Alroy J. Fair sampling of taxonomic richness and unbiased estimation of origination and extinction rates. Quantitative Methods in Paleobiology 2010, 55-80. The Paleontological Society. J. Alroy, G. Hunt (Eds.).
Alroy J. Geographical, environmental and intrinsic biotic controls on Phanerozoic marine diversification. Palaeontology 2010, 53:1211-1235.
Alroy J. The Shifting Balance of Diversity Among Major Marine Animal Groups. Science 2010, 329:1191-1194.
Alroy J. Accurate and precise estimates of origination and extinction. Paleobiology 2014, 40:374-397.
Alroy J., Aberhan M., Bottjer D.J., Foote M., Fürsich F.T., Harries P., Hendy A.J.W., Holland S.M., Ivany L.C., Kiessling W., Kosnik M.A., Marshall C.R., McGowan A.J., Miller A.I., Olszewski T.D., Patzkowsky M.E., Peters S.E., Villier L., Wagner P.J., Bonuso N., Borkow P.S., Brenneis B., Clapham D.H., Fall L.M., Ferguson C.A., Hanson V.L., Krug A.Z., Layou K.M., Leckey E.H., Nürnberg S., Powers C., Sessa J.A., Simpson C., Tomasovych A., Visaggi C. Phanerozoic trends in the global diversity of marine invertebrates. Science 2008, 321:97-100.
Anderson J.M., Anderson H.M. Heyday of the Gymnosperms: Systematics and Biodiversity of the Late Triassic Molteno Fructifications. Pretoria: Strelitzia 15 2003, South African National Biodiversity Institute.
Anderson J.M., Anderson H.M., Cleal C.J. Brief History of the Gymnosperms: Classification, Biodiversity, Phytogeography and Ecology. Pretoria: Strelitzia 20 2007, South African National Biodiversity Institute.
Beaulieu J.M., O'Meara B., Crane P.R., Donoghue M.J. Heterogeneous rates of molecular evolution and diversification could explain the Triassic age estimate for angiosperms. Systematic Biology 2015, 64:869-878.
Bell M.A., Lloyd G.T. strap: an R package for plotting phylogenies against stratigraphy and assessing their stratigraphic congruence. Palaeontology 2014, 58:379-389.
Bell C.D., Soltis D.E., Soltis P.S. The age of the angiosperms: a molecular timescale without a clock. Evolution 2005, 59:1245-1258.
Bell C.D., Soltis D.E., Soltis P.S. The age and diversification of the angiosperms re-visited. American Journal of Botany 2010, 97:1296-1303.
Benton M.J. Diversification and extinction in the history of life. Science 1995, 268:52-58.
Benton M.J., Wills M.A., Hitchin R. Quality of the fossil record through time. Nature 2000, 403:534-537.
Benton M.J., Dunhill A.M., Lloyd G.T., Marx F.G. Assessing the quality of the fossil record: insights from vertebrates. Comparing the Geological and Fossil Records: Implications for Biodiversity Studies 2011, 63-94. Geological Society, Special Publications, London. A. McGowan, A.B. Smith (Eds.).
Brocklehurst N., Kammerer C.F., Fröbish J. The early evolution of synapsids, and the influence of sampling on their fossil record. Paleobiology 2013, 39:470-490.
Bronstein J.L., Alarcón R., Geber M. The evolution of plant-insect mutualisms. New Phytologist 2006, 172:412-428.
Brusatte S.L., Benton M.J., Ruta M., Lloyd G.T. Superiority, competition, and opportunism in the evolutionary radiation of dinosaurs. Science 2008, 321:1485-1488.
Buerki S., Forest T., Alvarez N. Proto-South-East Asia as a trigger of early angiosperm diversification. Botanical Journal of the Linnean Society 2014, 174:326-333.
Cantino P.D., Doyle J.A., Graham S.W., Judd W.S., Olmstead R.G., Soltis D.E., Soltis P.S., Donoghue M.J. Towards a phylogenetic nomenclature of Tracheophyta. Taxon 2007, 56:1E-44E.
Cascales-Miñana B., Cleal C.J. The plant fossil record reflects just two great extinction events. Terra Nova 2014, 26:195-200.
Cascales-Miñana B., Diez J.B., Gerrienne P., Cleal C.J. A palaeobotanical perspective on the great end-Permian biotic crisis. Historical Biology 2016, (in press).
Chaboureau A.-C., Sepulchre P., Donnadieu Y., Franc A. Tectonic-driven climate change and the diversification of angiosperms. Proceedings of the National Academy of Sciences USA 2014, 111:14066-14070.
Chaloner B., Crane P. Darwin's "Abominable Mystery". The Linnean 2009, 25:21-23.
Cleal C.J. Plants. 44. Gymnospermophyta. The Fossil Record 2 1993, 795-808. Chapman and Hall, London. M.J. Benton (Ed.).
Cleal C.J., Cascales-Miñana B. Composition and dynamics of the great Phanerozoic Evolutionary Floras. Lethaia 2014, 47:469-484.
Cleal C.J., Rees P.M. The Middle Jurassic flora from Stonesfield, Oxfordshire, UK. Palaeontology 2003, 46:739-801.
Cornet B., Habib D. Angiosperm-like pollen from the ammonite-dated Oxfordian (Upper Jurassic) of France. Review of Palaeobotany and Palynology 1992, 71:269-294.
Crane P.R., Lidgard S. Angiosperm diversification and paleolatitudinal gradients in Cretaceous floristic diversity. Science 1989, 246:675-678.
Crane P.R., Lidgard S. Angiosperm radiation patterns of Cretaceous palynological diversity. Major Evolutionary Radiations 1990, 337-407. Clarendon Press, Oxford. P.D. Taylor, G.P. Larwood (Eds.).
Darwin F., Seward A.C. More Letters of Charles Darwin. A Record of His Work in a Series of Hitherto Unpublished Letters 1903, vol. II. J. Murray, London.
Dimitrova T.K., Cleal C.J., Thomas B.A. Palynological evidence for Pennsylvanian extra-basinal vegetation in Atlantic Canada. Journal of the Geological Society, London 2011, 168:559-569.
Doyle J.A. Molecular and fossil evidence on the origin of angiosperms. Annual Review of Earth and Planetary Sciences 2012, 40:301-326.
Edwards D., Davies E.C. Oldest recorded in situ tracheids. Nature 1976, 263:494-495.
Edwards D., Feehan J. Records of Cooksonia-type sporangia from late Wenlock strata in Ireland. Nature 1980, 287:41-42.
Edwards D., Davies K.L., Axe L.M. A vascular conducting strand in the early land plant Cooksonia. Nature 1992, 357:683-685.
Endress P.K., Doyle J.A. Reconstructing the ancestral angiosperm flower and its initial specializations. American Journal of Botany 2009, 96:22-66.
Field T.S., Chatelet D.S., Brodribb T.J. Ancestral xerophobia: a hypothesis on the whole plant ecophysiology of early angiosperms. Geobiology 2009, 7:237-264.
Foote M. Origination and extinction components of taxonomic diversity: general problems. Paleobiology 2000, 26 (suppl.):74-102. D.H. Erwin, S.L. Wing (Eds.).
Friedman D.M. The meaning of Darwin's "abominable mystery". American Journal of Botany 2009, 96:5-21.
Friis E.M., Pedersen K.R., Crane P.R. Diversity in obscurity: fossil flowers and the early history of angiosperms. Philosophical Transactions of the Royal Society B - Biological Sciences 2010, 365:369-382.
Frohlich M.W., Chase M.W. After a dozen years of progress the origin of angiosperms is still a great mystery. Nature 2007, 450:1184-1189.
Gastaldo R.A., Pfefferkorn H.W., DiMichele W.A. Taphonomic and sedimentologic characterization of roof-shale floras. Memoirs of the Geological Society of America 1995, 185:341-352.
Gerrienne P., Meyer-Berthaud B., Lardeux H., Régnault S. First record of Rellimia Leclercq & Bonamo (Aneurophytales) from Gondwana, with comments on the earliest ligniophytes. The Terrestrialization Process: Modelling Complex Interactions at the Biosphere-Geosphere Interface 2010, 81-92. Geological Society, Special Publications, London. M. Vecoli, M. Clément, B. Meyer-Berthaud (Eds.).
Gomez B., Daviero-Gomez V., Coiffard C., Martín-Closas C., Dilcher D.L. Montsechia, an ancient aquatic angiosperm. Proceedings of the National Academy of Sciences USA 2015, 112:10985-10988.
Good I.J. The population frequencies of species and the estimation of population. Biometrika 1953, 40:237-264.
Heer O., Cramer K.E., Nordenskiöld A.E., Schröter C. Flora fossilis arctica: Die fossile flora der polarländer, 7 1868, J. Wurster & Co.
Hilton J., Bateman R.M. Pteridosperms are the backbone of seed-plant phylogeny. Journal of the Torrey Botanical Society 2006, 133:119-168.
Hochuli P.A., Feist-Burkhardt S. A boreal early cradle of angiosperms? Angiosperm-like pollen from the Middle Triassic of the Barents Sea (Norway). Journal of Micropalaeontology 2004, 23:97-104.
Hochuli P.A., Feist-Burkhardt S. Angiosperm-like pollen and Afropollis from the Middle Triassic (Anisian) of the germanic basin (Northern Switzerland). Frontiers in Plant Science 2013, 4:344.
Hughes N.F. The Enigma of Angiosperm Origins 1994, Cambridge University Press, Cambridge.
Jiao Y., Wickett N.J., Ayyampalayam S., Chanderbali A.S., Landherr L., Ralph P.E., Tomsho L., Hu Y., Soltis P.S., Soltis D.E., Clifton S.W., Schlarbaum S.E., Schuster S.C., Ma H., Leebens-Mack J., dePamohilis C.W. Ancestral polyploidy in seed plants and angiosperms. Nature 2011, 473:97-100.
Kenrick P., Wellman C.H., Schneider H., Edgecombe D. A timeline for terrestrialization: consequence for the carbon cycle in the Palaeozoic. Philosophical Transactions of the Royal Society of London B 2012, 367:519-536.
Kustatscher E., Wachtler M., Cittert J. Horsetails and seed ferns from the Middle Triassic (Anisian) locality Kuhwiesenkopf (Monte Pra Della Vacca), Dolomites, northern Italy. Palaeontology 2007, 50:1277-1298.
Lidgard S., Crane P.R. Quantitative analyses of early angiosperm radiation. Nature 1988, 331:344-346.
Lidgard S., Crane P.R. Angiosperm diversification and Cretaceous floristic trends: a comparison of palynofloras and leaf macrofloras. Paleobiology 1990, 16:77-93.
Liu Z.-J., Wang X. A perfect flower from the Jurassic of China. Historical Biology 2016, (in press).
Lloyd G.T., Friedman M. A survey of palaeontological sampling biases in fishes based on the Phanerozoic record of Great Britain. Palaeogeography, Palaeoclimatology, Palaeoecology 2013, 372:5-17.
Lloyd G.T., Davis K.E., Pisani D., Tarver J.E., Ruta M., Sakamoto M., Hone D.W.E., Jennings R., Benton M.J. Dinosaurs and the Cretaceous Terrestrial Revolution. Proceedings of the Royal Society B 2008, 275:1650.
Lloyd G.T., Pearson P.N., Young J.R., Smith A.B. Sampling bias and the fossil record of planktonic foraminifera on land and in the deep sea. Paleobiology 2012, 34:569-584.
Lloyd G.T., Young J.R., Smith A.B. Comparative quality and fidelity of deep-sea and land-based nannofossil records. Geology 2012, 40:155-158.
Magallon S., Gómez-Acebedo S., Sánchez-Reyes L.L., Hernández-Hernández T. A metacalibrated time-tree documents the early rise of flowering plant phylogenetic diversity. New Phytologist 2015, 207:437-453.
Meredith R.W., Janecka J.E., Gatesy J., Ryder O.A., Fisher C.A., Teeling E.C., Goddbla A., Eizirik E., Simao T.L.L., Stadler T., Rabosky D.L., Honeycutt R.L., Flynn J.J., Ingram C.M., Steiner C., Williams T.L., Robinson T.J., Burk-Herrick A., Westermann M., Ayoub N.A., Springer M.S., Murphy W.J. Impacts of the Cretaceous Terrestrial Revolution and KPg extinction on mammal diversification. Science 2011, 334:521-524.
Misof B., Liu S., Meusemann K., Peters R.S., Donath A., Mayer C., Frandsen P.B., Ware J., Flouri T., Beutel R.G., Niehuis O., Petersen M., Izquierdo-Carrasco F., Wappler T., Rust J., Aberer A.J., Aspöck U., Aspöck H., Bartel D., Blanke A., Berger S., Böhm A., Buckley T.R., Calcott B., Chen J., Friedrich F., Fukui M., Fujita M., Greve C., Grobe P., Gu S., Huang Y., Jermiin L.S., Kawahara A.Y., Krogmann L., Kubiak M., Lanfear R., Letsch H., Li Y., Li Z., Li J., Lu H., Machida R., Mashimo Y., Kapli P., McKenna D.D., Meng G., Nakagaki Y., Navarrete-Heredia J.L., Ott M., Ou Y., Pass G., Podsiadlowski L., Pohl H., von Reumont B.M., Schütte K., Sekiya K., Shimizu S., Slipinski A., Stamatakis A., Song W., Su X., Szucsich N.U., Tan M., Tan X., Tang M., Tang J., Timelthaler G., Tomizuka S., Trautwein M., Tong X., Uchifune T., Walzl M.G., Wiegmann B.M., Wilbrandt J., Wipfler B., Wong T.K., Wu Q., Wu G., Xie Y., Yang S., Yang Q., Yeates D.K., Yoshizawa K., Zhang Q., Zhang R., Zhang W., Zhang Y., Zhao J., Zhou C., Zhou L., Ziesmann T., Zou S., Li Y., Xu X., Zhang Y., Yang H., Wang J., Wang J., Kjer K.M., Zhou X. Phylogenomics resolves the timing and pattern of insect evolution. Science 2014, 346:763-767.
Moureau C.S., Bell C.D., Vila R., Archibald S.B., Pierce N.E. Phylogeny of the ants: diversification in the age of angiosperms. Science 2006, 312:101-194.
R Developmental Core Team R: A Language and Environment for Statistical Computing 2014, R Foundation for Statistical Computing, Vienna, Austria. http://www.R-project.org/.
Rothwell G.W., Scheckler S.E., Gillespie W.H. Elkinsia gen. nov., a Late Devonian gymnosperm with cupulate ovules. Botanical Gazette 1989, 150:170-189.
Sanderson M.J. Back to the past: a new take on the timing of flowering plant diversification. New Phytologist 2015, 207:257-259.
Schneider H., Schuettpelz E., Pryer K.M., Cranfill R., Magallón S., Lupia R. Ferns diversified in the shadow of angiosperms. Nature 2004, 428:553-557.
Seward A.C. Catalogue of the Mesozoic Plants in the Department of Geology, British Museum (Natural History). The Jurassic Flora. II. Liassic and Oolitic floras of England (excluding the Inferior Oolite plants of the Yorkshire coast) 1904, Bristish Museum (Natural History), London.
Smith S.A., Beaulieu J.M., Donoghue M.J. An uncorrelated relaxed-clock analysis suggests an earlier origin for flowering plants. Proceedings of the National Academy of Sciences USA 2010, 107:5897-5902.
Smith A.B., Lloyd G.T., McGowan A. Phanerozoic marine diversity: rock record modelling provides an independent test of large-scale trends. Proceedings of the Royal Society B 2012, 282:1814.
Wang X. Schmeissneria: an angiosperm from the Early Jurassic. Journal of Systematics and Evolution 2010, 48:326-335.
Wang X. The Dawn Angiosperms: Uncovering the Origin of Flowering Plants 2010, (Lecture Notes in Earth Sciences), Springer, Berlin.
Wang X., Wang S.J. Xingxueanthus: an enigmatic Jurassic seed plant and its implications for the origin of angiospermy. Acta Geologica Sinica - English Edition 2010, 84:47-55.
Wang X., Duan S.Y., Geng B.Y., Cui J.Z., Yang Y. Schmeissneria: a missing link to angiosperms?. BMC Evolutionary Biology 2007, 7:14.
Wang H., Moore M.J., Soltis P.S., Bell C.D., Brockington S.F., Alexandre R., Davis C.C., Latvis M., Manchester S.R., Soltis D.E. Rosid radiation and the rapid rise of angiosperm-dominated forests. Proceedings of the National Academy of Sciences USA 2009, 106:3853-3858.
Wellman C.H., Strother P. The terrestrial biota prior to the origin of land plants (embryophytes): a review of the evidence. Palaeontology 2015, 58:601-627.
Wikström N., Savolainen V., Chase M.W. Evolution of the angiosperms: calibrating the family tree. Proceedings of the Royal Society B 2001, 268:2211-2220.
Xing Y., Onstein R.E., Carter R.J., Stadler T., Linder H.P. Fossils and a large molecular phylogeny show that the evolution of species richness, generic diversity and turnover rates are disconnected. Evolution 2014, 68:2821-2832.
Zheng L., Zhang Q., Sun R., Kong H., Zhang N., Ma H. Resolution of deep angiosperm phylogeny using conserved nuclear genes and estimates of early divergence times. Nature Communications 2014, 5:4956.