100 resultados para tetraploid


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HintergrundrnDie hygrohalophytische Gattung Salicornia ist in Mittel- und Westeuropa durch vier nah verwandte, sympatrisch vorkommende Arten vertreten. Es handelt sich um die zwei tetraploiden Arten S. procumbens und S. stricta und die diploiden Arten S. europaea und S. ramosissima. Morphologisch lassen sich die Arten zwar nur schwer voneinander unterscheiden, die morphologische Variation ist aber wiederum so hoch, dass mehrere distinkte Arten/Morphotypen unterschieden werden können. Bezüglich ihrer Verteilung im hochdynamischen Lebensraum Salzwiese findet man die verschiedenen Arten/Morphotypen in überlappenden Bereichen des Habitats. Ihr relativ vorhersagbares Auftreten entlang eines ökologischen Gradienten innerhalb ihres Lebensraumes scheint jedoch für eine ökologische Differenzierung der verschiedenen Arten/Morphotypen zu sprechen. Aufgrund des sympatrischen Vorkommens der scheinbar ökologisch und morphologisch differenzierten Morphotypen stellt sich die Frage, durch welche Prozesse diese entstanden sein könnten (genetische und ökologische Differenzierung) aber auch welche Prozesse die dauerhafte Koexistenz der Arten (reproduktive Isolationsmechanismen) aufrechterhalten.rnZielsetzungrnZiel dieser Arbeit war es, die Entstehung und Diversifizierung der mittel- und westeuropäischen Salicornia-Arten anhand von molekulargenetischen, ökologischen und reproduktionsbiologischen Methoden zu untersuchen.rnMethodenrnAnhand einer AFLP-Fragmentanalyse mit 89 Herkünften aus Großbritannien, Frankreich und Deutschland wurden molekulare Phylogenien erstellt sowie eine Hauptkomponenten- und Clusteranalyse durchgeführt. Um die ökologische Differenzierung und phänotypische Plastizität der vier Arten/Morphotypen zu untersuchen wurde ein reziprokes Transplantationsexperiment durchgeführt. Um die reproduktiven Isolationsmechanismen der Arten/Morphotypen zu untersuchen, wurden verschiedene Beobachtungen und Experimente durchgeführt.rnErgebnissernDie molekularen Analysen konnten zwar die beiden Artengruppen (Ploidiestufen) trennen, lieferten aber innerhalb dieser weder ein taxonomisches noch ein geographisches Signal. Akzessionen mit identischer Morphologie aus der gleichen Population verteilten sich in den Analysen in verschiedene genetische Cluster. Identische Morphotypen aus verschiedenen geographischen Regionen gruppieren teilweise zusammen. Das Transplantationsexperiment zeigte für die beiden tetraploiden Arten S. procumbens und S. stricta eine deutliche ökologische Differenzierung, bei S. procumbens in Form von verminderter Fitness und einer beschleunigten Phänologie, bei S. stricta nur in Form einer veränderten Phänologie. Bezüglich der Plastizität zeigten beide tetraploiden Arten eine konstante Morphologie. Die beiden diploiden Taxa S. europaea und S. ramosissima zeigten weder eine klare ökologische Differenzierung noch eine konstante Morphologie. Bezüglich der Reproduktionsbiologie konnte bestätigt werden, dass Selbstung bei allen Taxa der hauptsächliche Reproduktionsmodus ist. Bei den tetraploiden Taxa zeigte sich zwar ein geringes Maß an Fremdbefruchtung, bei den diploiden Taxa führen dagegen morphologische Besonderheiten zu hochgradiger Selbstung.rnRésumérnDie in Mittel- und Westeuropa vorkommenden Salicornia-Arten stellen keine evolutionären Einheiten dar. Die beiden tetraploiden Taxa sollten auf Grund ihrer parallelen Entstehung und ökologischen Differenzierung als Ökotypen angesprochen werden. Beide Ökotypen weisen ein hohes Ausbreitungspotential aus und persistieren als Inzuchtlinien mit geringem Anteil an Fremdbestäubung. Die diploiden Taxa sind weder ökologisch differenziert noch morphologisch stabil und sollten deshalb als nur ein morphologisch sehr variables, aus zahlreichen weitverbreiteten Inzuchtlinien bestehendes Taxon angesehen werden.

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Multiparental cross designs for mapping quantitative trait loci (QTL) in crops are efficient alternatives to conventional biparental experimental populations because they exploit a broader genetic basis and higher mapping resolution. We describe the development and deployment of a multiparental recombinant inbred line (RIL) population in durum wheat (Triticum durum Desf.) obtained by crossing four elite cultivars characterized by different traits of agronomic value. A linkage map spanning 2,663 cM and including 7,594 single nucleotide polymorphisms (SNPs) was produced by genotyping 338 RILs with a wheat-dedicated 90k SNP chip. A cluster file was developed for correct allele calling in the framework of the tetraploid durum wheat genome. Based on phenotypic data collected over four field experiments, a multi-trait quantitative trait loci (QTL) analysis was carried out for 18 traits of agronomic relevance (including yield, yield-components, morpho-physiological and seed quality traits). Across environments, a total of 63 QTL were identified and characterized in terms of the four founder haplotypes. We mapped two QTL for grain yield across environments and 23 QTL for grain yield components. A novel major QTL for number of grain per spikelet/ear was mapped on chr 2A and shown to control up to 39% of phenotypic variance in this cross. Functionally different QTL alleles, in terms of direction and size of genetic effect, were distributed among the four parents. Based on the occurrence of QTL-clusters, we characterized the breeding values (in terms of effects on yield) of most of QTL for heading and maturity as well as yield component and quality QTL. This multiparental RIL population provides the wheat community with a highly informative QTL mapping resource enabling the dissection of the genetic architecture of multiple agronomic relevant traits in durum wheat.

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Tef Eragrostis tef (Zucc.) Trotter is a cereal crop resilient to adverse climatic and soil conditions, and possessing desirable storage properties. Although tef provides high quality food and grows under marginal conditions unsuitable for other cereals, it is considered to be an orphan crop because it has benefited little from genetic improvement. Hence, unlike other cereals such as maize and wheat, the productivity of tef is extremely low. In spite of the low productivity, tef is widely cultivated by over six million small-scale farmers in Ethiopia where it is annually grown on more than three million hectares of land, accounting for over 30% of the total cereal acreage. Tef, a tetraploid with 40 chromosomes (2n=4x=40), belongs to the Family Poaceae and, together with finger millet (Eleusine coracana Gaertn), to the Subfamily Chloridoideae. It was believed to have originated in Ethiopia. There are about 350 Eragrostis species of which E. tef is the only species cultivated for human consumption. At the present time, the gene bank in Ethiopia holds over five thousand tef accessions collected from geographical regions diverse in terms of climate and elevation. These germplasm accessions appear to have huge variability with regard to key agronomic and nutritional traits. In order to properly utilize the variability in developing new tef cultivars, various techniques have been implemented to catalog the extent and unravel the patterns of genetic diversity. In this review, we show some recent initiatives investigating the diversity of tef using genomics, transcriptomics and proteomics and discuss the prospect of these efforts in providing molecular resources that can aid modern tef breeding.

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Se detallan métodos originales para inducir a la poliploidía en variedades de la Vitis Vinífera, en base a tratamientos con colchicina sobre yemas de vid en vías de formación. Se describe un poliploide (tetraploide) de la variedad Malbeck (Cot rouge) y las ventajas que su cultivo puede representar en nuestra zona. Se han efectuado las pruebas citológicas correspondientes.

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El objetivo de esta Tesis Doctoral ha sido la revisión de la taxonomía infraespecífica de la especie Atriplex halimus L., la delimitación del área geográfica que ocupan sus taxones y su caracterización morfológica. En base a las citas bibliográficas y material de herbario consultado se ha trazado un mapa de distribución de la especie, que delimita su distribución como planta espontánea a la Cuenca Mediterránea, desierto de Siria, Macizo de Hoggar y Sahara Occidental. El resto debe considerarse poblaciones naturalizadas o cultivadas. La taxonomía actual, basada en relaciones filogenéticas, nos indica que lo adecuado es separar las poblaciones de A. halimus en dos clados que se caracterizan por tener diferente nivel de ploidía. Para definir el área de distribución de los clados diploide y tetraploide se ha determinado la ploidía de 19 poblaciones en el espacio comprendido entre las dos áreas de distribución conocidas. Y como resultado el área de distribución de ambos clados puede definirse trazando una recta que une el estrecho de Gibraltar con Estambul, las poblaciones al sur de esta línea son tetraploides a las que habría que añadir las poblaciones del este y sur de la isla de Cerdeña que son también tetraploides. Se han determinado cuales son los parámetros morfológicos que permiten caracterizar ambos clados, para lo cual se han estudiado 52 poblaciones que comprenden toda el área de distribución de la especie. Se han evaluado caracteres cualitativos y cuantitativos de valvas fructíferas, plántulas cultivadas en cámara y arbustos de 2 a 4 años situados en la misma parcela. El único elemento fiable para determinar la pertenencia al clado diploide o tetraploide es la medición del nivel de ploidía. Ninguno de los caracteres morfológicos estudiados es plenamente fiable para determinar si los individuos de una población pertenecen al clado diploide o tetraploide a pesar de realizarse las mediciones sobre poblaciones cultivadas en igualdad de condiciones de suelo y clima, y en condiciones muy favorables para la expresión de caracteres cualitativos y cuantitativos. Los caracteres cualitativos observados que guardan una mayor correlación con el nivel de ploidía son: la base de las hojas de las plántulas, el porte del arbusto, la ramificación, el ángulo de inserción de las ramas y la longitud de la inflorescencia. Respecto a los datos cuantitativos los más relevantes han sido, la longitud de los cotiledones y la longitud del limbo de la 1ª, 3ª o 5ª hoja de la plántula o la razón entre este valor y la anchura del limbo. ABSTRACT The aim of this Thesis has been in the revision of the infraspecies taxa of Atriplex halimus L., the delimitation of their natural growing area and their morphological characterization. Using references to relevant literature and consultation of herbariums, it has been possible to map the distribution of the species as spontaneous plant in the Mediterranean Basin, Desert of Syria, Massif of Hoggar and Western Sahara. The remaining populations must be considered as naturalized or cultivated. The current taxonomy, based on phylogenetic relationships, indicates that A.halimus should be divided in two clades. These clades are characterized by their different ploidy level. Samples of nineteen populations collected from localizations between the defined distribution area of both clades have been characterized for their ploidy level. As a result, it can be seen that the line of clade separation can be trazed from Istambul tothe Strait of Gibraltar, where the populations north to this line are classified as diploid and those south of the line are clsassified as tetraploid. The only exception of this rule is in Sardinia, hwre populations to the West and South of the Island are also classified as tetraploid. The morphological parameters, which include the characterization of both clades, have been defined, and the study of fifty-two populations from the entire distribution area according to these parameters have been analysed. The qualitative and quantitative characteristics of the fruit valves have been evaluated, with seedlings grown in a culture chamber, and 2-4 years old shrubs grown in the same orchard. None of the morphological characters under study are fully reliable to determine whether individuals in a population belong to clade diploid or tetraploid. This is despite measurements being made on populations grown under the same conditions of soil and climate, and in very favorable conditions for the expression of qualitative and quantitative traits. The qualitative characteristics that show a higher correlation with the ploidy level are: the base of the leaves of the seedlings, the bearing bush, the branch arrangement, the angle of insertion of the branches and the inflorescence length. With regards to the quantitative data the most relevant were the length of the cotyledons and the length of the blade of the 1st, 3rd or 5th leaves of the seedling, and the ratio of any of this values and the leaf blade width. The only reliable way to determine the diploid or tetraploid clade membership is the measurement of ploidy level.

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A detailed restriction fragment length polymorphism map was used to determine the chromosomal locations and subgenomic distributions of quantitative trait loci (QTLs) segregating in a cross between cultivars of allotetraploid (AADD) Gossypium hirsutum (“Upland” cotton) and Gossypium barbadense (“Sea Island,” “Pima,” or “Egyptian” cotton) that differ markedly in the quality and quantity of seed epidermal fibers. Most QTLs influencing fiber quality and yield are located on the “D” subgenome, derived from an ancestor that does not produce spinnable fibers. D subgenome QTLs may partly account for the fact that domestication and breeding of tetraploid cottons has resulted in fiber yield and quality levels superior to those achieved by parallel improvement of “A” genome diploid cottons. The merger of two genomes with different evolutionary histories in a common nucleus appears to offer unique avenues for phenotypic response to selection. This may partly compensate for reduction in quantitative variation associated with polyploid formation and be one basis for the prominence of polyploids among extant angiosperms. These findings impel molecular dissection of the roles of divergent subgenomes in quantitative inheritance in many other polyploids and further exploration of both “synthetic” polyploids and exotic diploid genotypes for agriculturally useful variation.

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A satellite DNA sequence, As120a, specific to the A-genome chromosomes in the hexaploid oat, Avena sativa L., was isolated by subcloning a fragment with internal tandem repeats from a plasmid, pAs120, that had been obtained from an Avena strigosa (As genome) genomic library. Southern and in situ hybridization showed that sequences with homology to sequences within pAs120 were dispersed throughout the genome of diploid (A and C genomes), tetraploid (AC genomes), and hexaploid (ACD genomes) Avena species. In contrast, sequences homologous to As120a were found in two A-genome species (A. strigosa and Avena longiglumis) and in the hexaploid A. sativa whereas this sequence was little amplified in the tetraploid Avena murphyi and was absent in the remaining A- and C-genome diploid species. In situ hybridization of pAs120a to hexaploid oat species revealed the distribution of elements of the As120a repeated family over both arms of 14 of 42 chromosomes of this species. By using double in situ hybridization with pAs120a and a C genome-specific probe, three sets of 14 chromosomes were revealed corresponding to the A, C, and D genomes of the hexaploid species. Simultaneous in situ hybridizations with pAs120a and ribosomal probes were used to assign the SAT chromosomes of hexaploid species to their correct genomes. This work reports a sequence able to distinguish between the closely related A and D genomes of hexaploid oats. This sequence offers new opportunities to analyze the relationships of Avena species and to explore the possible evolution of various polyploid oat species.

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Diploid (2n = 2x = 24) Solanum species with endosperm balance number (EBN) = 1 are sexually isolated from diploid 2EBN species and both tetraploid (2n = 4x = 48, 4EBN) and haploid (2n = 2x = 24, 2EBN) S. tuberosum Group Tuberosum. To sexually overcome these crossing barriers in the diploid species S. commersonii (1EBN), the manipulation of the EBN was accomplished by scaling up and down ploidy levels. Triploid F1 hybrids between an in vitro-doubled clone of S. commersonii (2n = 4x = 48, 2EBN) and diploid 2EBN clones were successfully used in 3x × 4x crosses with S. tuberosum Group Tuberosum, resulting in pentaploid/near pentaploid BC1 progenies. This provided evidence of 2n (3x) egg formation in the triploid female parents. Two selected BC1 pentaploid hybrids were successfully backcrossed both as male and as female parents with S. tuberosum Group Tuberosum. The somatic chromosome number varied greatly among the resulting BC2 progenies, which included hyperaneuploids, but also a number (4.8%) of 48-chromosome plants. The introgression of S. commersonii genomes was confirmed by the presence of S. commersonii-specific randomly amplified polymorphic DNA markers in the BC2 population analyzed. The results clearly demonstrate the feasibility of germplasm introgression from sexually isolated diploid 1EBN species into the 4x (4EBN) gene pool of the cultivated potato using sexual hybridization. Based on the amount and type of genetic variation generated, cumbersomeness, general applicability, costs, and other factors, it would be interesting to compare the approach reported here with other in vitro or in vivo, direct or indirect, approaches previously reported.

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Depletion of poly(ADP-ribose) polymerase (PARP) increases the frequency of recombination, gene amplification, sister chromatid exchanges, and micronuclei formation in cells exposed to genotoxic agents, implicating PARP in the maintenance of genomic stability. Flow cytometric analysis now has revealed an unstable tetraploid population in immortalized fibroblasts derived from PARP−/− mice. Comparative genomic hybridization detected partial chromosomal gains in 4C5-ter, 5F-ter, and 14A1-C1 in PARP−/−mice and immortalized PARP−/−fibroblasts. Neither the chromosomal gains nor the tetraploid population were apparent in PARP−/− cells stably transfected with PARP cDNA [PARP−/−(+PARP)], indicating negative selection of cells with these genetic aberrations after reintroduction of PARP cDNA. Although the tumor suppressor p53 was not detectable in PARP−/− cells, p53 expression was partially restored in PARP−/− (+PARP) cells. Loss of 14D3-ter that encompasses the tumor suppressor gene Rb-1 in PARP−/− mice was associated with a reduction in retinoblastoma(Rb) expression; increased expression of the oncogene Jun was correlated with a gain in 4C5-ter that harbors this oncogene. These results further implicate PARP in the maintenance of genomic stability and suggest that altered expression of p53, Rb, and Jun, as well as undoubtedly many other proteins may be a result of genomic instability associated with PARP deficiency.

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Nucleolar dominance is an epigenetic phenomenon in which one parental set of ribosomal RNA (rRNA) genes is silenced in an interspecific hybrid. In natural Arabidopsis suecica, an allotetraploid (amphidiploid) hybrid of Arabidopsis thaliana and Cardaminopsis arenosa, the A. thaliana rRNA genes are repressed. Interestingly, A. thaliana rRNA gene silencing is variable in synthetic Arabidopsis suecica F1 hybrids. Two generations are needed for A. thaliana rRNA genes to be silenced in all lines, revealing a species-biased direction but stochastic onset to nucleolar dominance. Backcrossing synthetic A. suecica to tetraploid A. thaliana yielded progeny with active A. thaliana rRNA genes and, in some cases, silenced C. arenosa rRNA genes, showing that the direction of dominance can be switched. The hypothesis that naturally dominant rRNA genes have a superior binding affinity for a limiting transcription factor is inconsistent with dominance switching. Inactivation of a species-specific transcription factor is argued against by showing that A. thaliana and C. arenosa rRNA genes can be expressed transiently in the other species. Transfected A. thaliana genes are also active in A. suecica protoplasts in which chromosomal A. thaliana genes are repressed. Collectively, these data suggest that nucleolar dominance is a chromosomal phenomenon that results in coordinate or cooperative silencing of rRNA genes.

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We previously generated a transgenic mouse model for acute promyelocytic leukemia (APL) by expressing the promyelocytic leukemia (PML)–retinoic acid receptor (RARα) cDNA in early myeloid cells. This fusion protein causes a myeloproliferative disease in 100% of animals, but only 15–20% of the animals develop acute leukemia after a long latency period (6–13 months). PML-RARα is therefore necessary, but not sufficient, for APL development. The coexpression of a reciprocal form of the fusion, RARα-PML, increased the likelihood of APL development (55–60%), but did not shorten latency. Together, these results suggested that additional genetic events are required for the development of APL. We therefore evaluated the splenic tumor cells from 18 transgenic mice with APL for evidence of secondary genetic events, by using spectral karyotyping analysis. Interstitial or terminal deletions of the distal region of one copy of chromosome 2 [del(2)] were found in 1/5 tumors expressing PML-RARα, but in 11/13 tumors expressing both PML-RARα and RARα-PML (P < 0.05). Leukemic cells that contained a deletion on chromosome 2 often contained additional chromosomal gains (especially of 15), chromosomal losses (especially of 11 or X/Y), or were tetraploid (P ≤ 0.001). These changes did not commonly occur in nontransgenic littermates, nor in aged transgenic mice that did not develop APL. These results suggest that expression of RARα-PML increases the likelihood of chromosome 2 deletions in APL cells. Deletion 2 appears to predispose APL cells to further chromosomal instability, which may lead to the acquisition of additional changes that provide an advantage to the transformed cells.

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Poly(ADP-ribose) polymerase (PARP) knockout mice are resistant to murine models of human diseases such as cerebral and myocardial ischemia, traumatic brain injury, diabetes, Parkinsonism, endotoxic shock and arthritis, implicating PARP in the pathogenesis of these diseases. Potent selective PARP inhibitors are therefore being evaluated as novel therapeutic agents in the treatment of these diseases. Inhibition or depletion of PARP, however, increases genomic instability in cells exposed to genotoxic agents. We recently demonstrated the presence of a genomically unstable tetraploid population in PARP–/– fibroblasts and its loss after stable transfection with PARP cDNA. To elucidate whether the genomic instability is attributable to PARP deficiency or lack of PARP activity, we investigated the effects of PARP inhibition on development of tetraploidy. Immortalized wild-type and PARP–/– fibroblasts were exposed for 3 weeks to 20 µM GPI 6150 (1,11b-dihydro-[2H]benzopyrano[4,3,2-de]isoquinolin-3-one), a novel small molecule specific competitive inhibitor of PARP (Ki = 60 nM) and one of the most potent PARP inhibitors to date (IC50 = 0.15 µM). Although GPI 6150 initially decreased cell growth in wild-type cells, there was no effect on cell growth or viability after 24 h. GPI 6150 inhibited endogenous PARP activity in wild-type cells by ∼91%, to about the residual levels in PARP–/– cells. Flow cytometric analysis of unsynchronized wild-type cells exposed for 3 weeks to GPI 6150 did not induce the development of tetraploidy, suggesting that, aside from its catalytic function, PARP may play other essential roles in the maintenance of genomic stability.

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A maximum likelihood approach of half tetrad analysis (HTA) based on multiple restriction fragment length polymorphism (RFLP) markers was developed. This procedure estimates the relative frequencies of 2n gametes produced by mechanisms genetically equivalent to first division restitution (FDR) or second division restitution and simultaneously locates the centromere within a linkage group of RFLP marker loci. The method was applied to the diploid alfalfa clone PG-F9 (2n = 2x = 16) previously selected because of its high frequency of 2n egg production. HTA was based on four RFLP loci for which PG-F9 was heterozygous with codominant alleles that were absent in the tetraploid tester. Models including three linked and one unlinked RFLP loci were developed and tested. Results of the HTA showed that PG-F9 produced 6% FDR and 94% second division restitution 2n eggs. Information from a marker locus belonging to one linkage group was used to more precisely locate the centromere on a different linkage group. HTA, together with previous cytological analysis, indicated that in PG-F9, FDR 2n eggs are likely produced by diplospory, a mechanism common among apomictic species. The occurrence of FDR 2n eggs in plant species and their importance for crop evolution and breeding is discussed together with the potential applicability of multilocus HTA in the study of reproductive mutants.

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A silent transgene in Arabidopsis thaliana was reactivated in an outcross but not upon selfing of hemizygous plants. This result could only be explained by assuming a genetic difference between the transgene-free gametes of the wild-type and hemizygous transgenic plants, respectively, and led to the discovery of ploidy differences between the parental plants. To investigate whether a change of ploidy by itself can indeed influence gene expression, we performed crosses of diploid or tetraploid plants with a strain containing a single copy of a transgenic resistance gene in an active state. We observed reduced gene expression of the transgene in triploid compared with diploid hybrids. This led to loss of the resistant phenotype at various stages of seedling development in part of the population. The gene inactivation was reversible. Thus, an increased number of chromosomes can result in a new type of epigenetic gene inactivation, creating differences in gene expression patterns. We discuss the possible impact of this finding for genetic diploidization in the light of widespread, naturally occurring polyploidy and polysomaty in plants.

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Monoallelic expression in diploid mammalian cells appears to be a widespread phenomenon, with the most studied examples being X-chromosome inactivation in eutherian female cells and genomic imprinting in the mouse and human. Silencing and methylation of certain sites on one of the two alleles in somatic cells is specific with respect to parental source for imprinted genes and random for X-linked genes. We report here evidence indicating that: (i) differential methylation patterns of imprinted genes are not simply copied from the gametes, but rather established gradually after fertilization; (ii) very similar methylation patterns are observed for diploid, tetraploid, parthenogenic, and androgenic preimplantation mouse embryos, as well as parthenogenic and androgenic mouse embryonic stem cells; (iii) haploid parthenogenic embryos do not show methylation adjustment as seen in diploid or tetraploid embryos, but rather retain the maternal pattern. These observations suggest that differential methylation in imprinted genes is achieved by a dynamic process that senses gene dosage and adjusts methylation similar to X-chromosome inactivation.