An apparent reversal in floral symmetry in the legume Cadia is a homeotic transformation

被引:113
作者
Citerne, Helene L.
Pennington, R. Toby
Cronk, Quentin C. B.
机构
[1] Royal Bot Garden Edinburgh, Edinburgh EH3 5LR, Midlothian, Scotland
[2] Univ Edinburgh, Inst Mol Plant Sci, Edinburgh EH9 3JR, Midlothian, Scotland
[3] Univ British Columbia, Bot Garden, Vancouver, BC V6T 1Z4, Canada
关键词
developmental gene; floral evolution; CYCLOIDEA; Leguminosae (Fabaceae);
D O I
10.1073/pnas.0600986103
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Within papilionoid legumes, characterized by flowers with strong bilateral symmetry, a derived condition within angiosperms, Cadia (Cadia purpurea) has reverted to radially symmetrical flowers. Here, we investigate the genetic basis of this morphological reversal. Two orthologues of the floral symmetry gene CYCLOIDEA (CYC) demarcate the adaxial (dorsal) region of the flower in typical papilionoid legumes. In the model legume Lotus japonicus, one of these LegCYC genes has been shown, like CYC, to be required for the establishment of floral bilateral symmetry. This study shows that these genes are expressed in the adaxial region of the typical papilionoid flower of Lupinus, which belongs to the same papilionoid subclade as Cadia. In Cadia, these genes also are expressed, but the expression pattern of one of these has expanded from the adaxial to the lateral and abaxial regions of the corolla. This result suggests that the radial flowers of Cadia are dorsalized and, therefore, are not a true evolutionary reversal but an innovative homeotic transformation, where, in this case, all petals have acquired dorsal identity. This study raises a question over other putative reversals in animals and plants, which also may be cryptic innovations.
引用
收藏
页码:12017 / 12020
页数:4
相关论文
共 16 条
[1]  
Citerne H. L., 2005, Edinburgh Journal of Botany, V62, P119, DOI 10.1017/S0960428606000126
[2]   Phylogeny and the evolution of flower symmetry in the Asteridae [J].
Donoghue, MJ ;
Ree, RH ;
Baum, DA .
TRENDS IN PLANT SCIENCE, 1998, 3 (08) :311-317
[3]   Control of petal shape and floral zygomorphy in Lotus japonicus [J].
Feng, XZ ;
Zhao, Z ;
Tian, ZX ;
Xu, SL ;
Luo, YH ;
Cai, ZG ;
Wang, YM ;
Yang, J ;
Wang, Z ;
Weng, L ;
Chen, JH ;
Zheng, LY ;
Guo, XZ ;
Luo, JH ;
Sato, SS ;
Tabata, S ;
Ma, W ;
Cao, XL ;
Hu, XH ;
Sun, CR ;
Luo, D .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2006, 103 (13) :4970-4975
[4]   Role of DIVARICATA in the control of dorsoventral asymmetry in Antirrhinum flowers [J].
Galego, L ;
Almeida, J .
GENES & DEVELOPMENT, 2002, 16 (07) :880-891
[5]   Spontaneous mutations in KNOX genes give rise to a novel floral structure in Antirrhinum [J].
Golz, JF ;
Keck, EJ ;
Hudson, A .
CURRENT BIOLOGY, 2002, 12 (07) :515-522
[6]   Differential regulation of symmetry genes and the evolution of floral morphologies [J].
Hileman, LC ;
Kramer, EM ;
Baum, DA .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2003, 100 (22) :12814-12819
[7]  
Lewis G, 2005, LEGUMES WORLD
[8]   Origin of floral asymmetry in Antirrhinum [J].
Luo, D ;
Carpenter, R ;
Vincent, C ;
Copsey, L ;
Coen, E .
NATURE, 1996, 383 (6603) :794-799
[9]  
Luo D, 1999, CELL, V99, P367, DOI 10.1016/S0092-8674(00)81523-8
[10]   Phylogeny of Amorpheae (Fabaceae: Papilionoideae) [J].
McMahon, M ;
Hufford, L .
AMERICAN JOURNAL OF BOTANY, 2004, 91 (08) :1219-1230