Origin and evolution of the unusual leaf epidermis of Caryodaphnopsis (Lauraceae)

Gang Zeng1,2, Bing Liu1,2, Henk van der Werff3, David K. Ferguson4, Yong Yang1
1State Key Laboratory of Systematic and Evolutionary Botany, Institute of Botany, Chinese Academy of Sciences, 20 Nanxincun, Xiangshan, Beijing 200093, China
2University of Chinese Academy of Sciences, Beijing, China
3Missouri Botanical Garden, P.O. Box 299, St. Louis, MO 63166-0299, USA
4Department of Paleontology, University of Vienna, 1090 Vienna, Austria

Tài liệu tham khảo

Airy Shaw, 1940, Notes on two Asiatic genera of Lauraceae, Kew Bull., 1940, 74 Airy Shaw, 1960, A new species of Caryodaphnopsis (Lauraceae), Kew Bull., 1960, 250, 10.2307/4114801 Avita, 1981, Stomatal complex in Lauraceae: structure and ontogeny, Acta Bot. Ind., 9, 50 Aymard, 2009, Caryodaphnopsis fieldii (Lauraceae), a new species from the Coastal Cordillera of Venezuela, Novon, 19, 7, 10.3417/2007043 Bandulska, 1926, On the cuticles of some fossil and recent Lauraceae, Bot. J. Linn. Soc., 47, 383, 10.1111/j.1095-8339.1926.tb00517.x Barthlott, 1998, Classification and terminology of plant epicuticular waxes, Bot. J. Linn. Soc., 126, 237, 10.1111/j.1095-8339.1998.tb02529.x Baruah, 2006, Leaf anatomy and essential oil characters of Cinnamomum pauciflorum Nees – a potential spice crop from North-East India, J. Spices Aromat. Crops, 15, 52 Carpenter, 2005, Stomatal architecture and evolution in basal angiosperms, Am. J. Bot., 92, 1595, 10.3732/ajb.92.10.1595 Carpenter, 2006, Specialized structures in the leaf epidermis of basal angiosperms: morphology, distribution, and homology, Am. J. Bot., 93, 665, 10.3732/ajb.93.5.665 Chanderbali, 2001, Phylogeny and historical biogeography of Lauraceae: evidence from the chloroplast and nuclear genomes, Ann. Mo. Bot. Gard., 88, 104, 10.2307/2666133 Christophel, 1996, The use of cuticular features in the taxonomy of the Lauraceae, Ann. Mo. Bot. Gard., 83, 419, 10.2307/2399871 Christophel, 1996, 5 Cutter, 1971, 343 De Boer, 2012, A critical transition in leaf evolution facilitated the Cretaceous angiosperm revolution, Nat. Commun., 3, 1221, 10.1038/ncomms2217 Dilcher, 1963, Cuticular analysis of Eocene leaves of Ocotea obtusifolia, Am. J. Bot., 50, 1, 10.2307/2439856 Edwards., 1990, The stomatal complex of Persea borbonia, Can. J. Bot., 68, 2543, 10.1139/b90-320 Edwards, 1998, Stomata in early land plants: an anatomical and ecophysiological approach, J. Exp. Bot., 49, 255, 10.1093/jxb/49.Special_Issue.255 Esau, 1977 Franks, 2009, Maximum leaf conductance driven by CO2 effects on stomatal size and density over geologic time, Proc. Natl. Acad. Sci. U.S.A., 106, 10343, 10.1073/pnas.0904209106 Gan, 2010, Stomatal clustering, a new marker for environmental perception and adaptation in terrestrial plants, Bot. Stud., 51, 325 Gray, 1985, The microfossil record of early land plants: advances in understanding of early terrestrialization, 1970–1984, Philos. Trans. R. Soc. Lond. B: Biol. Sci., 309, 167, 10.1098/rstb.1985.0077 Guo, 2010, Micro-morphological characteristics of leaf epidermis under light microscopy and its taxonomic significance in Persea (Lauraceae) from America, Acta Bot. Yunnan., 32, 189, 10.3724/SP.J.1143.2010.10004 Hassin, 1998, Comparative leaf anatomical studies of some Sterculia L. species (Sterculiaceae), Bot. J. Linn. Soc., 127, 159 Haworth, 2008, Hot, dry, wet, cold or toxic? Revisiting the ecological significance of leaf and cuticular micromorphology, Palaeogeogr. Palaeoclimat. Palaeoecol., 262, 79, 10.1016/j.palaeo.2008.02.009 Hill, 1998, Fossil evidence for the onset of xeromorphy and scleromorphy in Australian Proteaceae, Austr. Syst. Bot., 11, 391, 10.1071/SB97016 Hutchinson, 1964, vol. 1 Jordan, 2008, The evolutionary relations of sunken, covered, and encrypted stomata to dry habitats in Proteaceae, Am. J. Bot., 95, 521, 10.3732/ajb.2007333 Kaul, 1977, The role of the multiple epidermis in foliar succulence of Peperomia (Piperaceae), Bot. Gaz., 138, 213, 10.1086/336917 Kostermans, 1957, Lauraceae, Comm. For. Res. Inst., 57, 1 Kostermans, 1974, A monograph of Caryodaphnopsis Airy Shaw, Reinwardtia, 9, 123 Li, 2011, Molecular phylogenetic analysis of the Persea group (Lauraceae) and its biogeographic implications on the evolution of tropical and subtropical amphi-Pacific disjunctions, Am. J. Bot., 98, 1520, 10.3732/ajb.1100006 Li, 1982, Lauraceae & Hernandiaceae, 1 Li, 1991, Notes on the taxonomy and distribution of the genus Caryodaphnopsis of Lauraceae and to discuss the characteristics of its area-type, Acta Bot. Yunnan., 13, 1 Li, 2008, Caryodaphnopsis Airy Shaw, vol. 7, 225 Liu, 2013, A new species of Caryodaphnopsis Airy Shaw (Lauraceae) from southeastern Yunnan, China, Phytotaxa, 118, 1, 10.11646/phytotaxa.118.1.1 Metcalfe, 1987 Metcalfe, 1979, 276 Mickle, 2011, Scanning electron microscopy studies of cuticle micromorphology in Cycas L. (Cycadaceae), Plant Biosyst., 145, 191, 10.1080/11263504.2010.547675 Nishida, 1999, Leaf anatomy of Beilschmiedia (Lauraceae) in the Neotropics, Nat. Hum. Activit., 4, 9 Nishida, 2006, A comparative study on the anatomy and development of different shapes of domatia in Cinnamomum camphora (Lauraceae), Ann. Bot., 97, 601, 10.1093/aob/mcl009 Nishida, 2007, Are cuticular characters useful in solving generic relationships of problematic of Lauraceae, Taxon, 56, 1229, 10.2307/25065914 Nishida, 2011, An evaluation of classification by cuticular characters of the Lauraceae: a comparison to molecular phylogeny, Ann. Mo. Bot. Gard., 98, 348, 10.3417/2010054 Parolin, 2009, Submerged in darkness: adaptations to prolonged submergence by woody species of the Amazonian floodplains, Ann. Bot., 103, 359, 10.1093/aob/mcn216 Parolin, 2010, Drought responses of flood-tolerant trees in Amazonian floodplains, Ann. Bot., 105, 129, 10.1093/aob/mcp258 Pittermann, 2010, The evolution of water transport in plants: an integrated approach, Geobiology, 8, 112, 10.1111/j.1472-4669.2010.00232.x Raven, 2002, Tansley review no. 131. Selection pressures on stomatal evolution, New Phytol., 153, 371, 10.1046/j.0028-646X.2001.00334.x Retallack, 2004, Eocene–Oligocene extinction and paleoclimatic change near Eugene, Oregon, GSA Bull., 116, 817, 10.1130/B25281.1 Richter, 1981, Anatomie des sekundären Xylems und der Rinde der Lauraceae, Sonderb. Naturwiss. Ver. Hamburg, 5, 1 Riederer, 2001, Protecting against water loss: analysis of the barrier properties of plant cuticles, J. Exp. Bot., 52, 2023, 10.1093/jexbot/52.363.2023 Rohwer, 1993, Lauraceae, 366 Rohwer, 2000, Toward a phylogenetic classification of the Lauraceae: evidence from matK sequences, Syst. Bot., 25, 60, 10.2307/2666673 Rohwer, 2005, Jumping genera: the phylogenetic positions of Cassytha, Hypodaphnis, and Neocinnamomum (Lauraceae) based on different analyses of trnK intron sequences, Ann. Mo. Bot. Gard., 92, 153 Rotondi, 2003, Leaf xeromorphic adaptations of some plants of a coastal Mediterranean macchia ecosystem, J. Mediterr. Ecol., 4, 25 Roth-Nebelsick, 2007, Computer-based studies of diffusion through stomata of different architecture, Ann. Bot., 100, 23, 10.1093/aob/mcm075 Roth-Nebelsick, 2013, Stomatal encryption by epicuticular waxes as a plastic trait modifying gas exchange in a Mediterranean evergreen species (Quercus coccifera L.), Plant Cell Environ., 36, 579, 10.1111/j.1365-3040.2012.02597.x Rudall, 2013, Several developmental and morphogenetic factors govern the evolution of stomatal patterning in land plants, New Phytol., 200, 598, 10.1111/nph.12406 Song, 2003, Observation of leaf epidermis of 15 species shrubs in Helanshan Mountain by SEM, Acta Bot. Boreal.-Occident. Sin., 23, 1283 Tang, 1995, Pollen morphology of the family Lauraceae in China, Acta Phytotax. Sin., 33, 161 van der Merwe, M., Rossetto, M., Weston, P., Crayn, D. A moleculary phylogeny of the Australian Lauraceae reveals encouraging patterns of speciation along a background of aridification. http://www.rbgsyd.nsw.gov.au/science/Evolutionary_Ecology_Research/Lauraceae2. van der Merwe, 1990, Pollen types in the Lauraceae, Grana, 29, 185, 10.1080/00173139009427751 van der Werff, 1986, A new species of Caryodaphnopsis (Lauraceae) from Peru, Syst. Bot., 11, 415, 10.2307/2419077 van der Werff, 1988, Eight new species and one new combination of Neotropical Lauraceae, Ann. Mo. Bot. Gard., 75, 402, 10.2307/2399431 van der Werff, 1991, New species of Lauraceae from Ecuador and Peru, Ann. Mo. Bot. Gard., 78, 409, 10.2307/2399570 van der Werff, 2012, A new species of Caryodaphnopsis (Lauraceae) from Peru, Harv. Pap. Bot., 17, 39, 10.3100/025.017.0108 van der Werff, 2010, Yasunia (Lauraceae), a new genus with two species from Ecuador and Peru, Novon, 20, 493, 10.3417/2010030 van der Werff, 1985, Caryodaphnopsis Airy Shaw (Lauraceae), a genus new to the Neotropics, Syst. Bot., 10, 166, 10.2307/2418342 van der Werff, 1996, Toward an improved classification of Lauraceae, Ann. Mo. Bot. Gard., 83, 409, 10.2307/2399870 Waldhoff, 2003, Leaf structure in trees of Central Amazonian floodplain forests, Amazo, 17, 451 Wang, 2010, Phylogeny of the Southeast Asian endemic genus Neocinnamomum H. Liu (Lauraceae), Plant Syst. Evol., 290, 173, 10.1007/s00606-010-0359-1 Yang, 2012, Leaf cuticular anatomy and taxonomy of Syndiclis (Lauraceae) and its allies, Syst. Bot., 37, 861, 10.1600/036364412X656518 Zamora, 1988, Una nueva especie de Caryodaphnopsis Airy Shaw (Lauraceae) para la region Neotropical, Ann. Mo. Bot. Gard., 75, 1160, 10.2307/2399389 Zhong, 2010, Leaf epidermal features of Machilus (Lauraceae) from China and their systematic significance, J. Trop. Subtrop. Bot., 18, 109 Zhuang, 2002, Leaf epidermis and their taxonomic significance in Machilus of Hong Kong, J. South China Agric. Univ., 23, 52