• Title of article

    Molecular Mechanisms Underlying Origin and Diversification of the Angiosperm Flower

  • Author/Authors

    Theissen، Guenter نويسنده , , Melzer، Rainer نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2007
  • Pages
    -602
  • From page
    603
  • To page
    0
  • Abstract
    Background: Understanding the mode and mechanisms of the evolution of the angiosperm flower is a long-standing and central problem of evolutionary biology and botany. It has essentially remained unsolved, however. In contrast, considerable progress has recently been made in our understanding of the genetic basis of flower development in some extant model species. The knowledge that accumulated this way has been pulled together in two major hypotheses, termed the ʹABC modelʹ and the ʹfloral quartet modelʹ. These models explain how the identity of the different types of floral organs is specified during flower development by homeotic selector genes encoding transcription factors. Scope: We intend to explain how the ʹABC modelʹ and the ʹfloral quartet modelʹ are now guiding investigations that help to understand the origin and diversification of the angiosperm flower. Conclusions: Investigation of orthologues of class B and class C floral homeotic genes in gymnosperms suggest that bisexuality was one of the first innovations during the origin of the flower. The transition from dimer to tetramer formation of floral homeotic proteins after establishment of class E proteins may have increased cooperativity of DNA binding of the transcription factors controlling reproductive growth. That way, we hypothesize, better ʹdevelopmental switchesʹ originated that facilitated the early evolution of the flower. Expression studies of ABC genes in basally diverging angiosperm lineages, monocots and basal eudicots suggest that the ʹclassicalʹ ABC system known from core eudicots originated from a more fuzzy system with fading borders of gene expression and gradual transitions in organ identity, by sharpening of ABC gene expression domains and organ borders. Shifting boundaries of ABC gene expression may have contributed to the diversification of the angiosperm flower many times independently, as may have changes in interactions between ABC genes and their target genes.
  • Keywords
    gymnosperm , shifting boundaries , ABC model , angiosperm , evo-devo , floral quartet model , fading borders
  • Journal title
    Annals of Botany
  • Serial Year
    2007
  • Journal title
    Annals of Botany
  • Record number

    118732