Affiliation:
1. School of Botany and Zoology, The Australian National University, Canberra, ACT 0200, Australia
2. School of Plant Science, University of Tasmania, Private Bag 55, Hobart, TAS 7001, Australia
Abstract
The Australian fossil record shows that from
ca
. 25 Myr ago, the aseasonal–wet biome (rainforest and wet heath) gave way to the unique Australian sclerophyll biomes dominated by eucalypts, acacias and casuarinas. This transition coincided with tectonic isolation of Australia, leading to cooler, drier, more seasonal climates. From 3 Myr ago, aridification caused rapid opening of the central Australian arid zone. Molecular phylogenies with dated nodes have provided new perspectives on how these events could have affected the evolution of the Australian flora. During the Mid–Cenozoic (25–10 Myr ago) period of climatic change, there were rapid radiations in sclerophyll taxa, such as
Banksia
, eucalypts, pea–flowered legumes and
Allocasuarina
. At the same time, taxa restricted to the aseasonal–wet biome (
Nothofagus
, Podocarpaceae and Araucariaceae) did not radiate or were depleted by extinction. During the Pliocene aridification, two Eremean biome taxa (
Lepidium
and Chenopodiaceae) radiated rapidly after dispersing into Australia from overseas. It is clear that the biomes have different histories. Lineages in the aseasonal–wet biome are species poor, with sister taxa that are species rich, either outside Australia or in the sclerophyll biomes. In conjunction with the fossil record, this indicates depletion of the Australian aseasonal–wet biome from the Mid–Cenozoic. In the sclerophyll biomes, there have been multiple exchanges between the southwest and southeast, rather than single large endemic radiations after a vicariance event. There is need for rigorous molecular phylogenetic studies so that additional questions can be addressed, such as how interactions between biomes may have driven the speciation process during radiations. New studies should include the hitherto neglected monsoonal tropics.
Subject
General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology
Reference173 articles.
1. Phylogeny of the portulacaceous cohort based on ndhF sequence data;Applequist W. L.;Syst. Bot.,2001
2. Sequences of the Grass-Specific Insert in the Chloroplast rpoC2 Gene Elucidate Generic Relationships of the Arundinoideae (Poaceae)
3. Barker N. P. Schrire B. D. & Kim J.-H. 2000 Generic relationships in the tribe Indigofereae (Leguminosae: Papilionoideae) based on morphology and sequence data from the plastid trnL intron and matK genes and nuclear ITS (internal transcribed spacer) gene. In Advances in legume systematics part 9 (ed. P. S. Herendeen & A. Bruneau) pp. 311-337. Kew UK: The Royal Botanic Gardens.
4. The Paraphyly of Cortaderia (Danthonioideae; Poaceae): Evidence from Morphology and Chloroplast and Nuclear DNA Sequence Data
5. Barlow B. A. 1981 The Australian flora: its origin and evolution. In Flora of Australia vol. 1. Introduction (ed. A. S. George) pp. 25-75. Canberra Australia: Australian Government Publishing Service.
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