Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 93 checked references that resolve
resolves10.1080/08120099608728236Early Tertiary Eyre Formation, lower Nelly Creek, southern Lake Eyre Basin, Australia: Palynological dating of macrofloras and silcrete, and palaeoclimatic interpretations
resolves10.1071/RS16002Phylogenetic studies of eucalypts: fossils, morphology and genomes
resolves10.1016/j.ympev.2013.07.006Chloroplast genome analysis of Australian eucalypts – Eucalyptus, Corymbia, Angophora, Allosyncarpia and Stockwellia (Myrtaceae)
resolves10.1093/aob/mcq088Evolution of exceptional species richness among lineages of fleshy-fruited Myrtaceae
resolves10.1071/BT9810277An early pliocene pollen assemblage from Lake Tay, south-western Australia, and its phytogeographic implications
resolves10.1046/j.0028-646X.2001.00299.xEpicormic strand structure in <i>Angophora</i>, <i>Eucalyptus</i> and <i>Lophostemon</i> (Myrtaceae) – implications for fire resistance and recovery
resolves10.1071/BT10107A wide diversity of epicormic structures is present in Myrtaceae species in the northern Australian savanna biome – implications for adaptation to fire
resolves10.1071/SB9940385<i>Banksieaephyllum taylorii</i>
( Proteaceae) from the late paleocene of New South Wales and its relevance to the origin of Australia's scleromorphic flora
resolves10.1130/G32584.1Near-tropical Early Eocene terrestrial temperatures at the Australo-Antarctic margin, western Tasmania
resolves10.3732/ajb.1500343Fossil evidence for open, Proteaceae‐dominated heathlands and fire in the Late Cretaceous of Australia
resolves10.1080/08120090600981483<sup>40</sup>Ar/<sup>39</sup>Ar constraints on the timing of Oligocene intraplate volcanism in southeast Queensland ∗
resolves10.1038/ncomms1191Flammable biomes dominated by eucalypts originated at the Cretaceous–Palaeogene boundary
resolves10.1016/j.gloplacha.2004.01.013Palynological evidence for aridity events and vegetation change during the Middle Pliocene, a warm period in Southwestern Australia
resolves10.1038/nrg.2015.8Bayesian molecular clock dating of species divergences in the genomics era
resolves10.1007/BF00936005Corolla and androecium development in someEudesmia eucalypts (Myrtaceae)
resolves10.1144/SP346.8History of Australian aridity: chronology in the evolution of arid landscapes
resolves10.1111/nph.13482Adaptive radiation versus ‘radiation’ and ‘explosive diversification’: why conceptual distinctions are fundamental to understanding evolution
resolves10.1038/nclimate3126Phylogenetic approaches reveal biodiversity threats under climate change
resolves10.1073/pnas.1319091111The fossilized birth–death process for coherent calibration of divergence-time estimates
resolves10.1130/G22003.1Dating paleochannel iron ore by (U-Th)/He analysis of supergene goethite, Hamersley province, Australia
resolves10.1071/BT16117Evolution of the eucalypts – an interpretation from the macrofossil record
resolves10.1093/sysbio/syp035Accounting for Calibration Uncertainty in Phylogenetic Estimation of Evolutionary Divergence Times
resolves10.1071/BT9780221Carpological Evidence for Fossil Eucalyptus and Other
<i>Leptospermeae</i>
(Subfamily Leptospermoideae of Myrtaceae) From a Tertiary Deposit in the South Australian Arid Zone
resolves10.1071/BT96052Late Neogene Climates in Australia: Fossil Pollen- and Spore-based Estimates in Retrospect and Prospect
resolves10.1016/j.palaeo.2006.03.010Age and implications of the Forest Bed, Falkland Islands, southwest Atlantic Ocean: Evidence from fossil pollen and spores
resolves10.1080/01916122.2013.865002Testing the Gippsland Basin zonation in northern Australia: palynostratigraphical analysis of a 23 Ma<sup>40</sup>Ar/<sup>39</sup>Ar dated claystone from Toowoomba, southeast Queensland
resolves10.1111/j.1400-0952.2004.01071.xAge and palaeoenvironmental constraints on the genesis of the Yandi channel iron deposits, Marillana Formation, Pilbara, northwestern Australia*
resolves10.5962/p.361250Stratigraphic palynology of the Lake Menindee region, northwest Murray Basin, New South Wales
resolves10.1080/03115519008619058The palynology of the Namba Formation in the Wooltana-1 bore, Callabonna Basin (Lake Frome), South Australia, and its relevance to Miocene grasslands in central Australia
resolves10.1080/08120098708729417The first occurrence of the Paleocene<i>Lygistepollenites balmei</i>Zone in the Eastern Highlands region, New South Wales
resolves10.1130/G36669.1Is the present the key to the past? A global characterization of modern sedimentary basins
resolves10.1111/j.1365-2699.2004.01001.xPollen‐based reconstructions of biome distributions for Australia, Southeast Asia and the Pacific (SEAPAC region) at 0, 6000 and 18,000<sup>14</sup>C yr BP
resolves10.1071/BT9560013Pollen morphology of Myrtaceae from the south-west Pacific area
resolves10.1071/BT9940341An Eocene Macroflora From the Taratu Formation at Livingstone, North Otago, New Zealand
resolves10.1016/S0034-6667(02)00244-0Valdivian ecosystems in the Late Cretaceous and Early Tertiary of Antarctica: further evidence from myrtaceous and eucryphiaceous fossil wood
resolves10.1071/BT15259Impact of high-severity fire in a Tasmanian dry eucalypt forest
resolves10.1111/evo.12644Phylogenetic uncertainty revisited: Implications for ecological analyses
resolves10.1130/B31167.1Triggering of the largest Deccan eruptions by the Chicxulub impact
resolves10.1130/G36664.1Climate, dust, and fire across the Eocene-Oligocene transition, Patagonia
resolves10.1071/BT16165Fire and Late Oligocene to Mid-Miocene peat mega-swamps of south-eastern Australia: a floristic and palaeoclimatic interpretation
resolves10.1073/pnas.1001225107An uncorrelated relaxed-clock analysis suggests an earlier origin for flowering plants
resolves10.1016/j.ympev.2011.02.003Population genetic analysis and phylogeny reconstruction in Eucalyptus (Myrtaceae) using high-throughput, genome-wide genotyping
resolves10.1080/08120099.2012.688293Passive-margin prolonged volcanism, East Australian Plate: outbursts, progressions, plate controls and suggested causes
resolves10.1139/e86-131The Cretaceous–Tertiary boundary in the central Alberta Foothills. II: Miospore and pollen taxonomy
resolves10.1086/421066Clades, Clocks, and Continents: Historical and Biogeographical Analysis of Myrtaceae, Vochysiaceae, and Relatives in the Southern Hemisphere
resolves10.1016/0031-0182(90)90207-NEarly Tertiary palaeogeography, landform evolution, and palaeoclimates of the Southern Monaro, N.S.W., Australia
resolves10.1071/SB11019Phylogenetic assessment of pollen characters in Myrtaceae
resolves10.1016/j.revpalbo.2012.03.003Fossil myrtaceous pollen as evidence for the evolutionary history of Myrtaceae: A review of fossil Myrtaceidites species
resolves10.1016/j.ympev.2011.12.003Are pollen fossils useful for calibrating relaxed molecular clock dating of phylogenies? A comparative study using Myrtaceae
resolves10.1071/BT11174Pollen morphology of the Myrtaceae. Part 1: tribes Eucalypteae, Lophostemoneae, Syncarpieae, Xanthostemoneae and subfamily Psiloxyloideae
resolves10.1080/08120099708728342Palynomorph assemblages from marine Eocene sediments on the west Tasmanian continental margin and the South Tasman Rise
resolves10.1071/SB08046Polar forests on the edge of extinction: what does the fossil spore and pollen evidence from East Antarctica say?
resolves10.1016/j.revpalbo.2005.09.007Extinction and recovery patterns of the vegetation across the Cretaceous–Palaeogene boundary — a tool for unravelling the causes of the end-Permian mass-extinction
resolves10.2307/3558428Myrtaceae revisited: a reassessment of infrafamilial groups
The 61 references without a DOI — listed, not checked
no DOI — not checked2025102414515681500_R2
no DOI — not checkedForaminiferal and palynological evidence from the Pidinga Formation and its bearing on Eocene sea level events and palaeochannel activity, eastern Eucla Basin, South Australia.
no DOI — not checkedLate Eocene palynofloras from the Pidinga Formation SADME Ooldea Range 6, eastern Eucla Basin.
no DOI — not checkedTertiary palynology in the Mount Coolon and Riverside areas.
no DOI — not checked2025102414515681500_R14
no DOI — not checked2025102414515681500_R16
no DOI — not checked2025102414515681500_R20
no DOI — not checked2025102414515681500_R27
no DOI — not checked2025102414515681500_R28
no DOI — not checkedSome dicotyledonous pollen types from Cainozoic deposits in the Australian region.
no DOI — not checkedIllustrations of Early Tertiary (Eocene) plant microfossils from the Yaamba Basin, Queensland.
no DOI — not checkedEstudio palinológico de la Formación Cerro Dorotea (Maastrichtiano-Paleoceno), Provincia de Santa Cruz.
no DOI — not checkedGradstein FM, Ogg JG, Schmitz M, Ogg G (2012) ‘The geologic time scale.’ Available at http://www.sciencedirect.com/science/book/9780444594259 [verified 5 September 2016].
no DOI — not checkedBasal Tertiary microfloras from the Princetown area, Victoria, Australia.
no DOI — not checkedEvolution of New Zealand alpine and open-habitat plant species during the late Cenozoic.
no DOI — not checked2025102414515681500_R50
no DOI — not checkedPoor soils and a dry climate: the evolution of the Australian scleromorphic and xeromorphic vegetation.
no DOI — not checkedMacrofossil evidence for the onset of xeromorphy in Australian Casuarinaceae and tribe Banksieae (Proteaceae).
no DOI — not checkedFire, air, water and earth: an elemental ecology of Tasmania.
no DOI — not checked2025102414515681500_R58
no DOI — not checked2025102414515681500_R59
no DOI — not checkedEarly Tertiary pollen from Napperby, central Australia.
no DOI — not checked2025102414515681500_R64
no DOI — not checked2025102414515681500_R65
no DOI — not checkedCooking up our data.
no DOI — not checkedImpact of the K/T event on the southeast Australian flora and vegetation: mass extinction, niche disruption or nil?
no DOI — not checkedA provisional palynostratigraphic framework for Tertiary organic facies in the Burt Plain, Hale, Ngalia, Santa Teresa, Ti-Tree and Waite Basins, Northern Territory.
no DOI — not checkedPalynostratigraphy of Late Cretaceous–Tertiary basins of the Alice Springs district, Northern Territory.
no DOI — not checked2025102414515681500_R72
no DOI — not checked2025102414515681500_R73
no DOI — not checked2025102414515681500_R74
no DOI — not checkedPalynostratigraphy of the central west Murray Basin.
no DOI — not checkedPalynostratigraphy of the Bookpurnong beds and related late Miocene–Early Pliocene facies in the central west Murray Basin, part 2: spores and pollen.
no DOI — not checked2025102414515681500_R80
no DOI — not checked2025102414515681500_R81
no DOI — not checkedCenozoic oil-shale deposits in southeastern-central Queensland: palynostratigraphic age determinations and correlations for the Biloela Formation (Biloela Basin) in GSQ Monto 5.
no DOI — not checkedIdentification of Eucalyptus spathulata pollen and its presence in the fossil record.
no DOI — not checkedMiocene–Pleistocene spores and pollen from central Otago, South Island, New Zealand.
no DOI — not checkedPalynology of a late Eocene lignitic sequence from the western margin of the Eucla Basin, Western Australia.
no DOI — not checked2025102414515681500_R92
no DOI — not checked2025102414515681500_R93
no DOI — not checkedPalinología y micropaleontología de las Formaciones San Julián y Monte León (Oligoceno–Mioceno temprano) en el subsuelo de cabo Curioso, provincia de Santa Cruz, Argentina.
no DOI — not checkedPartridge AD (1999) Late Cretaceous to Tertiary geological evolution of the Gippsland Basin, Victoria. PhD Thesis, Latrobe University, Melbourne.
no DOI — not checked2025102414515681500_R99
no DOI — not checkedPole MS (2014) Eucalyptus fossils in New Zealand: the thin end of the wedge. Available at: http://www.mikepole.com/2014/09/22/eucalyptus-fossils-in-new-zealand-the-thin-end-of-the-wedge/ [verified 7 November 2016].
no DOI — not checkedOutline of a palynological zonation of Cretaceous to Paleogene terrestrial sediments in West Coast Region, South Island, New Zealand.
no DOI — not checkedRaine JI, Mildenhall DC, Kennedy EM (2011) ‘New Zealand fossil spores and pollen: an illustrated catalogue.’ 4th edn. GNS Science Miscellaneous Series 4. Available at http://www.gns.cri.nz/what/earthhist/fossils/spore_pollen/catalog/index.htm [verified 19 September 2016]
no DOI — not checkedEucalyptus phylogeny and history: a brief summary.
no DOI — not checkedEstudio palinológico de la formación Pedr Luro (?Maastrichtiano–Paleoceno), en la Cuenca del Colorado, República Argentina.
no DOI — not checkedThe oldest fossil of Eucalyptus from the Late Maastrichtian–Danian of India and the theory of its Gondwanic origin.
no DOI — not checked2025102414515681500_R121
no DOI — not checkedUpper Cretaceous–Eocene spore-pollen zonations, offshore Gippsland Basin.
no DOI — not checkedTertiary and Late Cretaceous spores and pollen from the Gippsland Basin, southeastern Australia.
no DOI — not checked2025102414515681500_R128
no DOI — not checked2025102414515681500_R131
no DOI — not checkedBight Basin geological sampling and seepage survey: RV Southern Surveyor survey SS01/2007.
no DOI — not checked2025102414515681500_R140
no DOI — not checkedRecycled Cretaceous and Tertiary pollen and spores in Antarctic marine sediments: a catalogue.
no DOI — not checkedEarly Tertiary sediments from the Edmund 1 : 250 000 sheet area, Western Australia.
no DOI — not checkedLate Oligocene to Early Miocene palynomorphs from GSQ Sandy Cape 1-3R.
no DOI — not checked2025102414515681500_R153
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