Abstract
• Grasses rank among the world's most ecologically and economically important plants. Repeated evolution of the C 4 syndrome has made photosynthesis highly efficient in many grasses, inspiring intensive efforts to engineer the pathway into C 3 crops. However, comparative biology has been of limited use to this endeavor because of uncertainty in the number and phylogenetic placement of C 4 origins. • We built the most comprehensive and robust molecular phylogeny for grasses to date, expanding sampling efforts of a previous working group from 62 to 531 taxa, emphasizing the C 4-rich PACMAD (Panicoideae, Arundinoideae, Chloridoideae, Micrairoideae, Aristidoideae and Danthonioideae) clade. Our final matrix comprises c. 5700bp and is>93% complete. • For the first time, we present strong support for relationships among all the major grass lineages. Several new C 4 lineages are identified, and previously inferred origins confirmed. C 3/C 4 evolutionary transitions have been highly asymmetrical, with 22-24 inferred origins of the C 4 pathway and only one potential reversal. • Our backbone tree clarifies major outstanding systematic questions and highlights C 3 and C 4 sister taxa for comparative studies. Two lineages have emerged as hotbeds of C 4 evolution. Future work in these lineages will be instrumental in understanding the evolution of this complex trait. © 2011 The Authors. New Phytologist © 2011 New Phytologist Trust.
Author supplied keywords
Cite
CITATION STYLE
Aliscioni, S., Bell, H. L., Besnard, G., Christin, P. A., Columbus, J. T., Duvall, M. R., … Zuloaga, F. (2012). New grass phylogeny resolves deep evolutionary relationships and discovers C 4 origins. New Phytologist, 193(2), 304–312. https://doi.org/10.1111/j.1469-8137.2011.03972.x
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.