Author:
Royer Dana L.,Hickey Leo J.,Wing Scott L.
Abstract
The living speciesGinkgo bilobais phylogenetically isolated, has a relictual distribution, and is morphologically very similar to Mesozoic and Cenozoic congenerics. To investigate what adaptations may have allowed this lineage to persist with little or no morphological change for over 100 Myr, we analyzed both sedimentological and floral data from 51 latest Cretaceous to middle MioceneGinkgo-bearing fossil plant sites in North America and northern Europe. The resulting data indicate that throughout the late Cretaceous and CenozoicGinkgowas largely confined to disturbed streamside and levee environments, where it occurred with a consistent set of other plants. These inferred habitats are surprising because the life-history traits ofGinkgo(e.g., slow growth rate, late reproductive maturity, extended reproductive cycle, large and complex seeds, large and slowly developing embryos) are counter to those considered advantageous in modern disturbed habitats. Many flowering plant lineages first appeared or became common in disturbed riparian habitats, and are inferred to have had reproductive and growth traits (e.g., rapid reproduction, small easily dispersed seeds, rapid growth) suited to such habitats. Paleoecological inferences based on both morphology and sedimentary environments thus support the idea thatGinkgowas displaced in riparian habitats by angiosperms with better adaptations to frequent disturbance.
Publisher
Cambridge University Press (CUP)
Subject
Paleontology,General Agricultural and Biological Sciences,Ecology,Ecology, Evolution, Behavior and Systematics
Reference129 articles.
1. Comparative ultrastructure of fossil and living ginkgoacean megasporemembranes;Zhou;Review of Palaeobotany and Palynology,1993
2. Yoshitama K. 1997. Flavonoids of Ginkgo biloba . Pp. 287–299 in Hori et al. 1997.
3. Ginkgo biloba fastigiata;Wyman;American Nurseryman,1965
4. Paleogene floras from the Gulf of Alaska region;Wolfe;U.S. Geological Survey Professional Paper,1977
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