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Australian Systematic Botany Australian Systematic Botany Society
Taxonomy, biogeography and evolution of plants
RESEARCH ARTICLE

The Miocene conifer flora of Balcombe Bay, Victoria, Australia

Emma K. Lewis A and Andrew N. Drinnan A B
+ Author Affiliations
- Author Affiliations

A School of Botany, The University of Melbourne, Vic. 3010, Australia.

B Corresponding author. Email: a.drinnan@unimelb.edu.au

Australian Systematic Botany 26(2) 145-155 https://doi.org/10.1071/SB11031
Submitted: 23 August 2011  Accepted: 22 February 2013   Published: 28 June 2013

Abstract

Fossil conifers from an early Miocene flora at Balcombe Bay near Melbourne, Australia, are described and illustrated. The most prominent elements are Araucaria balcombensis Selling emend. R.S.Hill and Dacrycarpus mucronatus P.M.Wells & R.S.Hill, and several other unidentified podocarp leaves are represented. Ovuliferous cones of D. mucronatus are described, along with isolated araucarian microsporophylls and podocarp pollen cones – both with pollen in situ. The floristic elements are similar to Eocene–Oligocene flora described from Tasmania, and indicate that these floras extended to now mainland Australia and persisted into the Miocene. They are indicative of a wetter and warmer climate than the present time.

Additional keywords: Araucariaceae, fossil, Podocarpaceae.


References

Blackburn DT (1985) Palaeobotany of the Yallourn and Morwell coal seams. Palaeobotanical Project-report 3, State Electricity Commission of Victoria. (Melbourne)

Blackburn DT, Sluiter IRK (1994) The Oligo–Miocene coal floras of south-eastern Australia. In ‘History of the Australian vegetation: Cretaceous to Recent’. (Ed. RS Hill) pp. 328–367. (Cambridge University Press: Cambridge, UK)

Chambers TC, Drinnan AN, McLoughlin S (1998) Some morphological features of Wollemi Pine (Wollemia nobilis: Araucariaceae) and their comparison to Cretaceous plant fossils. International Journal of Plant Sciences 159, 160–171.
Some morphological features of Wollemi Pine (Wollemia nobilis: Araucariaceae) and their comparison to Cretaceous plant fossils.Crossref | GoogleScholarGoogle Scholar |

Cookson IC, Duigan SL (1951) Tertiary Araucariaceae from south-eastern Australia, with notes on living species. Australian Journal of Scientific Research Series B 4, 415–449.

Cookson IC, Pike KM (1953) The Tertiary occurrence of Podocarpus (section Dacrycarpus) in Australia and Tasmania. Australian Journal of Botany 1, 71–82.
The Tertiary occurrence of Podocarpus (section Dacrycarpus) in Australia and Tasmania.Crossref | GoogleScholarGoogle Scholar |

Del Fueyo GM, Caccavari MA, Dome EA (2008) Morphology and structure of the pollen cone and pollen grain of the Araucaria species from Argentina. Biocell 32, 49–60.

Fountain DW, Holdsworth JM, Outred HA (1989) The dispersal unit of Dacrycarpus dacrydiodes (A.Rich) de Laubenfels (Podocarpaceae) and the significance of the fleshy receptacle. Botanical Journal of the Linnean Society 99, 197–207.
The dispersal unit of Dacrycarpus dacrydiodes (A.Rich) de Laubenfels (Podocarpaceae) and the significance of the fleshy receptacle.Crossref | GoogleScholarGoogle Scholar |

Hill RS (1990) Araucaria (Araucariaceae) species from Australian Tertiary sediments – a micromorphological study. Australian Systematic Botany 3, 203–220.
Araucaria (Araucariaceae) species from Australian Tertiary sediments – a micromorphological study.Crossref | GoogleScholarGoogle Scholar |

Hill RS, Brodribb TJ (1999) Southern conifers in time and space. Australian Journal of Botany 47, 639–696.
Southern conifers in time and space.Crossref | GoogleScholarGoogle Scholar |

Hill RS, Carpenter RJ (1991) Evolution of Acmopyle and Dacrycarpus (Podocarpaceae) foliage as inferred from macrofossils in south-eastern Australia. Australian Systematic Botany 4, 449–479.
Evolution of Acmopyle and Dacrycarpus (Podocarpaceae) foliage as inferred from macrofossils in south-eastern Australia.Crossref | GoogleScholarGoogle Scholar |

Hill RS, Mcphail MK (1983) Reconstruction of the Oligocene vegetation of Pioneer, northeast Tasmania. Alcheringa 7, 281–299.
Reconstruction of the Oligocene vegetation of Pioneer, northeast Tasmania.Crossref | GoogleScholarGoogle Scholar |

Hill RS, Pole MS (1992) Leaf and shoot morphology of extant Afrocarpus, Nageia and Retrophyllum (Podocarpaceae) species, and species with similar leaf arrangement, from Tertiary sediments in Australasia. Australian Systematic Botany 5, 337–358.
Leaf and shoot morphology of extant Afrocarpus, Nageia and Retrophyllum (Podocarpaceae) species, and species with similar leaf arrangement, from Tertiary sediments in Australasia.Crossref | GoogleScholarGoogle Scholar |

Hill RS, Whang SS (2000) Dacrycarpus (Podocarpaceae) macrofossils from Miocene sediments at Elands, eastern Australia. Australian Systematic Botany 13, 395–408.
Dacrycarpus (Podocarpaceae) macrofossils from Miocene sediments at Elands, eastern Australia.Crossref | GoogleScholarGoogle Scholar |

Holdgate GR, Gallagher SJ, Wallace MW (2002) Tertiary coal geology and stratigraphy of the Port Phillip Basin, Victoria. Australian Journal of Earth Sciences 49, 437–453.
Tertiary coal geology and stratigraphy of the Port Phillip Basin, Victoria.Crossref | GoogleScholarGoogle Scholar |

Huynh KL, Sampson FB (1983) Tetrad arrangement of the trisaccate pollen of Dacrycarpus dacryoides (Podocarpaceae) and developmental morphology of the triradiate ridge. Grana 22, 1–9.
Tetrad arrangement of the trisaccate pollen of Dacrycarpus dacryoides (Podocarpaceae) and developmental morphology of the triradiate ridge.Crossref | GoogleScholarGoogle Scholar |

Jordan GJ (1995) Extinct conifers and conifer diversity in the Early Pleistocene of western Tasmania. Review of Palaeobotany and Palynology 84, 375–387.
Extinct conifers and conifer diversity in the Early Pleistocene of western Tasmania.Crossref | GoogleScholarGoogle Scholar |

Kelch DG (1997) The phylogeny of the Podocarpaceae based on morphological evidence. Systematic Botany 22, 113–131.
The phylogeny of the Podocarpaceae based on morphological evidence.Crossref | GoogleScholarGoogle Scholar |

Kershaw P, Wagstaff B (2001) The southern conifer family Araucariaceae: history, status, and value for paleoenvironmental reconstruction. Annual Review of Ecology and Systematics 32, 397–414.
The southern conifer family Araucariaceae: history, status, and value for paleoenvironmental reconstruction.Crossref | GoogleScholarGoogle Scholar |

Macphail MK, Hill RS, Forsyth SM, Wells PM (1991) A Late Oligocene–Early Miocene cool climate flora in Tasmania. Alcheringa 15, 87–106.
A Late Oligocene–Early Miocene cool climate flora in Tasmania.Crossref | GoogleScholarGoogle Scholar |

Pole MS (1992) Eocene vegetation from Hasties, north-eastern Tasmania. Australian Systematic Botany 5, 431–475.
Eocene vegetation from Hasties, north-eastern Tasmania.Crossref | GoogleScholarGoogle Scholar |

Pole MS (1998) Paleocene gymnosperms for Mt Somers, New Zealand. Journal of the Royal Society of New Zealand 28, 375–403.
Paleocene gymnosperms for Mt Somers, New Zealand.Crossref | GoogleScholarGoogle Scholar |

Selling OH (1950) Some Tertiary plants from Australia. Preliminary notes. Svensk Botanisk Tidskrift 44, 551–561.

Sniderman JMK (2011) Early Pleistocene vegetation change in upland south-eastern Australia. Journal of Biogeography 38, 1456–1470.
Early Pleistocene vegetation change in upland south-eastern Australia.Crossref | GoogleScholarGoogle Scholar |

Stockey RA, Ko H (1986) Cuticle micromorphology of Araucaria de Jussieu. Botanical Gazette 147, 508–548.
Cuticle micromorphology of Araucaria de Jussieu.Crossref | GoogleScholarGoogle Scholar |

Wells PM, Hill RS (1989) Fossil imbricate-leaved Podocarpaceae from Tertiary sediments in Tasmania. Australian Systematic Botany 2, 387–423.
Fossil imbricate-leaved Podocarpaceae from Tertiary sediments in Tasmania.Crossref | GoogleScholarGoogle Scholar |