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2014 | 59 | 2 |

Tytuł artykułu

Chromosomal polymorphism of populations of the common shrew, Sorex araneus L., in Belarus

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The present paper reports karyotypic data for 76 individuals of the common shrew, Sorex araneus L., collected from 10 geographic sites in Belarus. We revealed two vast areas of polymorphism for diagnostic chromosomes of karyotypic races Białowieża (gr, hn, ik, mp) and Kiev (gm, hi, ko) with low frequency of metacentrics. The frequencies of the Białowieża diagnostic metacentrics decreased towards the east and the frequency of the Kiev metacentrics decreased towards the north. A high level of chromosomal variability was observed in the River Ptich basin. The contact zone of races Białowieża and Kiev was observed along the Ptich and Pripyat Rivers. The polymorphism and a low metacentric frequencies in the studied populations of the Białowieża and Kiev races from the Pripyat and Ptich basin may be associated either with selection against heterozygotes in the hybrid zone of these two races (“acrocentric peak”) or with the spread of the diagnostic metacentrics of the Białowieża and Kiev races in populations characterized by 10 pairs of acrocentric diagnostic chromosomes (g, h, i, k, m, n, o, p, q, r). Individuals with single diagnostic metacentric hk (such karyotype was previously attributed to new race Turov, Mishta et al. Acta Theriol 45 (Suppl 1):47–58, 2000) occurred in sites where the Białowieża and Kiev races cohabited. In accordance with these data, the previous description of the Turov race (Mishta et al. Acta Theriol 45 (Suppl 1):47–58, 2000) needs a revision.

Słowa kluczowe

Wydawca

-

Czasopismo

Rocznik

Tom

59

Numer

2

Opis fizyczny

p.243-249,fig.,ref.

Twórcy

  • Severtzov Institute of Ecology and Evolution, Russian Academy of Sciences, Leninsky Pr. 33, 119071 Moscow, Russia
  • Mozyr State Univeristy, Studentcheskaya St., 247760 Mozyr, Belarus
  • Severtzov Institute of Ecology and Evolution, Russian Academy of Sciences, Leninsky Pr. 33, 119071 Moscow, Russia
  • Mozyr State Univeristy, Studentcheskaya St., 247760 Mozyr, Belarus
autor
  • Severtzov Institute of Ecology and Evolution, Russian Academy of Sciences, Leninsky Pr. 33, 119071 Moscow, Russia

Bibliografia

  • Banaszek A (1994) The structure of the contact zone between the chromosomal races Drużno and Łegucki Młyn in the common shrew (Sorex araneus) in north-east Poland: preliminary results. Folia Zool 43(Suppl 1):11–19
  • Borisov YM, Kovaleva AA, Springer AM, Cherepanova EV, Kashtal’an AP, Orlov VN (2009) Hybrid origin of karyotypic variation in the common shrew, Sorex araneus (Mammalia) from the Dnieper River basin. Dokl Biol Sci 429:1–4, original Russian text: Dokl Akad Nauk 2009 429 (4): 561–564
  • Borisov YM, Cherepanova EV, Orlov VN (2010) A wide hybrid zone of chromosome races of the common shrew, Sorex araneus Linnaeus, 1758 (Mammalia), between the Dnieper and Berezina Rivers (Belarus). Compar Cytogenet 3(2):195–201
  • Bulatova NS, Searle JB, Bystrakova N, Nadjafova R, Shchipanov N, Orlov V (2000) The diversity of chromosome races in Sorex araneus from European Russia. Acta Theriol 45(Suppl 1):33–46
  • Bulatova NS, Nadzhafova RS, Krapivko TP (2002) Intraspecific phylogenetic relationships in Sorex araneus L.: the Southern Baltic Subgroup of chromosome races. Russ J Genet 38(1):64–69, original Russian text: Genetika 38 (1): 79–85
  • Fedyk S (1985) Genetic differentiation of Polish populations of Sorex araneus L. II. Possibilities of genetic flow between chromosomal races. Bul Pol Acad Sci Biol Sci 34(7–9):161–171
  • Fedyk S, Chętnicki W, Banaszek A (1991) Genetic differentiation of Polish populations of Sorex araneus L. III. Interchromosomal recombination in a hybrid zone. Evolution 45:1384–1392
  • Fredga K, Nawrin J (1977) Karyotype variability in Sorex araneus L. (Insectivora, Mammalia). Chromosomes Today 6:153–161
  • Li CC (1976) First course in population genetics. Pacific Grave Press, California
  • Lukáčová L, Pialec J, Zima J (1994) A hybrid zone between the Ulm and Drnholec karyotypic races of Sorex araneus in the Czech Republic. Folia Zool 43(Suppl 1):37–42
  • Mercer SJ (1991) Chromosomal variation of the common shrew Sorex araneus L. in Britain. PhD thesis. University of Oxford, Oxford
  • Mishta AV (1994) A karyological study of the common shrew, Sorex araneus (Insectivora, Soricidae), in Ukraine: first results. Folia Zool 43(Suppl 1):37–42
  • Mishta AV, Searle JB, Wójcik JM (2000) Karyotypic variation of the common shrew Sorex araneus in Belarus, Estonia, Latvia, Lithuania and Ukraine. Acta Theriol 45(Suppl 1):47–58
  • Orlov VN, Kozlovsky AI, Okulova NM, Balakirev AE (2007) Postglacial recolonisation of European Russia by the common shrew Sorex araneus. Russ J Theriol 6(1):97–104
  • Orlov VN, Borisov YM (2009) Phylogenetic relationships of the common shrew (Sorex araneus L., Insectivora) populations in Belarus according to chromosome evidence. Zool Zh 88(12):1506–1514 (in Russian)
  • Orlov VN, Borisov YM, Cherepanova EV, Grigor’eva OO, Shestak AG, Sycheva VB (2012) Narrow hybrid zone between Moscow and West Dvina chromosomal races and specific features of population isolation in common shrew Sorex araneus (Mammalia). Russ J Genet 48(1):70–78, original Russian text: Genetika 48 (1): 80–88
  • Searle JB (1986) Factors responsible for a karyotypic polymorphism in the common shrew, Sorex araneus. Proc Royal Soc London B 229:277–298
  • Searle JB, Fedyk S, Fredga K, Hausser J, Volobouev VT (1991) Nomenclature for the chromosomes of the common shrew (Sorex araneus). Mém Soc Vaud Sci Nat 19:13–22
  • Searle JB, Wójcik JM (1998) Chromosomal evolution: the case of Sorex araneus. In: Evolution of the shrews. Mammal Research Inst, Polish Acad Sci, Białowieża, pp 219–268
  • Szałaj KA, Fedyk S, Banaszek A, Chętnicki W, Ratkiewicz M (1996) A hybrid zone between two chromosome races of the common shrew, Sorex araneus, in eastern Poland. Preliminary results. Hereditas 125:169–176
  • Wójcik JM (1993) Chromosome races of the common shrew Sorex araneus in Poland: a model of karyotype evolution. Acta Theriol 38:315–338
  • Wójcik JM, Wójcik AM, Zalewska H (1996) Chromosome and allozyme variation of the common shrew, Sorex araneus, in different habitats. In: Fredga K, Searle JB (ed) Evolution in the Sorex araneus Group. Cytogenetic and Molecular aspects. Hereditas Offprint Vol 125: 183–189
  • Wójcik JM, Ratkiewicz M, Searle JB (2002) Evolution of the common shrew Sorex araneus: chromosomal and molecular aspects. In: Gliwicz J (ed) Theriology at the Turn of a New Century. Acta Theriol 47 (Suppl 1): 139–167
  • Wójcik JM, Borodin PM, Fedyk S, Fredga K, Hausser J, Mishta A, Orlov VN, Searle JB, Volobouev VT, Zima J (2003) The list of the chromosome races of the common shrew Sorex araneus (updated 2002). Mammalian 67:169–178
  • Zima J, Slivková L, Tomášková L (2003) New data on karyotypic variation in the common shrew, Sorex araneus, from the Czech Republic: an extension of the range of the Laska race. Mammalian 68(2):209–215

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