TY - JOUR A1 - Biltueva, Larisa S. A1 - Prokopov, Dmitry Yu. A1 - Romanenko, Svetlana A. A1 - Interesova, Elena A. A1 - Schartl, Manfred A1 - Trifonov, Vladimir A. T1 - Chromosome distribution of highly conserved tandemly arranged repetitive DNAs in the Siberian sturgeon (Acipenser baerii) JF - Genes N2 - Polyploid genomes present a challenge for cytogenetic and genomic studies, due to the high number of similar size chromosomes and the simultaneous presence of hardly distinguishable paralogous elements. The karyotype of the Siberian sturgeon (Acipenser baerii) contains around 250 chromosomes and is remarkable for the presence of paralogs from two rounds of whole-genome duplications (WGD). In this study, we applied the sterlet-derived acipenserid satDNA-based whole chromosome-specific probes to analyze the Siberian sturgeon karyotype. We demonstrate that the last genome duplication event in the Siberian sturgeon was accompanied by the simultaneous expansion of several repetitive DNA families. Some of the repetitive probes serve as good cytogenetic markers distinguishing paralogous chromosomes and detecting ancestral syntenic regions, which underwent fusions and fissions. The tendency of minisatellite specificity for chromosome size groups previously observed in the sterlet genome is also visible in the Siberian sturgeon. We provide an initial physical chromosome map of the Siberian sturgeon genome supported by molecular markers. The application of these data will facilitate genomic studies in other recent polyploid sturgeon species. KW - Acipenser baerii KW - sturgeon karyotype KW - whole-genome duplication KW - paralogs KW - polyploidy KW - acipenserid minisatellite KW - satellite DNA KW - tandem repeats Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-219371 SN - 2073-4425 VL - 11 IS - 11 ER - TY - JOUR A1 - Schmid, Michael A1 - Steinlein, Claus T1 - Chromosome Banding in Amphibia. XXXII. The Genus Xenopus (Anura, Pipidae) JF - Cytogenetic and Genome Research N2 - Mitotic chromosomes of 16 species of the frog genus Xenopus were prepared from kidney and lung cell cultures. In the chromosomes of 7 species, high-resolution replication banding patterns could be induced by treating the cultures with 5-bromodeoxyuridine (BrdU) and deoxythymidine (dT) in succession, and in 6 of these species the BrdU/dT-banded chromosomes could be arranged into karyotypes. In the 3 species of the clade with 2n = 20 and 4n = 40 chromosomes (X. tropicalis, X. epitropicalis, X. new tetraploid 1), as well as in the 3 species with 4n = 36 chromosomes (X. laevis, X. borealis, X. muelleri), the BrdU/dT-banded karyotypes show a high degree of homoeology, though differences were detected between these groups. Translocations, inversions, insertions or sex-specific replication bands were not observed. Minor replication asynchronies found between chromosomes probably involve heterochromatic regions. BrdU/dT replication banding of Xenopus chromosomes provides the landmarks necessary for the exact physical mapping of genes and repetitive sequences. FISH with an X. laevis 5S rDNA probe detected multiple hybridization sites at or near the long-arm telomeric regions in most chromosomes of X. laevis and X. borealis, whereas in X. muelleri, the 5S rDNA sequences are located exclusively at the long-arm telomeres of a single chromosome pair. Staining with the AT base pair-specific fluorochrome quinacrine mustard revealed brightly fluorescing heterochromatic regions in the majority of X. borealis chromosomes which are absent in other Xenopus species. KW - X. laevis-type karyotype KW - X. tropicalis-type karyotype KW - BrdU/dT replication banding KW - chromosome staining KW - FISH KW - polyploidy KW - Xenopus Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-196727 SN - 1424-8581 SN - 1424-859X N1 - This publication is with permission of the rights owner freely accessible due to an Alliance licence and a national licence (funded by the DFG, German Research Foundation) respectively. VL - 145 IS - 3-4 ER - TY - THES A1 - Lamatsch, Dunja T1 - Molekulargenetische und zytogenetische Untersuchungen zur paternalen Introgression beim gynogenetischen Amazonenkärpfling, Poecilia formosa T1 - Molecular and cytogenetic analysis of paternal introgression in the gynogenetic Amazon molly, Poecilia formosa N2 - Die Frage nach der Entstehung und Beibehaltung von sexueller Reproduktion nimmt in der Biologie eine zentrale Stellung ein. Dazu werden seit langem die Vor- und Nachteile asexueller Fortpflanzung diskutiert, da man sich von einer vergleichenden Betrachtungsweise wichtige Aufschlüsse erwartet. Dem kurzfristigen Vorteil der schnelleren Vermehrung stehen langfristige Nachteile entgegen: Aufgrund fehlender genetischer Rekombinationsprozesse können sich schädliche Mutationen im Laufe der Generationen anhäufen ("Muller’s ratchet"), und schnelle Anpassung an eine veränderte Umwelt oder neue Abwehrstrategien gegen Parasiten werden erschwert. Der Amazonenkärpfling, Poecilia formosa, stellt einen Organismus dar, dessen Fortpflanzung in Folge eines interspezifischen Hybridisierungsereignisses vom üblichen bisexuellen Muster abweicht: Es treten normalerweise nur Weibchen auf, die sich gynogenetisch vermehren. Hierbei werden die unreduzierten diploiden Eizellen durch Spermien sympatrisch vorkommender sexueller Wirtsmännchen nahe verwandter Arten (P. latipinna oder P. mexicana) stimuliert, um eine parthenogenetische Entwicklung der Embryonen zu initiieren. Es findet keine Karyogamie statt, so daß die Nachkommen in der Regel untereinander und mit ihren Müttern genetisch identisch (klonal) sind. Molekularbiologische Untersuchungen ergaben jedoch, daß P. formosa wesentlich älter ist, als dies auf der Basis von "Muller’s ratchet" zu erwarten war. Eine mögliche Erklärung dafür wäre, daß in seltenen Fällen väterliches Erbmaterial an die Nachkommen weitergegeben werden kann (paternale Introgression). Sowohl in natürlichen Lebensräumen als auch unter Laborbedingungen konnten nur zwei Formen paternaler Introgression identifiziert werden: Kommt es aufgrund von Karyogamie zu einer tatsächlichen Befruchtung der diploiden Oozyte durch das haploide Spermium entstehen triploide Individuen. In anderen Fällen verbleiben nach der Aktivierung durch das artfremde Spermium nur geringe DNA-Mengen in der Oozyte, die in den Kern aufgenommen werden und im Karyotyp als überzählige Chromosomen, sog. Mikrochromosomen, zu identifizieren sind. Die beiden Formen paternaler Introgression können jedoch auch kombiniert vorliegen. In diesen Fällen entwickelten sich die Individuen überraschenderweise zu phänotypischen Männchen. Die vorliegenden Ergebnisse über paternale Introgression können zur Aufklärung der Frage beitragen, warum P. formosa und andere asexuelle Organismen offenbar länger überlebten, als vorhergesagt. Im Gegensatz zu den bisherigen Annahmen könnte es sich bei spermienabhängiger Parthenogenese nicht etwa nur um eine unvollkommene Parthenogenese handeln, sondern um einen gut angepaßten Fortpflanzungsmodus, der die Vorteile von asexueller mit denen sexueller Fortpflanzung kombiniert. N2 - One of the greatest challenges in evolutionary biology is explaining the widespread occurrence of sexual reproduction and the associated process of genetic recombination. Comparing the advantages and disadvantages of sexual and asexual reproduction is expected to give major insights to that "queen of questions". Whereas asexual females have the short term advantage of producing twice as many daughters as sexual females, they are also expected to suffer from long-term constraints: Due to the absence of genetic recombination, asexuals are prone to accumulate deleterious mutations (Muller´s ratchet), and adaptation to changing environments or the escape from parasite load will be aggravated. The Amazon molly, P. formosa, resembles an organism which shows an alternative reproductive mode to the ubiquitous bisexual reproduction. Being an all-female species due to interspecific hybridization, it reproduces gynogenetically: Unreduced diploid eggs are only activated by sperm of males of closely related sympatric species. Without karyogamy the oocytes develop parthenogenetically leading to genetically identical (clonal) offspring. Molecular phylogenetic data suggest that P. formosa might have survived longer than predicted by Muller´s ratchet. To explain this paradox, two phenomena which have been observed in natural populations as well as in laboratory broods are taken into consideration: Triploidy and occurrence of microchromosomes as a consequence of paternal introgression. Triploidy results from the successful insemination of the unreduced diploid eggs with haploid host sperm and subsequent karyogamy, whereas microchromosomes are small supernumerary chromosomes that seem to be the left over of the enzymatic machinery which normally clears the egg from the sperm nucleus after activation has occurred. Both forms of paternal introgression may also occur in combination. Surprisingly, these individuals developed spontaneously into males. The results on paternal introgression obtained here can contribute to answer the question why P. formosa as well as other unisexual vertebrates survived longer than predicted. Contradictory to common knowledge, gynogenesis might not be an imperfect parthenogenesis but a well adapted reproductive mode combining the advantages of asexual and sexual reproduction. KW - Amazon Molly KW - Introgression KW - Jungfernzeugung KW - lebendgebärende Zahnkarpfen KW - Gynogenese KW - spermienabhängige Parthenogenese KW - B-Chromosomen KW - Polyploidie KW - livebearing poeciliid KW - sperm-dependent parthenogenesis KW - gynogenesis KW - B chromosomes KW - polyploidy Y1 - 2001 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-108 ER -