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[Meiotic gynogenesis in the stellate, Russian sturgeon and sterlet].

Identifieur interne : 000087 ( Ncbi/Merge ); précédent : 000086; suivant : 000088

[Meiotic gynogenesis in the stellate, Russian sturgeon and sterlet].

Auteurs : A V Rekubratski [Russie] ; A S Grunina ; V A Barmintsev ; T S Golovanova ; O S Chudinov ; A B Abramova ; N S Panchenko ; S A Kupchenko

Source :

RBID : pubmed:12722590

English descriptors

Abstract

Diploid gynogenetic progenies were obtained in the stellate sturgeon Acipenser stellatus, Russian sturgeon A. gueldenstaedtii, and sterlet A. ruthenus by means of insemination of the eggs with UV-irradiated spermatozoa and suppression of the second meiotic division by heat shock. The gynogenetic nature of experimental fish was confirmed by RAPD-PCR analysis of DNA. Effective photoreactivation of UV-induced lesions of spermatozoa was shown in the case of illumination of the fertilized eggs with visible light. This phenomenon should be taken into account when determining the doses of irradiation that allow inactivation of the male chromosomes and incubating gynogenetic embryos. Gynogenetic stellate and Russian sturgeons are viable and can be reared in order to study the mechanism of sex determination in sturgeons.

PubMed: 12722590

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pubmed:12722590

Le document en format XML

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<nlm:affiliation>All-Russian Research Institute of Freshwater Fisheries, Rybnoe, Moskva oblast', 141821 Russia.</nlm:affiliation>
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<name sortKey="Grunina, A S" sort="Grunina, A S" uniqKey="Grunina A" first="A S" last="Grunina">A S Grunina</name>
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<name sortKey="Barmintsev, V A" sort="Barmintsev, V A" uniqKey="Barmintsev V" first="V A" last="Barmintsev">V A Barmintsev</name>
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<name sortKey="Golovanova, T S" sort="Golovanova, T S" uniqKey="Golovanova T" first="T S" last="Golovanova">T S Golovanova</name>
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<name sortKey="Chudinov, O S" sort="Chudinov, O S" uniqKey="Chudinov O" first="O S" last="Chudinov">O S Chudinov</name>
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<name sortKey="Abramova, A B" sort="Abramova, A B" uniqKey="Abramova A" first="A B" last="Abramova">A B Abramova</name>
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<name sortKey="Panchenko, N S" sort="Panchenko, N S" uniqKey="Panchenko N" first="N S" last="Panchenko">N S Panchenko</name>
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<term>Embryo, Nonmammalian</term>
<term>Female</term>
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<term>Fishes (genetics)</term>
<term>Heat-Shock Response</term>
<term>Insemination, Artificial (methods)</term>
<term>Male</term>
<term>Meiosis</term>
<term>Parthenogenesis (genetics)</term>
<term>Random Amplified Polymorphic DNA Technique</term>
<term>Sex Determination Processes</term>
<term>Spermatozoa (radiation effects)</term>
<term>Ultraviolet Rays</term>
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<term>Dose-Response Relationship, Radiation</term>
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<term>Female</term>
<term>Heat-Shock Response</term>
<term>Male</term>
<term>Meiosis</term>
<term>Random Amplified Polymorphic DNA Technique</term>
<term>Sex Determination Processes</term>
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<div type="abstract" xml:lang="en">Diploid gynogenetic progenies were obtained in the stellate sturgeon Acipenser stellatus, Russian sturgeon A. gueldenstaedtii, and sterlet A. ruthenus by means of insemination of the eggs with UV-irradiated spermatozoa and suppression of the second meiotic division by heat shock. The gynogenetic nature of experimental fish was confirmed by RAPD-PCR analysis of DNA. Effective photoreactivation of UV-induced lesions of spermatozoa was shown in the case of illumination of the fertilized eggs with visible light. This phenomenon should be taken into account when determining the doses of irradiation that allow inactivation of the male chromosomes and incubating gynogenetic embryos. Gynogenetic stellate and Russian sturgeons are viable and can be reared in order to study the mechanism of sex determination in sturgeons.</div>
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<AbstractText>Diploid gynogenetic progenies were obtained in the stellate sturgeon Acipenser stellatus, Russian sturgeon A. gueldenstaedtii, and sterlet A. ruthenus by means of insemination of the eggs with UV-irradiated spermatozoa and suppression of the second meiotic division by heat shock. The gynogenetic nature of experimental fish was confirmed by RAPD-PCR analysis of DNA. Effective photoreactivation of UV-induced lesions of spermatozoa was shown in the case of illumination of the fertilized eggs with visible light. This phenomenon should be taken into account when determining the doses of irradiation that allow inactivation of the male chromosomes and incubating gynogenetic embryos. Gynogenetic stellate and Russian sturgeons are viable and can be reared in order to study the mechanism of sex determination in sturgeons.</AbstractText>
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