,25D3-resistant HL60 sublines, but the intensity of the DNA binding by AP-1 was increased only in sublines with resistance to 1,25D3 but still near-diploid. The data suggest that the culture of HL60 cells in the presence of 1,25D3 results in constitutive up-regulation of growth-related machinery that reduces the need for growth factors and cytokines and demonstrate that this increased growth potential precedes polyploidization of the culture populations.

Animals↗

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↗

An hypothesis about genome structures in mammalian polyploid cells based on a new concept that genome is fractal of six hierarchies.

A new model for the spatial configurations of DNA is proposed to solve the problem of DNA loss in mammalian polyploid cells. The ordinary concept that chromosomes are situated independently in nuclei cannot account well for the DNA loss in polyploid cells. A new concept about the DNA configurations in diploid cells is constructed based on observations that have been reported. Briefly, the DNA structure is self-similar fractal with a unit of opposite-handed twin-circles. In human diploid cells, DNA is constructed with six hierarchies whose sizes are 32(5), 32(4), 32(3), 32(2), 32(1) and 32(0) with a unit of 200 DNA base pairs, corresponding to a genome, a chromosome, a chromosome band, a replicon, a rosette loop (a gene) and a nucleosome, respectively. A model assuming particular spatial configurations of chromosomes in polyploid cells is deduced from this new concept about chromosome configurations in diploid cells. It can account satisfactorily for the problem of DNA loss in polyploid cells. When cell division is inhibited and DNA synthesis progresses, replicated DNA will be stacked. When inhibitors are removed, the polyploidized cells may return to the initial ploidy, because the stacked DNA loops have not been linked. When the stacked DNA twin-loops are linked with a proper configuration, the cells may become polyploid cells. There is a distinct difference in genome structure between polyploidized and polyploid cells. The homologous chromosomes of polyploid cells are arrayed mirror-symmetrically and they can come close to each other in the folded structure. If DNA synthesis is bypassed at the paired homologous chromosomes, DNA content is lost at every cell division. As the DNA loss progresses, the chromosome configuration of polyploid cells deviates gradually from mirror-symmetry and the DNA loss ceases, resulting in the establishment of semi-stable hypoploid.

Animals↗

Polyploid mesothelial cells in pleural fluid.

The Feulgen-DNA content of the mesothelial cells in non-malignant pleural fluids was cytophotometrically examined on 21 autopsy cases, in 13 of which (62%) polyploid mesothelial cells with greater than tetraploid nuclear DNA content were found. In 7 the polyploid cells appeared at the rate of 6 to 14%, 6 of which had suffered from uremia or congestive cardiac failure. The appearance rate was closely related to such pleural pathologic changes as prominent edema, diffuse hemorrhage, and fibrin precipitation. The occurrence of these polyploid cells was considered to be the result of mitotic abnormalities in the affected pleural area. Since polyploid mesothelial cells are not rare in certain non-malignant pleural fluids, a trial to establish the diagnosis of malignancy based on DNA cytophotometry alone is not recommended.

Adolescent↗

[Immortalization of human embryonic cervical epithelial cells induced by E6, E7 genes of human papillomavirus 16].

OBJECTIVE: To establish an immortalized cell line derived from the embryonic cervical epithelium by infection with the recombinant adeno-associated virus (rAAV) containing human papillomavirus (HPV)16 E6, E7, and to study the biological features of cervical cancer cell line. METHODS: Human embryonic cervical tissues were cultured in keratinocyte free serum (K-FS) medium and infected with rAAV containing HPV16 E6, E7. Morphological features and growth rate were examined by light, electronic and fluorescence microscopies. The fragments of E6, E7 were detected by polymerase chain reaction (PCR) and laser confocal microscopy. The biological characteristics of human cervical epithelium were observed by soft agar culture, scid mice inoculation and chromosome analysis. Cell proliferative dynamics was plotted by flow cytometry. RESULTS: After a long-term culture, the phenotype kept the characteristics of primary epithelial cells. They showed monolayer, anchorage-dependent and attachment-inhibited growth without forming colonies in soft agar culture. They were non-oncogenic when inoculated into scid mice. The tonofilament expression in the cervical cancer cells was inspected by electronic microscopy, demonstrating that the cells were squamous epithelium in origin. The cell line contained HPV16 E6, E7 genes by PCR and laser confocal detection. Chromosome analysis disclosed that the karyotype was diploid or polyploid. The 11th chromosome was assumed to be the integration site by rAAV containing HPV16 E6, E7. CONCLUSIONS: Establishment of the immortalized cervical epithelial cell line by infection with rAAV containing HPV16 E6, E7, supports that HPV16 E6, E7 may be the primary etiology of cervical cancer. It will facilitate further research on the etiology and pathogenesis of cervical cancer.

Animals↗

Polyploidization in the trophoblast and uterine glandular epithelium of the endotheliochorial placenta of silver fox (Vulpes fulvus Desm.), as revealed by the DNA content.

Dynamics of genome multiplication during establishment of interrelations between trophoblast and glandular epithelium of the endometrium has been studied in the course of formation of placenta in the silver fox. During formation of the placenta, penetration of the trophoblast into the zone of the endometrial glandular epithelium and of endometrial blood vessels into the zone of expanding trophoblast occurs. The trophoblast, which gradually replaces epithelium and a part of the stroma of the endometrium, closely adjoins endometrial vessels but does not disrupt them, thereby the endotheliochorial placenta is formed. Cytophotometric measurements of the DNA content in trophoblast nuclei have shown that most of them are polyploid: predominantly 4-64c, occasionally 128c and 256c. Polyploidy of the trophoblast may be a consequence of various types of polyploidizing mitoses. Cytophotometric measurements of the DNA content in mitotic figures have revealed the presence of mitoses of diploid cells, i.e. with the DNA amount of 4c (2n), and polyploid cells, i.e. 8c (4n), and 16c (8n), therefore trophoblast cells in the silver fox placenta are able to enter mitosis up to the octaploid level. Higher degrees of polyploidy in the trophoblast cells seem to be achieved by endoreduplication. Polyploidization of the uterine glandular epithelial cells during placentation in the silver fox occurs until the level of 8c. Thus, the tissue-specific response of the uterus to the implanting embryo consists of active proliferation and polyploidization of the glandular epithelium, which may compensate formation of prominent population of decidual cells (i.e., connective tissue cells). In the endotheliochorial placenta of the silver fox the regularity is confirmed that cells of both maternal and fetal origin are, as a rule, polyploid in sites of their contact in placenta, which may be of protective significance in the contact of allogenic organisms.

Animals↗

Do the different parental 'heteromes' cause genomic shock in newly formed allopolyploids?

Allopolyploidy, the joining of two parental genomes in a polyploid organism with diploid meiosis, is an important mechanism of reticulate evolution. While many successful long-established allopolyploids are known, those formed recently undergo an instability phase whose basis is now being characterized. We describe observations made with the Arabidopsis system that include phenotypic instability, gene silencing and activation, and methylation changes. We present a model based on the epigenetic destabilization of genomic repeats, which in the parents are heterochromatinized and suppressed. We hypothesize that loss of epigenetic suppression of these sequences, here defined as the heterome, results in genomic instability including silencing of single-copy genes.

Arabidopsis↗

[Studies on genetic diversity in gonochoristic offspring produced from mating between two different gynogenetic clones of silver crucian carp].

Based on the discovery of gonochoristic reproductive mode in silver crucian carp (Carassius auratus gibelio), 18 individuals from the mated offspring between clone F and clone D and their parents were analyzed using 11 RAPD primers. The mated offspring differentiated into three phenotypes. One phenotype is similar to that of clone F (SF). The second is similar to that of clone D (SD). The third shows a novel longer and thinner body type (NL). Electrophoretogram results show abundant polymorhic DNA fragments among individuals in the FD mated offspring. Obviously, the polymorphic DNA fragments originate from the genome recombination owing to the gonochoristic reproductive mode. The FD mated offspring amplify different fingerprints from maternal, and their fingerprints are different from each other. These different DNA fragments can be divided into four groups according to their origin. The average genetic distance among individuals from the FD offspring (0.23 +/- 0.123) is much higher than that of allogynogenetic offspring, which is only about 0.01. Of the three phenotypes in the FD offspring, the average distances among SD is the highest (0.235 +/- 0.097). The next is SF phenotype, in which the average distances is 0.148 +/- 0.073. The average distances among NL is the lowest (0.094 +/- 0.083). The gonochoristic reproductive mode introduces high genotypic variability and underlines genetic diversity. A dendrogram was constructed by NJTREE cluster analysis based on a total of 2320 distinguishable fragments (116 per individual). NL3 and maternal are most closely related, and SD3 and paternal are most closely related. The average genetic distances between SD and SF or NL (> 0.31) is higher than that of between SF and NL (0.124). Consistent with previous study, the genetic distance between maternal and paternal is 0.35. The average genetic distances between FD offspring and parents are both about 0. 32. But the similarities among the three phenotypes in mated group FD offspring and parents are different. The similarity between SF and maternal (71%) is higher than similarities among other phenotypes and maternal. The similarity between SD and paternal (70%) is higher than similarities among other phenotypes and paternal. The results suggest the similarities among three phenotypes in the FD offspring and parents are related with their phenotypes because some DNA fragments specific for phenotypes were amplified in this study. The revelation about reproductive diversity will be able to open the door in which complicated mechanism has been locked in unisexual organisms for long time, and establish the important roles of silver crucian carp in the studies on evolutionary genetics in unisexual or polyploid vertebrates.

Animals↗

Proliferation and growth of intestinal epithelium in Ascaris suum (Nematoda) during postnatal ontogeny. Communication III. Mitotic anomalies and changes in ploidy and nucleus size.

It was established by cytophotometry that the amount of DNA in intestinal-epithelium cells rises from the diploid to a tetraploid level during the early postnatal ontogeny of ascarids so that eventually nuclei with a diploid quantity of DNA practically disappear. Apart from this, there appear cells with a higher DNA content: 8c, 16c, 32c, and even 64c. Pictures of anomalous mitotic processes, as well as polypoid meta- and anaphases, were also observed. A result of the polyploidization is an increased size of nuclei and cells, but nucleus size is not always correlated with the DNA content. The previously established sixfold increase in the mean volume of intestinal cells during postnatal ontogeny of the ascarid is due to their transition to the new ploidy level and additional "paragenomic" growth of the polypoid cells.

Animals↗

Detection of chromosomes tagged with green fluorescent protein in live Arabidopsis thaliana plants.

BACKGROUND: Structural and dynamic studies of chromosomes tagged with green fluorescent protein (GFP) in yeast and cultured animal cells have revealed some surprises. Although this technology can be very powerful, only a few studies using this approach with developed multicellular systems have been reported for the study of chromatin behavior in situ. RESULTS: We established vectors and conditions to visualize tagged loci stably inserted in the Arabidopsis genome via GFP fused to a bacterial DNA-binding protein. Using this system, three-dimensional coordinates for tagged loci within nuclei from cells of a live plant can be directly determined with concomitant visualization of the position of the nucleolus. Chromosome polyploidization in epidermal cells at the elongation zone of the root in transgenic plants can be visualized in situ using this technique. CONCLUSION: We have established that GFP fusion with DNA-binding proteins can be used in conjunction with concatameric binding-site arrays to track genomic loci in living Arabidopsis plants. It should now be feasible to study the mechanisms of organization and dynamics of chromatin in specific cell types during various times of plant development, taking advantage of the well developed genetic systems and resources available for Arabidopsis.

Arabidopsis↗

Vertebrate evolution by interspecific hybridisation--are we polyploid?

For the growing fraction of human genes with identified functions there are often homologues known from invertebrates such as Drosophila. A survey of well established gene families from aldolases to zinc finger transcription factors reveals that usually a single invertebrate gene corresponds to up to four equally related vertebrate genes on different chromosomes. This pattern was before widely noticed for the Hox gene clusters but appears to be more general. Genome quadruplication by two rounds of hybridisation is discussed as a simple biological mechanism that could have provided the necessary raw material for the success of vertebrate evolution.

Animals↗

Phylogenomics reveals persistent gene-tree discordance in the Chenopodium album aggregate.

BACKGROUND AND AIMS: Complex genomic histories shaped by hybridisation and polyploidy can influence traits related to plant defence, stress tolerance and toxicity, particularly in Amaranthaceae, which includes crops such as quinoa and spinach. Within this family, white goosefoot (Chenopodium album), a widespread agricultural weed and traditional food resource, belongs to a diploid-polyploid aggregate with extensive phylogenetic discordance. Clarifying its evolutionary history provides context for interpreting ecologically and agronomically relevant trait variation across the aggregate. Building on the established genome-lineage framework, we tested whether discordance persists when constituent genome-lineage components are represented separately and whether the remaining signal is compatible with reticulate evolution. METHODS: We analysed 2,298 conserved nuclear BUSCO families across 27 assembly-level terminals using tree- and network-based approaches. Genome-lineage-aware analyses used 2,156 families after separating polyploid Chenopodium into A-H components, with Dysphania ambrosioides as outgroup. HyDe tested site-pattern asymmetry under global false-discovery-rate correction. KEY RESULTS: Assembly-level analyses grouped the Danish C. album aggregate accession Ca6-1 with hexaploid C. album sensu stricto dcCheAlbu1.1, whereas relationships among surrounding Chenopodium taxa were less stable. Genome-lineage-aware analyses recovered the expected B-, C- and D-affinity relationships, but substantial gene-family heterogeneity persisted. Reticulate network models fitted the assembly-level data better than bifurcating models, although inferred patterns differed between methods. HyDe detected significant site-pattern asymmetry in a small subset of loci, with most retained signal shared between the focal assemblies. CONCLUSIONS: Gene-tree discordance persists in the C. album aggregate after genome-lineage separation. The established genome-lineage framework captures the dominant phylogenomic structure, while residual heterogeneity is compatible with both tree-like and reticulate processes without identifying direct progenitors or a unique hybridisation history. This framework supports future analyses of lineage-specific and trait-associated loci related to plant defence, food quality and toxicity in C. album and related Amaranthaceae.

Chenopodium album↗

SpacerScope: binary-vectorized, genome-wide off-target profiling for RNA-guided nucleases without prior candidate-site bias.

The precision of CRISPR/Cas systems is fundamental to their application in plant and animal biotechnology. However, comprehensive sequence-based off-target candidate discovery remains a computational bottleneck, particularly in large and complex genomes. Here we developed SpacerScope, an off-target candidate discovery framework that enables unbiased, genome-wide discovery by leveraging binary vectorization, bitwise filtering, and right-end-anchored alignment. Benchmarking against human CIRCLE-seq data demonstrated that SpacerScope recovered 100% of validated off-target sites (6142/6142), matching the sensitivity of exhaustive algorithms. Crucially, SpacerScope achieved this maximum candidate recovery while substantially reducing computational overhead. In large-genome evaluations, SpacerScope maintained low peak memory usage of 2.20 GiB and achieved substantial runtime improvements over indel-aware comparator tools, including more than 50-fold speedup relative to Cas-OFFinder 3 (544&#xa0;s versus 29&#xa0;185&#xa0;s). Furthermore, comparative analyses in polyploid species, such as the octoploid strawberry, revealed that SpacerScope identified larger sequence-compatible candidate burdens than standard web-based design platforms. Our results establish SpacerScope as a high-speed framework for sequence-based genome-wide off-target candidate discovery across diverse and highly repetitive genomic landscapes. The source code and program was publicly available at https://github.com/charlesqu666/SpacerScope. Short Abstract CRISPR/Cas sequence-based off-target candidate discovery remains computationally challenging in large, repetitive, and polyploid genomes. Existing tools either miss indel-containing candidate sites or incur prohibitive runtime and memory costs. We developed SpacerScope, a binary-vectorized framework that enables unbiased, genome-wide off-target candidate discovery without pre-selected candidate sites. By integrating bitwise filtering with right-end-anchored alignment, SpacerScope recovered 100% of validated off-target sites in human CIRCLE-seq data while using only 2.20 GiB of memory and achieving more than 10-fold speedup over indel-aware alternatives. Evaluation in plant genomes, including rice and octoploid strawberry, further demonstrated SpacerScope's capacity to identify larger sequence-compatible candidate burdens overlooked by standard tools. SpacerScope thus provides a high-speed framework for sequence-based genome-wide off-target candidate discovery across diverse and highly repetitive genomic landscapes, supporting downstream prioritization.

CRISPR-Cas Systems↗

Genes encoding plastid acetyl-CoA carboxylase and 3-phosphoglycerate kinase of the Triticum/Aegilops complex and the evolutionary history of polyploid wheat.

The classic wheat evolutionary history is one of adaptive radiation of the diploid Triticum/Aegilops species (A, S, D), genome convergence and divergence of the tetraploid (Triticum turgidum AABB, and Triticum timopheevii AAGG) and hexaploid (Triticum aestivum, AABBDD) species. We analyzed Acc-1 (plastid acetyl-CoA carboxylase) and Pgk-1 (plastid 3-phosphoglycerate kinase) genes to determine phylogenetic relationships among Triticum and Aegilops species of the wheat lineage and to establish the timeline of wheat evolution based on gene sequence comparisons. Triticum urartu was confirmed as the A genome donor of tetraploid and hexaploid wheat. The A genome of polyploid wheat diverged from T. urartu less than half a million years ago (MYA), indicating a relatively recent origin of polyploid wheat. The D genome sequences of T. aestivum and Aegilops tauschii are identical, confirming that T. aestivum arose from hybridization of T. turgidum and Ae. tauschii only 8,000 years ago. The diploid Triticum and Aegilops progenitors of the A, B, D, G, and S genomes all radiated 2.5-4.5 MYA. Our data suggest that the Acc-1 and Pgk-1 loci have different histories in different lineages, indicating genome mosaicity and significant intraspecific differentiation. Some loci of the S genome of Aegilops speltoides and the G genome of T. timophevii are closely related, suggesting the same origin of some parts of their genomes. None of the Aegilops genomes analyzed is a close relative of the B genome, so the diploid progenitor of the B genome remains unknown.

Acetyl-CoA Carboxylase↗

[Radioautographic and cytofluorimetric analysis of DNA synthesis during the pre-implantation period of rat and mouse embryonic development].

The patterns of DNA synthesis and kinetics of cell population in the rat and mouse embryos were studied by means of 3H-thymidine autoradiography and cytofluorimetry. The rat and mouse embryos during the period of cleavage consist of a heterogenous population of blastomeres. At all the stages under study, all phases of the cell cycle occur in the blastomeres: G1, S, G2 and mitosis. The embryonic cells were distributed into groups containing 2c, 3c, 4c and more DNA. The ratio of cell number in these groups differed in the mouse and rat embryos. The mouse embryos are characterized by the appearance of a considerable amount of polyploid cells in S phase at the morula stage. The stage and species specific quantitative and qualitative patterns were established for DNA synthesis and kinetics of the cell population of blastomeres.

Animals↗