The ecophysiology of early angiosperms
- 11 January 2007
- journal article
- review article
- Published by Wiley in Plant, Cell & Environment
- Vol. 30 (3) , 291-309
- https://doi.org/10.1111/j.1365-3040.2006.01625.x
Abstract
Angiosperms first appeared during the Early Cretaceous, and within 30 million years they reigned over many floras worldwide. Associated with this rise to prominence, angiosperms produced a spectrum of reproductive and vegetative innovations, which produced a cascade of ecological consequences that altered the ecology and biogeochemistry of the planet. The pace, pattern and phylogenetic systematics of the Cretaceous angiosperm diversification are broadly sketched out. However, the ecophysiology and environmental interactions that energized the early angiosperm radiation remain unresolved. This constrains our ability to diagnose the selective pressures and habitat contexts responsible for the evolution of fundamental angiosperm features, such as flowers, rapid growth, xylem vessels and net-veined leaves, which in association with environmental opportunities, drove waves of phylogenetic and ecological diversification. Here, we consider our current understanding of early angiosperm ecophysiology. We focus on comparative patterns of ecophysiological evolution, emphasizing carbon- and water-use traits, by merging recent molecular phylogenetic studies with physiological studies focused on extant basal angiosperms. In doing so, we discuss how early angiosperms established a roothold in pre-existing Mesozoic plant communities, and how these events canalized subsequent bursts of angiosperm diversification during the Aptian-Albian.Keywords
This publication has 175 references indexed in Scilit:
- Island radiation on a continental scale: Exceptional rates of plant diversification after uplift of the AndesProceedings of the National Academy of Sciences, 2006
- Early Angiosperm Ecology: Evidence from the Albian-Cenomanian of EuropeAnnals of Botany, 2006
- Seedling growth in conifers and angiosperms: impacts of contrasting xylem structureAustralian Journal of Botany, 2005
- Evolution of Water Transport and Xylem StructureInternational Journal of Plant Sciences, 2003
- Adaptive Evolution in the Photosensory Domain of Phytochrome A in Early AngiospermsMolecular Biology and Evolution, 2003
- Morphological Phylogenetic Analysis of Basal Angiosperms: Comparison and Combination with Molecular DataInternational Journal of Plant Sciences, 2000
- Floral bract function, flowering process and breeding systems ofSarcandra andChloranthus (Chloranthaceae)Österreichische botanische Zeitschrift, 1999
- Photosynthetic pathway diversity in a seasonal pool communityFunctional Ecology, 1999
- The evolution of double fertilization and endosperm: an ”historical" perspectiveSexual Plant Reproduction, 1998
- High vapour pressure deficit exacerbates xylem cavitation and photoinhibition in shade-grown Piper auritum H.B. & K. during prolonged sunflecksOecologia, 1997