734 resultados para Genetical rearrangements


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The Akodontini is the second most speciose tribe of sigmodontine rodents, one of the most diverse groups of neotropical mammals. Molecular phylogenetic analyses are discordant regarding the interrelationships of genera, with low support for some clades. However, two clades are concordant, one (clade A) with Akodon sensu strictu (excluding Akodon serrensis), "Akodon" serrensis, Bibimys, Deltamys, Juscelinomys, Necromys, Oxymycterus, Podoxymys, Thalpomys and Thaptomys, and another (clade B) with Blarinomys, Brucepattersonius, Kunsia, Lenoxus and Scapteromys. Here, we present chromosome painting using Akodon paranaensis (APA) Y paint, after suppression of simple repetitive sequences, on ten Akodontini genera. Partial Y chromosome homology, in addition to the homology already reported on the Akodon genus, was detected on the Y chromosomes of "A." serrensis, Thaptomys, Deltamys, Necromys and Thalpomys and on Y and X chromosomes in Oxymycterus. In Blarinomys, Brucepattersonius, Scapteromys and Kunsia, no APA Y signal was observed using different hybridization conditions; APA X paint gave positive signals only on the X chromosome in all genera. The Y chromosome homology was variable in size and positioning among the species studied as follow: (1) whole acrocentric Y chromosome in Akodon and "A." serrensis, (2) Yp and pericentromeric region in submetacentric Y of Necromys and Thaptomys, (3) pericentromeric region in acrocentric Y of Deltamys, (4) distal Yq in the acrocentric Y chromosome of Thalpomys and (5) proximal Yq in the acrocentric Y and Xp in the basal clade A genus Oxymycterus. The results suggest that the homology involves pairing (pseudoautosomal) and additional regions that have undergone rearrangement during divergence. The widespread Y homology represents a phylogenetic signal in Akodontini that provides additional evidence supporting the monophyly of clade A. The findings also raise questions about the evolution of the pseudoautosomal region observed in Oxymycterus. The Y chromosomes of these closely related species seem to have undergone dynamic rearrangements, including restructuring and reduction of homologous segments. Furthermore, the changes observed may indicate progressive attrition of the Y chromosome in more distantly related species.

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An increasing number of genes required for mitochondrial biogenesis, dynamics, or function have been found to be mutated in metabolic disorders and neurological diseases such as Leigh Syndrome. In a forward genetic screen to identify genes required for neuronal function and survival in Drosophila photoreceptor neurons, we have identified mutations in the mitochondrial methionyl-tRNA synthetase, Aats-met, the homologue of human MARS2. The fly mutants exhibit age-dependent degeneration of photoreceptors, shortened lifespan, and reduced cell proliferation in epithelial tissues. We further observed that these mutants display defects in oxidative phosphorylation, increased Reactive Oxygen Species (ROS), and an upregulated mitochondrial Unfolded Protein Response. With the aid of this knowledge, we identified MARS2 to be mutated in Autosomal Recessive Spastic Ataxia with Leukoencephalopathy (ARSAL) patients. We uncovered complex rearrangements in the MARS2 gene in all ARSAL patients. Analysis of patient cells revealed decreased levels of MARS2 protein and a reduced rate of mitochondrial protein synthesis. Patient cells also exhibited reduced Complex I activity, increased ROS, and a slower cell proliferation rate, similar to Drosophila Aats-met mutants.

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Recurrent chromosomal translocations underlie both haematopoietic and solid tumours. Their origin has been ascribed to selection of random rearrangements, targeted DNA damage, or frequent nuclear interactions between translocation partners; however, the relative contribution of each of these elements has not been measured directly or on a large scale. Here we examine the role of nuclear architecture and frequency of DNA damage in the genesis of chromosomal translocations by measuring these parameters simultaneously in cultured mouse B lymphocytes. In the absence of recurrent DNA damage, translocations between Igh or Myc and all other genes are directly related to their contact frequency. Conversely, translocations associated with recurrent site-directed DNA damage are proportional to the rate of DNA break formation, as measured by replication protein A accumulation at the site of damage. Thus, non-targeted rearrangements reflect nuclear organization whereas DNA break formation governs the location and frequency of recurrent translocations, including those driving B-cell malignancies.

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Crotalus durissus terrificus snake venom (CdtV) has long-lasting anti-inflammatory properties and inhibits the spreading and phagocytic activity of macrophages. Crotoxin (CTX), the main component of CdtV, is responsible for these effects. Considering the role of neutrophils in the inflammatory response and the lack of information about the effect of CdtV on neutrophils, the aim of this study was to investigate the effect of CdtV and CTX on two functions of neutrophils, namely phagocytosis and production of reactive oxygen species, and on the intracellular signaling involved in phagocytosis, particularly on tyrosine phosphorylation and rearrangements of the actin cytoskeleton. Our results showed that the incubation of neutrophils with CdtV or CTX, at different concentrations, or the subcutaneous injection of CdtV or CTX in rats two hours or one, four or 14 days before or one hour after the induction of inflammation inhibited the phagocytic activity of neutrophils. Furthermore, these in vitro and in vivo effects were associated with CdtV and CTX inhibition of tyrosine phosphorylation and consequently actin polymerization. Despite the inhibitory effect on phagocytosis, this study demonstrated that CdtV and CTX did not alter the production of the main reactive oxygen species. Therefore, this study characterized, for the first time, the actions of CdtV on neutrophils and demonstrated that CTX induces a long-lasting inhibition of tyrosine phosphorylation and consequently phagocytosis. We suggest that CTX represents a potential natural product in controlling inflammatory diseases, since a single dose exerts a long-lasting effect on intracellular signaling involved in phagocytosis by neutrophils.

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mitochondrial genomes are generally thought to be under selection for compactness, due to their small size, consistent gene content, and a lack of introns or intergenic spacers. As more animal mitochondrial genomes are fully sequenced, rearrangements and partial duplications are being identified with increasing frequency, particularly in birds (Class Ayes). In this study, we investigate the evolutionary history of mitochondrial control region states within the avian order Psittaciformes (parrots and cockatoos). To this aim, we reconstructed a comprehensive multi-locus phylogeny of parrots, used PCR of three diagnostic fragments to classify the mitochondrial control region state as single or duplicated, and mapped these states onto the phylogeny. We further sequenced 44 selected species to validate these inferences of control region state. Ancestral state reconstruction using a range of weighting schemes identified six independent origins of mitochondrial control region duplications within Psittaciformes. Analysis of sequence data showed that varying levels of mitochondrial gene and tRNA homology and degradation were present within a given clade exhibiting duplications. Levels of divergence between control regions within an individual varied from 0-10.9% with the differences occurring mainly between 51 and 225 nucleotides 3' of the goose hairpin in domain I. Further investigations into the fates of duplicated mitochondrial genes, the potential costs and benefits of having a second control region, and the complex relationship between evolutionary rates, selection, and time since duplication are needed to fully explain these patterns in the mitochondrial genome. (C) 2012 Elsevier Inc. All rights reserved.

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Purpose: Myelodysplastic syndromes (MDS) are a group of disorders characterized by cytopenias, with a propensity for evolution into acute myeloid leukemias (AML). This transformation is driven by genomic instability, but mechanisms remain unknown. Telomere dysfunction might generate genomic instability leading to cytopenias and disease progression. Experimental Design: We undertook a pilot study of 94 patients with MDS (56 patients) and AML (38 patients). The MDS cohort consisted of refractory cytopenia with multilineage dysplasia (32 cases), refractory anemia (12 cases), refractory anemia with excess of blasts (RAEB) 1 (8 cases), RAEB2 (1 case), refractory anemia with ring sideroblasts (2 cases), and MDS with isolated del(5q) (1 case). The AML cohort was composed of AML-M4 (12 cases), AML-M2 (10 cases), AML-M5 (5 cases), AML-M0 (5 cases), AML-M1 (2 cases), AML-M4eo (1 case), and AML with multidysplasia-related changes (1 case). Three-dimensional quantitative FISH of telomeres was carried out on nuclei from bone marrow samples and analyzed using TeloView. Results: We defined three-dimensional nuclear telomeric profiles on the basis of telomere numbers, telomeric aggregates, telomere signal intensities, nuclear volumes, and nuclear telomere distribution. Using these parameters, we blindly subdivided the MDS patients into nine subgroups and the AML patients into six subgroups. Each of the parameters showed significant differences between MDS and AML. Combining all parameters revealed significant differences between all subgroups. Three-dimensional telomeric profiles are linked to the evolution of telomere dysfunction, defining a model of progression from MDS to AML. Conclusions: Our results show distinct three-dimensional telomeric profiles specific to patients with MDS and AML that help subgroup patients based on the severity of telomere dysfunction highlighted in the profiles. Clin Cancer Res; 18(12); 3293-304. (C) 2012 AACR.

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Dihydroorotate dehydrogenase (DHODH) is the fourth enzyme in the de novo pyrimidine biosynthetic pathway and has been exploited as the target for therapy against proliferative and parasitic diseases. In this study, we report the crystal structures of DHODH from Leishmania major, the species of Leishmania associated with zoonotic cutaneous leishmaniasis, in its apo form and in complex with orotate and fumarate molecules. Both orotate and fumarate were found to bind to the same active site and exploit similar interactions, consistent with a ping-pong mechanism described for class 1A DHODHs. Analysis of LmDHODH structures reveals that rearrangements in the conformation of the catalytic loop have direct influence on the dimeric interface. This is the first structural evidence of a relationship between the dimeric form and the catalytic mechanism. According to our analysis, the high sequence and structural similarity observed among trypanosomatid DHODH suggest that a single strategy of structure-based inhibitor design can be used to validate DHODH as a druggable target against multiple neglected tropical diseases such as Leishmaniasis, Sleeping sickness and Chagas' diseases. (C) 2012 Elsevier Masson SAS. All rights reserved.

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Abstract Background The monitoring of BCR-ABL transcript levels by real-time quantitative polymerase chain reaction (RT-qPCR) has become important to assess minimal residual disease (MRD) and standard of care in the treatment of chronic myeloid leukemia (CML). In this study, we performed a prospective, sequential analysis using RT-qPCR monitoring of BCR-ABL gene rearrangements in blood samples from 91 CML patients in chronic phase (CP) who achieved complete cytogenetic remission (CCyR) and major molecular remission (MMR) throughout imatinib treatment. Methods The absolute level of BCR-ABL transcript from peripheral blood was serially measured every 4 to 12 weeks by RT-qPCR. Only level variations > 0.5%, according to the international scale, was considered positive. Sequential cytogenetic analysis was also performed in bone marrow samples from all patients using standard protocols. Results Based on sequential analysis of BCR-ABL transcripts, the 91 patients were divided into three categories: (A) 57 (62.6%) had no variation on sequential analysis; (B) 30 (32.9%) had a single positive variation result obtained in a single sample; and (C) 4 (4.39%) had variations of BCR-ABL transcripts in at least two consecutive samples. Of the 34 patients who had elevated levels of transcripts (group B and C), 19 (55.8%) had a < 1% of BCR-ABL/BCR ratio, 13 (38.2%) patients had a 1% to 10% increase and 2 patients had a >10% increase of RT-qPCR. The last two patients had lost a CCyR, and none of them showed mutations in the ABL gene. Transient cytogenetic alterations in Ph-negative cells were observed in five (5.5%) patients, and none of whom lost CCyR. Conclusions Despite an increase levels of BCR-ABL/BCR ratio variations by RT-qPCR, the majority of CML patients with MMR remained in CCyR. Thus, such single variations should neither be considered predictive of subsequent failure and nor an indication for altering imatinib dose or switching to second generation therapy. Changing of imatinib on the basis of BCR-ABL/BCR% sustained increase and mutational studies is a prudent approach for preserving other therapeutic options in imatinib-resistant patients.

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Abstract Background Despite the extensive polymorphism at the merozoite surface protein-1 (MSP-1) locus of Plasmodium falciparum, that encodes a major repetitive malaria vaccine candidate antigen, identical and nearly identical alleles frequently occur in sympatric parasites. Here we used microsatellite haplotyping to estimate the genetic distance between isolates carrying identical and nearly identical MSP-1 alleles. Methods We analyzed 28 isolates from hypoendemic areas in north-western Brazil, collected between 1985 and 1998, and 23 isolates obtained in mesoendemic southern Vietnam in 1996. MSP-1 alleles were characterized by combining PCR typing with allele-specific primers and partial DNA sequencing. The following single-copy microsatellite markers were typed : Polyα, TA42 (only for Brazilian samples), TA81, TA1, TA87, TA109 (only for Brazilian samples), 2490, ARAII, PfG377, PfPK2, and TA60. Results The low pair-wise average genetic distance between microsatellite haplotypes of isolates sharing identical MSP-1 alleles indicates that epidemic propagation of discrete parasite clones originated most identical MSP-1 alleles in parasite populations from Brazil and Vietnam. At least one epidemic clone propagating in Brazil remained relatively unchanged over more than one decade. Moreover, we found no evidence that rearrangements of MSP-1 repeats, putatively created by mitotic recombination events, generated new alleles within clonal lineages of parasites in either country. Conclusion Identical MSP-1 alleles originated from co-ancestry in both populations, whereas nearly identical MSP-1 alleles have probably appeared independently in unrelated parasite lineages.

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Acute promyelocytic leukemia is characterized by gene rearrangements that always involve the retinoic acid receptor alpha on chromosome 15. In the majority of patients t(15;17) is detected, which generates the promyelocytic leukemia gene/retinoic acid receptor alpha rearrangement. This rearrangement interacts with several proteins, including the native promyelocytic leukemia gene, thus causing its delocalization from the nuclear bodies, impairing its function. The immunofluorescence staining technique using the anti-PML antibody may be used to provide a rapid diagnosis and to immediately start therapy using all-trans retinoic acid. The experience of the International Consortium on Acute Promyelocytic Leukemia has demonstrated that early mortality was significantly reduced by adopting the immunofluorescence technique. All-trans retinoic acid combined with chemotherapy is the standard therapy; this promotes complete remission rates greater than 90% and cure rates of nearly 80%. However, early mortality is still an important limitation and hematologists must be aware of the importance of treating newly diagnosed acute promyelocytic leukemia as a medical emergency.

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Sexual selection arises through variation in reproductive success. This thesis investigates different aspects important in sexual selection, namely nest building, sperm competition, paternity and paternal care, and their mutual interrelationships. In the studied species, the sand goby (Pomatoschistus minutus) and the common goby (Pomatoschistus microps), sperm competition did arise when small males, so called sneakers, sneaked into other males nests and released sperm. They seemed to use female behaviour as their prime cue for a sneaking opportunity. However, also nest-holders, both with and without eggs, were found to fertilize eggs in the nests of other males. Clearly, nest-holding males tried to prevent other males from spreading their sperm in their nests, since they showed aggression towards such males. A nest building experiment indicated that the small nest-openings found in the sneaker male treatment were sexually selected through protection against sneaking or by female choice. Yet, no behavioural or genetical support for the hypothesis that the nest functions as a physical or visual defence, or that sneaker males prefer to sneak upon nests with wide nest-openings, were found in the other studies. Still, individual nest-holding males showed a higher mucus preparation effort inside the nest in the presence of a sneaker male than when alone. In close relatives, such mucus contains sperm, suggesting an importance in sperm competition. However, the mucus may also have pheromone and anti-bacterial functions and may constitute a mating effort, as found in other gobies. Both a behavioural and a mate choice experiment suggested that the males were not less eager to spawn in the presence of a sneaker male. Sneak intrusion did not affect nest defence, fanning or filial cannibalism, nor had paternity an effect on filial cannibalism. This and various life history aspects, together with the fact that the parasitic male only fertilized a fraction of the clutches, would predict females to ignore sneaker males. This was also the case, as the presence of sneaker males was found not to affect female spawning decision. Still, several females spawned in two nests, which coincided with parasitic spawnings, suggesting a cost of disturbance for the females and thus a substantial cost to the nest-holding males in terms of lost mating success. However, females paid attention to other traits in their choice of mate since spawning was associated with sand volume of the nest, but not with nest-opening width. Also, female (but not male) courtship was correlated with partial clutch filial cannibalism, indicating that females are able to anticipate future male cannibalism. In a partial correlation of nest opening, sand volume, male courtship display, displacement fanning and male size, a large number of traits were correlated both positively and negatively with regard to how we may expect them to be appreciated by females. For instance, males which fan well also build large nests or display intensely (but not both). Together with all the other results of this thesis, this shows the entangled selection pressures working on breeding animals, as well as the different male and female tactics employed to maximize their reproduction.

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The structural peculiarities of a protein are related to its biological function. In the fatty acid elongation cycle, one small carrier protein shuttles and delivers the acyl intermediates from one enzyme to the other. The carrier has to recognize several enzymatic counterparts, specifically interact with each of them, and finally transiently deliver the carried substrate to the active site. Carry out such a complex game requires the players to be flexible and efficiently adapt their structure to the interacting protein or substrate. In a drug discovery effort, the structure-function relationships of a target system should be taken into account to optimistically interfere with its biological function. In this doctoral work, the essential role of structural plasticity in key steps of fatty acid biosynthesis in Plasmodium falciparum is investigated by means of molecular simulations. The key steps considered include the delivery of acyl substrates and the structural rearrangements of catalytic pockets upon ligand binding. The ground-level bases for carrier/enzyme recognition and interaction are also put forward. The structural features of the target have driven the selection of proper drug discovery tools, which captured the dynamics of biological processes and could allow the rational design of novel inhibitors. The model may be perspectively used for the identification of novel pathway-based antimalarial compounds.

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Die Arbeit beschreibt Untersuchungen zum nichtphoto- chemischen Lochbrennen, das bei 1.4 Kelvin in Form von rein lichtinduzierten Frequenzsprüngen einzelner in p-Terphenyleingebetteter Terrylenmoleküle beobachtet werden kann. Dabei zeigen alle Chromophore aus der X1-Einbaulage ein exzellent reproduzierbares Verhalten, sowohl im bistabilen primären Photozyklus wie auch in dem daran angegliederten sekundärenPhotozyklus, welcher aus drei weiteren spektralen Positionen besteht. Aus den Ergebnissen der nach der genauen Charakterisierung dieser Eigenschaft des Systems durchgeführten Experimente - Fluoreszenzspektroskopie der Photoprodukte, Stark-Effekt-Messungen und Polarisationsmodulation - wird ein Modell für die den lichtinduzierten Änderungen der Absorptionsfrequenzzugrundeliegenden Konformationsänderungender Wirt/Gast- Struktur abgeleitet und diskutiert. Die mittlerweile verfügbaren Ergebnisse von diesbezüglichen molekular- dynamischen Simulationen einer Theoriegruppe ausBordeaux, die alle grundlegenden Annahmen dieses Modellsbestätigen und eine noch genauere mikroskopische Beschreibung des Systems liefern, werden zur Abrundung der Darstellung ebenfalls vorgestellt. Außerdem geht die Dissertation auf die durchgeführten Einzelmolekül- untersuchungen an Terrylen in p-Terphenyl bei Raumtemperatur ein und stellt das im Rahmen der Arbeit aufgebaute temperaturvariable laserscannende Konfokalmikroskop im Detail vor.

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Die Analyse der CML-Zellinie K562 mittels Fluoreszenz in situ Hybridisierung (FISH), Multiplex-FISH (M-FISH) und comparativer genomischer Hybridisierung (CGH) ergab einen hypotriploiden Karyotyp mit 67 Chromosomen und 21 verschiedenen Marker-Chromosomen. Das bei über 90% der CML-Patienten nachgewiesene Ph-Chromosom entsteht durch die reziproke Translokation t(9;22)(q34;q11). Bei 5 - 10% der Patienten resultiert das Ph-Chromosom aus varianten Translokation. Anhand der Untersuchung dreier varianter Translokation mittels Bruchpunkt-übergreifender FISH-Proben für die BCR- und ABL-Gene werden drei verschiedene Mechanismen der Entstehung komplexer Translokationen dargestellt. Das Auftreten sekundärer Aberrationen wurde in 15 CML-Blastenkrisen untersucht. Zudem wurde anhand der CGH-Analyse von CD34-positiven Zellen, Monozyten, Granulozyten und T-Zellen die Zellinienspezifität sekundärer Aberrationen untersucht. In einem Fall wurde eine sekundäre Aberration in allen vier Fraktionen gefunden. In zwei Fällen traten sekundäre Aberrationen in allen untersuchten Fraktionen mit Ausnahme der T-Zellen auf. Aufgrund dieser Ergebnisse lassen sich zwei alternative Modelle der Tumor-Progression der CML ableiten: 1. Sekundäre Mutatonen treten vor der Differenzierung der hämatopoetischen Stammzelle auf. 2. Sekundäre Mutationen treten in einer hämatopoetischen Vorläuferzelle nach der T-Zell-Differenzierung auf.

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Zusammenfassung In der vorliegenden Arbeit wurden 74736 bp genomischer DNA-Sequenzder Hämoglobingen-Gruppe D aus der Chironomiden Art Chironomus tentansentschlüsselt und analysiert. Durch Datenbankrecherchen undSequenz-Vergleiche wurden 29 vollständige Hämoglobin-Geneidentifiziert und klassifiziert. Es zeigt sich, daß alle derzeitbekannten Hämoglobin-Gene der Chironomiden auch in Chironomus tentansvorhanden sind. Zusätzlich konnten in Chironomus tentans sechs neueHämoglobin-Varianten identifiziert werden, die bislang weder aufProtein- noch auf Gen-Ebene in anderen Spezies nachgewiesenwurden. Die Hämoglobin-Gene liegen in dichter Abfolge innerhalbdes Clusters, wobei durchschnittlich etwa alle 2 kb ein Gen zufinden ist. Die Abfolge der Hämoglobin-Gene innerhalb derGengruppe wird nur an einer Stelle durch ein interspergiertes Genaus der Familie der Glukosetransporter unterbrochen. Desweiterenkonnten zwei retrotransponierbare Elemente der SINE-Klasse (CP1)innerhalb des Hämoglobingen-Clusters identifiziert werden. AlleGene besitzen die für ihre Expression erforderlichenSignalsequenzen, so daß es sich höchstwahrscheinlich um aktiveGene handelt. Die abgeleiteten Aminosäure-Sequenzen weisen alleCharakteristika sauerstofftransportierender Moleküle auf. Da es sich bei den Hämoglobinen um eine sehr alte Genfamiliehandelt, kann die vergleichende Analyse derHämoglobin-Genstruktur bei Vertebraten, Invertebraten, Pflanzenund Protozoen zur Rekonstruktion der Intron-Evolution genutztwerden. Die Konservierung von Intronpositionen in homologen Genenverschiedener Taxa gilt dabei als Maß für das relativestammesgeschichtliche Alter der Introns. Eine Vielzahl derHämoglobin-Gene von Invertebraten weisen ein Intron im zentralenGenbereich auf. Auch bei einigen Chironomiden-Arten konntendiese 'zentralen Introns' nachgewiesen werden. DieHämoglobin-Gene von Chironomus tentans galten hingegen bislang als intronlos.Die vorliegende Untersuchung zeigt, daß auch zweiHämoglobin-Gene dieser Spezies je ein kurzes Intron aufweisen.Der Vergleich der Intronverteilung in den Hämoglobin-Genen derChironomiden führt zu dem Ergebnis, daß alle vorhandenen Intronsam sparsamsten (im Sinne des 'maximum parsimony'-Prinzips) durchunabhängige Insertionen in ein intronlosesVorläufer-Hämoglobin-Gen erklärt werden können. Alle bislangin Chironomiden beschriebenen Introns sind mit großerWahrscheinlichkeit nicht ortholog (Hankeln et al., 1997; dieseArbeit). Das Vorläufer-Hämoglobin-Gen in Chironomiden besaßdaher vermutlich kein 'zentrales Intron'. Die in Chironomidengefundenen Verhältnisse stellen somit die von Go (1981)formulierte Hypothese der Ursprünglichkeit des 'zentralenIntrons' in Hämoglobin-Genen in Frage. Die in Invertebraten undPflanzen beschriebenen 'zentralen Introns' sind vermutlich nichthomolog und dementsprechend auch nicht auf ein Intron imanzestralen Globin zurückzuführen. Vielmehr implizieren die inhohem Maße variablen Positionen der 'zentralen Introns' beiPflanzen und Invertebraten ihre unabhängige Insertion in diejeweiligen Globin-Gene nach der Aufspaltung der Taxa. Grundsätzlich können zwei Klassen von Hämoglobin-Genen inChironomiden unterschieden werden. Die überwiegende Mehrzahl derHämoglobine wird von Genen kodiert, die nur in einer Kopie imGenom vorliegen. Sie werden dementsprechend als 'single copy'Varianten bezeichnet. Für andere Hämoglobin-Varianten konntehingegen eine Vielzahl leicht unterschiedlicher Gene beschriebenwerden. Diese bilden sogenannte Gen-Subfamilien. In Chironomus tentans konntegezeigt werden, daß neben den 7B-Genen auch die 7A-Gene eineeigene Subfamilie bilden. Die 'single copy' Varianten zeichnensich im Interspezies-Vergleich durch ihre konservierteNukleotid-Sequenz aus: Sie unterliegen während ihrer Evolutionoffenbar einer stabilisierenden Selektion, d.h. Veränderungenihrer Protein-Sequenzen werden nur in geringem Maße toleriert.Auch ihre räumliche Anordnung innerhalb der Gengruppe istzwischenartlich konserviert. Der Vergleich der 'single copy'Varianten innerhalb einer Art zeigt, daß diese sehr deutlicheSequenz-Unterschiede zueinander aufweisen. Sie bilden somit einkonserviertes Sortiment an Hämoglobin-Genen, das weitgehend vorder Radiation der Arten entstanden ist und eine über dieArtgrenzen hinweg unveränderte 'Hämoglobin-Grundausstattung'gewährleistet. Im Gegensatz hierzu zeichnen sich die Mitglieder vonHämoglobin-Gen-Sub-familien durch eine hohe Variabilität aus:Nukleotid-Sequenz, Anzahl und Organisation der Gene innerhalb derGenfamilie weisen im zwischenartlichen Vergleich zahlreicheUnterschiede auf. Es ist daher nur selten möglich allein aufGrundlage der Nukleotid-Sequenzen orthologe Genpaare zuidentifizieren. Die orthologen Gene der 7B-Subfamilie aus Chironomus tentansund chth konnten ausschließlich anhand korrespondierenderIntergen-Sequenzen einander zugeordnet werden. Somit sind dieGen-Subfamilien präferenziell an der Entstehung einesspeziesspezifischen Gen-Repertoires beteiligt. Variationen derNukleotid-Sequenz, Gen-Anzahl und Gen-Organisation innerhalb derSubfamilie werden im Gegensatz zu den 'single copy' Varianten ineinem hohen Maße toleriert. Aufgrund der hohen Sequenz-Übereinstimmungen zwischen denMitgliedern der Gen-Subfamilien unterliegen diese einer Vielzahlvon Rearrangements, die in Gen-Duplikationen, Deletionen undSequenz-Homogenisierungen resultieren. So führten beispielsweiseGenduplikationen durch ungleiches, homologes Crossing-over mitgroßer Wahrscheinlichkeit zur Entstehung und Expansion der7A-Subfamilie. Auch die Gene Cte12-1 und Cte 12-2 sind vermutlichdas Ergebnis eines rezenten Duplika-tions-Ereignisses. DerMechanismus der Retrotransposition, der zu einer Duplika-tioneines 3`-untranslatierten Bereichs innerhalb der 7A-Subfamilieführte, scheint für die Entstehung derHämoglobin-Multiplizität in Chironomiden hingegen wenigerbedeutsam zu sein. Innerhalb der 7A-Subfamilie ist eineAngleichung der Gene durch konzertierte Sequenz-Evolution zubeobachten. Der nukleotidweise Vergleich von Gen-Sequenzen zeigtam Beispiel der Gene 7A7 und 7A8, daß die konzertierte Evolutiondieser Gen-Varianten auf dem Mechanismus der Genkonversionberuht. Auch die Gen-Subfamilie 7B unterliegt offenbar in hohemMaße einer solchen Sequenz-Homogenisierung. Im Sinne einer molekularen Uhr sollten synonyme Basenaustauscheweitgehend neutral sein und sich proportional zur Zeit in denGenen anhäufen. Der Vergleich der Hämoglobin-Gen-Sequenzenzeigt, daß große Unterschiede in der Anzahl der synonymenBasenaustausche zwischen orthologen Genen nicht zwangsläufig dasErgebnis einer frühen Trennung dieser Gene sind. Die Übertragungvon Sequenzen zwischen paralogen Genen kann die Anzahl dersynonymen Basenaustausche orthologer Gene in kürzester Zeitverändern und den tatsächlichen Zeitpunkt der Trennung zweierorthologen Gene überdecken. Werden Genkonversionen nichterkannt, weil beispielsweise nicht alle Gene der Gruppevollständig erfaßt werden konnten, führt der Vergleichorthologer Gen-Sequenzen zwangsläufig zu falschen evolutionärenGendistanzen. Da die Mitglieder der Hämoglobin-Genfamiliebesonders häufig Rekombinations-Prozessen unterliegen, sind siedaher möglicherweise weniger nützliche Kanditaten für dieErmittlung evolutionärer Distanzen zwischen den verschiedenenChironomiden-Arten. Insgesamt zeigen die Ergebnisse dieser Arbeit, daß anhanddetaillierter phylogenetischer Analysen sich die Evolution derHämoglobin-Multigenfamilie von Chironomiden umfassendbeschreiben läßt. Ob einzelne, besonders gut konservierteGen-Varianten (wie z. B. die Gene Cte 8 und Cte W) einespezifische physiologische Funktion erfüllen oder ob dieGen-Subfamilien, die ein speziesspezifisches Genrepertoirebilden, an der Einnischung der verschiedenen Arten beteiligtsind, sollte durch weiterführende Untersuchungen (z. B. derGenexpression sowie der physiologischen Eigenschaften einzelnerVarianten) ermittelt werden können.