Architecture of floral branch systems in maize and related grasses
- 24 July 2005
- journal article
- research article
- Published by Springer Nature in Nature
- Vol. 436 (7054) , 1119-1126
- https://doi.org/10.1038/nature03892
Abstract
The external appearance of flowering plants is determined to a large extent by the forms of flower-bearing branch systems, known as inflorescences, and their position in the overall structure of the plant. Branches and branching patterns are produced by tissues called shoot apical meristems. Thus, inflorescence architecture reflects meristem number, arrangement and activity, and the duration of meristem activity correlates with branch length. The inflorescences of maize, unlike those of related grasses such as rice and sorghum, predominantly lack long branches, giving rise to the tassel and familiar corncob. Here we report the isolation of the maize ramosa1 gene and show that it controls inflorescence architecture. Through its expression in a boundary domain near the nascent meristem base, ramosa1 imposes short branch identity as branch meristems are initiated. A second gene, ramosa2, acts through ramosa1 by regulating ramosa1 gene expression levels. ramosa1 encodes a transcription factor that appears to be absent in rice, is heterochronically expressed in sorghum, and may have played an important role in maize domestication and grass evolution.Keywords
This publication has 38 references indexed in Scilit:
- thick tassel dwarf1encodes a putative maize ortholog of theArabidopsis CLAVATA1leucine-rich repeat receptor-like kinaseDevelopment, 2005
- Inflorescence diversification in the panicoid “bristle grass” clade (Paniceae, Poaceae): evidence from molecular phylogenies and developmental morphologyAmerican Journal of Botany, 2002
- The fasciated ear2 gene encodes a leucine-rich repeat receptor-like protein that regulates shoot meristem proliferation in maizeGenes & Development, 2001
- The origin of maize branches outNature, 1997
- Role of SUPERMAN in maintaining Arabidopsis floral whorl boundariesNature, 1995
- Maize Floral Development: New Genes and Old Mutants.Plant Cell, 1993
- Phase Change and the Regulation of Shoot Morphogenesis in PlantsScience, 1990
- Clonal analysis of the cell lineages in the male flower of maizeDevelopmental Biology, 1990
- Tassel Modifications in Zea MaysAnnals of the Missouri Botanical Garden, 1955
- A New Subspecies of Zea mays L.The American Naturalist, 1912