RAS BiologyБиология моря Russian Journal of Marine Biology

  • ISSN (Print) 0134-3475
  • ISSN (Online) 3034-526X

Karyotypes of the Sailfin Sculpins (Pallas, 1814), (Pallas, 1814), and Cuvier, 1829 (Actinopterygii: Hemitripteridae)

PII
S3034526XS0134347525040054-1
DOI
10.7868/S3034526X25040054
Publication type
Article
Status
Published
Authors
Volume/ Edition
Volume 51 / Issue number 4
Pages
232-236
Abstract
The karyotypes of the sailfin sculpins and were studied for the first time, and the chromosome set of was analyzed. It was found that the karyotypes of these species are stable and consist of 46 chromosomes (2n) in : 4 metacentric (M), 32 subtelocentric (ST), and 10 acrocentric (A); the number of chromosome arms (NF) is 50. In , the chromosome set is 2n = 48 (34 ST and 14 A chromosomes), NF = 48; in , 2n = 48 (36 ST and 12 A chromosomes), NF = 48. Based on comparative karyological analysis, common features were identified that confirm the close relationships between and , and the taxonomic proximity of to species of the genus . The features that allow differentiation of the studied species were also determined.
Keywords
кариограмма морфология хромосом маркерные хромосомы рыбы
Date of publication
27.03.2025
Year of publication
2025
Number of purchasers
0
Views
18

References

  1. 1. Великанов А.Я., Мухаметов И.Н. Изменения в сообществах рыб верхней эпипелагмали зал. Анива (о. Сахалин) в течение летнего сезона // Биология, состояние запасов и условия обитания гидробионтов в Сахалино-Курильском регионе и сопредельных акваториях. Тр. СахНИРО. 2011. Т. 12. С. 28—54.
  2. 2. Морева И.Н. Кариотип седловидного бычка Microcottus sellaris (Gilbert, 1896) (Cottidae: Myoxocephalinae) // Биол. моря. 2020. Т. 46. № 1. С. 32—36. https://elibrary.ru/item.asp?id=42446011
  3. 3. Парин Н.В., Евсеенко С.А., Васильева Е.Д. Рыбы морей России: аннотированный каталог. М.: Тов-во науч. изд. КМК. 2014. 733 с.
  4. 4. Сиделева В.Г., Неелов А.В., Ворошина Е.П. и др. Каталог фондовой коллекции Зоологического института РАН. Класс Костюгины рыбы (Osteichthyes). Отряд Скорпенсообразные (Scorpaeinfirmes). Подотряд Cottoldei. Ч. 1 // Исслед. фауны морей. 2006. Т. 57. № 65. С. 1—223.
  5. 5. Шмидт П.Ю. Рыбы Охотского моря. М.; Л.: Изд. АН СССР. 1950. 370 с.
  6. 6. Arai R. Fish karyotypes: A check list. Tokyo: Springer. 2011. 325 p. https://doi.org/10.1007/978-4-431-53877-6
  7. 7. Eschmeyer’s catalog of fishes: Genera, species, references / Fricke R., Eschmeyer W.N., van der Laan R., Eds. 2024. http://researcharchive.calacademy.org/research/ichthyology/catalog/fishcatmain.asp. Accessed October 2, 2024.
  8. 8. Kligerman A.D., Bloom S.E. Rapid chromosome preparations from solid tissues of fishes // J. Fish. Res. Board Can. 1977. V. 34. P. 266—269. http://dx.doi.org/10.1139/T77-039
  9. 9. Knope M.L. Phylogenetics of the marine sculpins (Teleoste): Cottidae) of the North American Pacific Coast // Mol. Phylogenet. Evol. 2013. V. 66. P. 341—349. http://dx.doi.org/10.1016/j.ympev.2012.10.008
  10. 10. Levan A., Fredga K., Sandberg A.A. Nomenclature for centromeric position on chromosomes // Hereditas. 1964. V. 52. № 2. P. 201—220. http://dx.doi.org/10.1111/j.1601-5223.1964.tb01953.x
  11. 11. Love M.S., Bizzarro J.J., Cornthwaite A.M. et al. Checklist of marine and estuarine fishes from the Alaska—Yukon Border, Beaufort Sea, to Cabo San Lucas, Mexico // Zootaxa. 2021. V. 5053. № 1. P. 1—285. https://doi.org/10.11646/zootaxa.5053.1.1
  12. 12. Mao L.J., Li Y.J. Karyotype analyses of five species of marine fishes // J. Dalian Fish. Univ. 2002. V. 17. № 2. P. 108—113.
  13. 13. Mecklenburg C.W. Family Hemitripteridae Gill 1872 — sea ravens or sailfin sculpins. Annotated check lists of fishes. California Academy of Sciences. 2003. № 5. P. 1—6.
  14. 14. Mecklenburg C.W., Mecklenburg T.A., Thorsteinson L.K. Fishes of Alaska. Bethesda, Md.: American Fisheries Society. 2002. 1037 p.
  15. 15. Molina W.F. Chromosomal changes and stasis in marine fish groups // Fish cytogenetics. Enfield, N.H.: Science Publ. 2007. Ch. 1.4. P. 69—110.
  16. 16. Radchenko O.A., Moreva I.N., Petrovskaya A.V. The subfamily Myoxocephalinae of cottid fishes (Cottidae): genetic divergence and phylogenetic relationships // J. Fish Biol. 2021. V. 99. P. 1857–1868. https://doi.org/10.1111/jfb.14886
  17. 17. Smith W.L., Busby M.S. Phylogeny and taxonomy of sculpins, sandfishes, and snailfishes (Perciformes: Cottoidel) with comments on the phylogenetic significance of their early-life-history specializations // Mol. Phylogenet. Evol. 2014. V. 79. P. 332–352. http://dx.doi.org/10.1016/j.vmpev.2014.06.028
  18. 18. Yabe M. Comparative osteology and myology of the superfamily Cottoidea (Pisces: Scorpaeniformes), and its phylogenetic classification // Mem. Fac. Fish. Hokkaido Univ. 1985. V. 32. № 1. P. 1–130.
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