Tetraploidy in the Boettger’s dwarf clawed frog (Pipidae: Hymenochirus boettgeri) from the Congo indicates non-conspecificity with the captive population

Author:

Gvoždík Václav12ORCID,Knytl Martin34ORCID,Zassi-Boulou Ange-Ghislain5,Fornaini Nicola R3,Bergelová Barbora3

Affiliation:

1. Institute of Vertebrate Biology of the Czech Academy of Sciences , Brno , Czech Republic

2. National Museum of the Czech Republic, Department of Zoology , Prague , Czech Republic

3. Department of Cell Biology, Faculty of Science, Charles University , Viničná 7, Prague 128 43 , Czech Republic

4. Department of Biology, McMaster University , 1280 Main Street West, Hamilton, Ontario, L8S 4K1 , Canada

5. Department of Biology, National Institute for Research in Exact and Natural Sciences , Brazzaville , Republic of the Congo

Abstract

Abstract Cytogenetics can be used as a tool to study the evolution of polyploidy and taxonomy. Here we focus on aquatic African pipids, dwarf clawed frogs (Hymenochirus). Our study reveals that dwarf clawed frogs, present for decades in captivity, are best referred to as Hymenochirus sp. instead of the commonly used name ‘H. boettgeri’ or sometimes ‘H. curtipes’. We present the first karyotype from a morphologically identified specimen of H. boettgeri with a known locality in the north-western Congo, which is tetraploid with 2n = 36. The captive Hymenochirus species has been found diploid in previous studies with different reported chromosome numbers; here we reveal 2n = 20A + 1B chromosomes. Our findings suggest that the tetraploid H. boettgeri karyotype evolved through fusion of two biarmed chromosomes and subsequent allotetraploidization, and is functionally diploid, similar to the origin of tetraploid clawed frogs in the subgenus Xenopus. We observed the stable presence of a single B chromosome in both sexes of our individuals from the captive population of Hymenochirus sp. However, additional investigation is necessary to clarify whether there is variation in the number of A and B chromosomes among populations, individuals, and/or tissues. Further research is also needed to understand the evolution and taxonomy of the genus Hymenochirus.

Funder

National Museum

Czech Science Foundation

Publisher

Oxford University Press (OUP)

Subject

Animal Science and Zoology,Ecology, Evolution, Behavior and Systematics

Reference74 articles.

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2. The pipid root;Bewick;Systematic Biology,2012

3. Identification of intergenomic recombinations in unisexual salamanders of the genus Ambystoma by genomic in situ hybridization (GISH);Bi;Cytogenetic and Genome Research,2006

4. Evolutionary implications of polyploidy in amphibians and reptiles;Bogart,1980

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