Origin of Polyploidy: Results of Laboratory Crosses Between Green Toad (Bufotes) Diploid Species

Unreduced gametes contribute to the emergence of polyploid plant and animal species. Interspecific diploid and polyploid hybrids can utilize clonal or hemiclonal reproduction methods, in which one or all parental genomes are transmitted to offspring without recombination. To elucidate mechanisms supporting the coexistence of parental species and polyploid hybrids, we conducted artificial crossing experiments between two diploid species of green toads. We determined the ploidy levels of all hybrids resulting from the crosses. The offspring included di-, tri-, tetra-, penta-, and hexaploid individuals. In the first generation, all hybrids were generally diploid. In the second generation, many polyploid individuals appeared in the offspring. Hybrids (even in a single cross) produced tadpoles with different ploidy levels due to gametes with different genomic compositions. Males of triploid hybrids produced predominantly haploid gametes, while females produced diploid ones. We propose a model for the origin of polyploid species in the genus Bufotes.

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Journal
Animals
Published
2026-09-30
DOI
https://doi.org/10.3390/ani16193082
Primary Topic
Evolution and Genetic Dynamics
Type
article
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article

Origin of Polyploidy: Results of Laboratory Crosses Between Green Toad (Bufotes) Diploid Species

Artem Aleksandrovich Kidov, Spartak Nikolaevich Litvinchuk, Anton Olegovich Svinin, Dmitriy V. Skorinov et al.
Animals
Evolution and Genetic Dynamics
article

Origin of Polyploidy: Results of Laboratory Crosses Between Green Toad (Bufotes) Diploid Species

Artem Aleksandrovich Kidov, Spartak Nikolaevich Litvinchuk, Anton Olegovich Svinin, Dmitriy V. Skorinov, Nikolay Aksenov, Kseniya A. Matushkina
article en

Abstract

Unreduced gametes contribute to the emergence of polyploid plant and animal species. Interspecific diploid and polyploid hybrids can utilize clonal or hemiclonal reproduction methods, in which one or all parental genomes are transmitted to offspring without recombination. To elucidate mechanisms supporting the coexistence of parental species and polyploid hybrids, we conducted artificial crossing experiments between two diploid species of green toads. We determined the ploidy levels of all hybrids resulting from the crosses. The offspring included di-, tri-, tetra-, penta-, and hexaploid individuals. In the first generation, all hybrids were generally diploid. In the second generation, many polyploid individuals appeared in the offspring. Hybrids (even in a single cross) produced tadpoles with different ploidy levels due to gametes with different genomic compositions. Males of triploid hybrids produced predominantly haploid gametes, while females produced diploid ones. We propose a model for the origin of polyploid species in the genus Bufotes.

AnimalsVol. 16(19)
Russian State Agrarian University - Moscow Timiryazev Agricultural Academy (RU), Institute of Cytology (RU)
Life in Land
Openalex Percentile: Top 12%
Evolution and Genetic Dynamics
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