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Cytology and systematics in JapaneseArisaema (Araceae)
Authors:Kuniaki Watanabe  Tomiki Kobayashi  Jin Murata
Affiliation:(1) Department of Biology, Faculty of Science, Kobe University, 1-2-1 Tsurukabuto, 657-8501 Kobe, Japan;(2) The Hyogo Prefectural Institute of Environmental Science, 3-1-27 Yukihira-cho, Suma-ku, 654-0037 Kobe, Japan;(3) Makino Herbarium, Faculty of Science, Tokyo Metropolitan University, 1-1 Minamiosawa, Hachioji, 192-8503 Tokyo, Japan
Abstract:Chromosome numbers are determined from 37 populations attributed to 22 taxa of JapaneseArisaema. Of them, chromosome numbers ofA. limbatum var.conspicuum (2n=26),A. minus (2n=26),A. nambae (2n=28) andA. seppikoense (2n=26) are determined for the first time. New chromosome numbers, 2n=26, are reported forA. aequinoctiale, A. limbatum, A. stenophyllum, A. undulatifolium andA. yoshinagae. Three modes of basic chromosome numbers,x=14,x=13 andx=12, occur in JapaneseArisaema. Precise karyotypic comparisons of 20 taxa reveal that taxa withx=14 andx=13 share 26 major chromosome arms and have an obvious chromosomal relationship. One of two submeta-centric chromosomes inx=13 corresponds to two telo-centric chromosomes inx=14. InA. ternatipartitum with 2n=6x=72, ten out of 12 basic chromosomes are the most similar in size and arm ratio with larger ten chromosomes ofA. ringens among JapaneseArisaema examined. A basic chromosome number ofx=14 is the commonest in the genusArisaema and the remaining basic chromosome numbers,x=13 andx=12, seem to be derived through dysploidal reduction by translocating large segments of major arm of telo-centric chromosome onto other minor arm of telo-centric followed by loss of the remainings including a centromere, and by loss of two telo-centrics fromx=14, respectively. Some systematic problems of JapaneseArisaema are discussed based on new cytological data.Arisaema hatizyoense, A. minus andA. nambae are accepted as independent species.
Keywords:Araceae   Arisaema   Chromosome number  Dysploidy  Karyotype  Telo-centrics
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