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Genetic relationships among sympatric varieties of Acer mono in the Chichibu Mountains and Central Hokkaido, Japan 被引量:1

Genetic relationships among sympatric varieties of Acer mono in the Chichibu Mountains and Central Hokkaido, Japan
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摘要 Acer mono Maxim. is one of the major components of cool temperate forests in Japan. Some of its many varieties are distributed sympatrically. Because of its great variability, the intraspecific taxonomy and nomenclature of the species are controversial. To understand the genetic relationships among these varieties and whether hybridization or introgression occurred among the sympatric varieties, we studied the genetic relationships among sympatric varieties of A. mono in the Chichibu Mountains (A. mono var. ambiguum, A. mono var. connivens, A. mono var. marmoratum) and Central Hokkaido (A. mono var. mayrii and A. mono var. glabrum) in Japan. Our results showed that varieties in Chichibu are genetically close, suggesting that hybridization or introgression might occur between these varieties, which could explain the higher genetic diversity of varieties in Chichibu than in Hokkaido. In contrast to the close relationships between the varieties in Chichibu, varieties in Hokkaido seemed relatively separated from each other; indeed, there may be reproductive isolation between the two varieties. The results provide new insight for the taxonomy of the varieties of A. mono, especially the sympatric varieties, in Japan. Acer mono Maxim. is one of the major components of cool temperate forests in Japan. Some of its many varieties are distributed sympatrically. Because of its great variability, the intraspecific taxonomy and nomenclature of the species are controversial. To understand the genetic relationships among these varieties and whether hybridization or introgression occurred among the sympatric varieties, we studied the genetic relationships among sympatric varieties of A. mono in the Chichibu Mountains (A. mono var. ambiguum, A. mono var. connivens, A. mono var. marmoratum) and Central Hokkaido (A. mono var. mayrii and A. mono var. glabrum) in Japan. Our results showed that varieties in Chichibu are genetically close, suggesting that hybridization or introgression might occur between these varieties, which could explain the higher genetic diversity of varieties in Chichibu than in Hokkaido. In contrast to the close relationships between the varieties in Chichibu, varieties in Hokkaido seemed relatively separated from each other; indeed, there may be reproductive isolation between the two varieties. The results provide new insight for the taxonomy of the varieties of A. mono, especially the sympatric varieties, in Japan.
出处 《Journal of Forestry Research》 SCIE CAS CSCD 2017年第4期699-704,共6页 林业研究(英文版)
基金 supported by National Postdoctoral Daily Fund of China and Heilongjiang Postdoctoral Fund(LBHZ13007)
关键词 Genetic differentiation HYBRIDIZATION INTROGRESSION MAPLE nSSR Genetic differentiation Hybridization Introgression Maple nSSR
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  • 1张茜,杨瑞,王钦,刘建全.基于叶绿体DNAtrnT-trnF序列研究祁连圆柏的谱系地理学[J].植物分类学报,2005,43(6):503-512. 被引量:15
  • 2Newton AC, Allnot TR, Gillies ACM, Lowe A J, Ennos RA (1999). Molecular phylogeography intraspecific variation and conservation of tree species. Trends in Ecology and Evolution, 14, 140-145.
  • 3Petit R J, Aguinagalde I, de Beaulieu JL, Bittkau C, Brewer S, Cheddadi R, Ennos R, Fineschi S, Grivet D, Lascoux M, Mohanty A, Muller-Starck GM, Deme- sure-Musch B, Palme A, Martin JP, Rendell S, Vendramin GG (2003). Glacial refugia: hotspots but not melting pots of genetic diversity. Science, 300, 1563-1565.
  • 4Pons O, Petit RJ (1995). Estimation, variance and optimal sampling of gene diversity. I. Haploid locus. Theoretical and Applied Genetics, 90, 462-470.
  • 5Posada D, Crandall KA, Templeton AR (2000). GEODIS: a program for the eladistie nested analysis of the geographical distribution of genetic haplotypes. Molecular Ecology, 9, 487-488.
  • 6Rieseberg LH (1997). Hybrid origins of plant species. Annual Review of Ecology and Systematics, 28, 359-389.
  • 7Rieseberg LH, Raymond O, Rosenthal DM, Lai Z, Livingstone K, Nakazato T, Durphy JL, Schwarzbaeh AE, Donovan LA, Lexer C (2003). Major ecological transitions in annual sunflowers facilitated by hybridization. Science, 301,1211-1216.
  • 8Rieseberg LH, Widmer A, Arntz MA, Burke JM (2002). Directional selection is the primary cause of phenotypic diversification. Proceedings of the National Academy of Sciences of the United States of America,99, 12242-12245.
  • 9Rieseberg LH, Wood TE, Baack E (2006). The nature of plant species. Nature, 440, 524-527.
  • 10Rousi A (1971). The genus Hippophae L. A taxonomic study. A nnales Botanici Fennici, 8, 177-227.

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