期刊文献+

Genetic Dissimilarity of Clonal Populations of Leymus chinensis (Trin.) Tzvel in Heterogeneous and Homogeneous Habitats in Southwestern Heilongjiang Province of China

Genetic Dissimilarity of Clonal Populations of Leymus chinensis (Trin.) Tzvel in Heterogeneous and Homogeneous Habitats in Southwestern Heilongjiang Province of China
下载PDF
导出
摘要 Leymus chinensis (Trin.) Tzvel is the characteristic of the Eastern Asia, and is a perennial herbaceous rhizome species on L. chinensis steppe of the Northern China, the Eastern Mongolia, and area of Outer-Baikal of Russia. It has both vegetative and sexual reproductions, and results in complexity of the population structure. Thus, it is difficult to identify distinct clones. Author used the randomly amplified polymorphic DNA (RAPD) technique to identify the clonal structure of heterogeneous and homogeneous habitats in two populations ofLeymus chinensis, analyzed 260 ramets samples using 12 primers and 60 polymorphie markers (reproducible RAPD bands). The results proved elonal diversity described using PD, D, and E was higher in the HCS habitat than that in the HPS habitat. The PD, D, and E in the HCS of Songzhan population were 0.21, 0.90, and 0.91, respectively, whereas the PD, D, and E in the HPS of Songzhan population were only 0.09, 0.68, and 0.77, respectively; the PD, D, and E in the HCS of Yongle population were 0.19, 0.92 mad 0.90, respectively, correspondingly, these measures in the HPS of Yongle population were only 0.09, 0.63, and 0.79, respectively. The results also indicated that clonal population ofL. chinensis in HPS habitat had lower genetic dissimilarity index than that in the HCS habitat. Leymus chinensis (Trin.) Tzvel is the characteristic of the Eastern Asia, and is a perennial herbaceous rhizome species on L. chinensis steppe of the Northern China, the Eastern Mongolia, and area of Outer-Baikal of Russia. It has both vegetative and sexual reproductions, and results in complexity of the population structure. Thus, it is difficult to identify distinct clones. Author used the randomly amplified polymorphic DNA (RAPD) technique to identify the clonal structure of heterogeneous and homogeneous habitats in two populations ofLeymus chinensis, analyzed 260 ramets samples using 12 primers and 60 polymorphie markers (reproducible RAPD bands). The results proved elonal diversity described using PD, D, and E was higher in the HCS habitat than that in the HPS habitat. The PD, D, and E in the HCS of Songzhan population were 0.21, 0.90, and 0.91, respectively, whereas the PD, D, and E in the HPS of Songzhan population were only 0.09, 0.68, and 0.77, respectively; the PD, D, and E in the HCS of Yongle population were 0.19, 0.92 mad 0.90, respectively, correspondingly, these measures in the HPS of Yongle population were only 0.09, 0.63, and 0.79, respectively. The results also indicated that clonal population ofL. chinensis in HPS habitat had lower genetic dissimilarity index than that in the HCS habitat.
作者 Hong Rui-min
出处 《Journal of Northeast Agricultural University(English Edition)》 CAS 2013年第1期21-29,共9页 东北农业大学学报(英文版)
基金 Supported by the National Natural Foundation of China (30670336, 30870423, 30870391)
关键词 genetic dissimilarity HABITAT Leymus chinensis (Trin.) Tzvel RAPD analysis genetic dissimilarity, habitat, Leymus chinensis (Trin.) Tzvel, RAPD analysis
  • 相关文献

参考文献2

二级参考文献46

  • 1Arft AM, Ranker TA (1993). Population genetics and phylogenetic systematics of the rare orchid Spiranthes diluvialis: Implications for conservation. In: Sivinski R, Lightfoot K, eds. Proceedings of Southwestern Rare and Endangered Plant Conference, New Mexico, Santa Fe. pp. 190-197.
  • 2Aspinwall N, Christian T (1992). Clonal structure, genotypic diversity, and seed production in populations of Filipendula rubra (Rosaceae) from the northcentral United States. Am J Bot 79, 294-299.
  • 3Bedford BL, Rappaport NR, Bernard JM (1988). A life history of Carex lasiocarpa Ehrh ramets. Aquat Bot 30, 63-80.
  • 4Cheplick GC (1995). Life history trade-off in Amphibromus scabrivalvis (Poaceae): Allocation to clonal growth, storage, and cleistogamous reproduction. Am J Bot 82, 621~529.
  • 5Ellstrand NC, Elam DR (1993). Population genetic consequences of small population size implications for plant conservation. Annu Rev Ecol Syst 24, 217-242.
  • 6Ellstrand N, Roose ML (1987). Patterns of genotypic diversity in clonal species. Am J Bot 76, 123-131.
  • 7Fager EW (1972). Diversity: A sampling study. Am Nat 106, 293-310.
  • 8Gross KL, Pregitzer KS (1995). Spatial variation in nitrogen availability in three successional plant communities. J Ecol 83,357-368.
  • 9Hamrick JL, Godt ML (1989). Allozyme diversity in plant species. In: Brown AHD, Clegg MT, Kahier AL, Weir BS, eds. Plant Population Genetics Breeding and Genetic Resources. Sinauer, Sunderland, MA. pp. 43~53.
  • 10Harberd DJ (1967). Observations on natural clones of Holcus mollis. New Phytologist 66, 401-408.

共引文献5

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部