Genetic diversity of the complex Paspalum notatum Flügge (Paniceae: Panicoideae)

被引:0
作者
Fernanda Witt Cidade
Miguel Dall’Agnol
Fernanda Bered
Tatiana Teixeira de Souza-Chies
机构
[1] Programa de Pós-graduação em Botânica da Universidade Federal do Rio Grande do Sul,Departamento de Plantas Forrageiras e Agrometeorologia, Faculdade de Agronomia
[2] Universidade Federal do Rio Grande do Sul,Departamento de Genética, Instituto de Biociências
[3] Universidade Federal do Rio Grande Do Sul,Departamento de Botânica, Instituto de Biociências
[4] Universidade Federal do Rio Grande do Sul,undefined
来源
Genetic Resources and Crop Evolution | 2008年 / 55卷
关键词
Flow cytometry; Genetic diversity; Molecular markers ISSR; L.; Fl;
D O I
暂无
中图分类号
学科分类号
摘要
The genus Paspalum L. comprises approximately 400 species worldwide and about 220 in Brazil. Paspalum is ecologically and economically important, and has been very useful as pasture and P. notatum Flügge (bahiagrass) is a valuable forage grass in the subtropics. This species consists of several sexual (diploid) and apomictic (tetraploid, ocasionally tri and pentaploids) biotypes. In this work, inter simple sequence repeats (ISSR) markers were used to assess the genetic variability of a bahiagrass (P. notatum) collection. Vegetative tissues of 95 bahiagrass accessions were obtained from various locations in South America (Brazil, Argentina and Uruguay). A total of 91 reproducible ISSR fragments were observed and 89 fragments (97.5% of the total observed) were polymorphic. Cluster analyses (UPGMA) were performed from the ISSR data set and the results illustrate the genetic relationships among the 95 accessions of P. notatum. A comparison among molecular, morphological and ploidy levels data were done. ISSR markers were effective in distinguishing the genotypes analyzed, and a wide variability was observed for this species. These results add new information regarding the genetic diversity in P. notatum, thus contributing toward the biological knowledge of this species, and providing with subsides for future plant breeding and conservation programs.
引用
收藏
页码:235 / 246
页数:11
相关论文
共 50 条
  • [41] Genetic diversity and evolutionary history of the Schizothorax species complex in the Lancang River (upper Mekong)
    Chen, Weitao
    Shen, Yanjun
    Gan, Xiaoni
    Wang, Xuzhen
    He, Shunping
    ECOLOGY AND EVOLUTION, 2016, 6 (17): : 6023 - 6036
  • [42] Species delimitation and the partitioning of genetic diversity -: an example from the Carex flava complex (Cyperaceae)
    Hedrén, M
    BIODIVERSITY AND CONSERVATION, 2004, 13 (02) : 293 - 316
  • [43] Genetic Diversity in the Worldwide Botrychium lunaria (Ophioglossaceae) Complex, with New Species and New Combinations
    Stensvold, Mary Clay
    Farrar, Donald R.
    BRITTONIA, 2017, 69 (02) : 148 - 175
  • [44] Genetic Diversity and Population Structure of Tetraploid Accessions of the Medicago sativa-falcata Complex
    Ilhan, Dogan
    Li, Xuehui
    Brummer, E. Charles
    Sakiroglu, Muhammet
    CROP SCIENCE, 2016, 56 (03) : 1146 - 1156
  • [45] Aneuploids and its increment on diversity of Lippia alba polyploid complex: genetic aspects and origin
    Juliana Mainenti Leal Lopes
    Victória Rabelo Campos
    Aryane Campos Reis
    Elyabe Monteiro de Matos
    Ana Luisa Sousa Azevedo
    Marco Antonio Machado
    Richard Michael Grazul
    Lyderson Facio Viccini
    Molecular Biology Reports, 2022, 49 : 7743 - 7752
  • [46] Genetic diversity within and across gametophytic ploidy levels in a Sphagnum cryptic species complex
    Karlin, Eric F.
    Robinson, Sean C.
    Smouse, Peter E.
    AUSTRALIAN JOURNAL OF BOTANY, 2020, 68 (01) : 49 - 62
  • [47] Contemporary factors influencing genetic diversity in the Alaska humpback whitefish Coregonus clupeaformis complex
    Olsen, J. B.
    Brown, R. J.
    Russ, O. L.
    Harper, K.
    Wenburg, J. K.
    JOURNAL OF FISH BIOLOGY, 2018, 92 (04) : 1065 - 1081
  • [48] Frequencies and genetic diversity of major histocompatibility complex Class II haplotypes in commercial turkey lines
    Zhu, JT
    Nestor, KE
    Tang, YX
    POULTRY SCIENCE, 1996, 75 (08) : 954 - 958
  • [49] Genetic diversity in sugarcane hybrids (Saccharum spp complex) grown in tropical India based on STMS markers
    R. Sindhu
    P. Govindaraj
    A. Balamurugan
    C. Appunu
    Journal of Plant Biochemistry and Biotechnology, 2011, 20 : 118 - 124
  • [50] Genetic Diversity Analysis and Core Collection Construction of the Actinidia chinensis Complex (Kiwifruit) Based on SSR Markers
    Hu, Guangming
    Jiang, Quan
    Wang, Zhi
    Li, Zuozhou
    Liao, Wenyue
    Shen, Dandan
    Zhong, Caihong
    AGRONOMY-BASEL, 2022, 12 (12):