• Title of article

    Expressed Sequence Tags (ESTs) and Phylogenetic Analysis of Floral Genes from a Paleoherb Species, Asarum caudigerum

  • Author/Authors

    YINHE، ZHAO, نويسنده , , GUOYING، WANG, نويسنده , , JINPENG، ZHANG, نويسنده , , JUNBO، YANG, نويسنده , , SHANG، PENG, نويسنده , , LIANMING، GAO, نويسنده , , CHENGYUN، LI, نويسنده , , JINYONG، HU, نويسنده , , DEZHU، LI, نويسنده , , LIZHI، GAO, نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2006
  • Pages
    -156
  • From page
    157
  • To page
    0
  • Abstract
    Background and Aims Asarum caudigerum (Aristolochiaceae) is an important species of paleoherb in relation to understanding the origin and evolution of angiosperm flowers, due to its basal position in the angiosperms. The aim of this study was to isolate floral-related genes from A. caudigerum, and to infer evolutionary relationships among florally expression-related genes, to further illustrate the origin and diversification of flowers in angiosperms.Methods A subtracted floral cDNA library was constructed from floral buds using suppression subtractive hybridization (SSH). The cDNA of floral buds and leaves at the seedling stage were used as a tester and a driver, respectively. To further identify the function of putative MADS-box transcription factors, phylogenetic trees were reconstructed in order to infer evolutionary relationships within the MADS-box gene family.Key Results In the forward-subtracted floral cDNA library, 1920 clones were randomly sequenced, from which 567 unique expressed sequence tags (ESTs) were obtained. Among them, 127 genes failed to show significant similarity to any published sequences in GenBank and thus are putatively novel genes.Conclusions Phylogenetic analysis indicated that a total of 29 MADS-box transcription factors were members of the APETALA3(AP3) subfamily, while nine others were putative MADS-box transcription factors that formed a cluster with MADS-box genes isolated from Amborella, the basal-most angiosperm, and those from the gymnosperms. This suggests that the origin of A. caudigerum is intermediate between the angiosperms and gymnosperms.
  • Keywords
    mirror image flowers , enantiostyly , reprodutive biology , paraboea rufescens , Gesneriaceae , buzz pollination , xishuangbanna
  • Journal title
    Annals of Botany
  • Serial Year
    2006
  • Journal title
    Annals of Botany
  • Record number

    118550