Amelunxen, 1967, Untersuchungen an der Epidermis mit dem Stereoscan-Elektronenmikroskop, Pflanzenphysiologie, 57, 79
Anton, 1994, Mechanisms of deposition of epicuticular wax in leaves of broccoli, Brassica oleracea L. var. Capitata L., New Phytol., 26, 505, 10.1111/j.1469-8137.1994.tb04248.x
Baker, 1974, The influence of environment on leaf wax development in Brassica oleracea var. gemmifera, New Phytol., 73, 955, 10.1111/j.1469-8137.1974.tb01324.x
Baker, 1982, Chemistry and morphology of plant epicuticular waxes, 139
Barnes, 1996, Interactions between electromagnetic radiation and the plant cuticle, 157
Bargel, 2005, Tomato Lycopersicon esculentum Mill. fruit growth and ripening as related to the biomechanical properties of fruit skin and isolated cuticle, J. Exp. Bot., 56, 1049, 10.1093/jxb/eri098
Bargel, 2006, Structure-function relationships of the plant cuticle and cuticular waxes—a smart material? Functional Plant Biology, Evans Rev. No. 3, 893
Bargel, 2006, Altered tomato Lycopersicon esculentum Mill. fruit cuticle biomechanics of the non-ripening nor mutant during maturation, 549
Barthlott, 1997, Purity of the sacred lotus or escape from contamination in biological surfaces, Planta, 202, 1, 10.1007/s004250050096
Barthlott, 1981, Zur Feinstruktur, Chemie und taxonomischen Signifikanz epicuticularer Wachse und ähnlicher Sekrete, Tropische und subtropische Pflanzenwelt, 32, 7
Barthlott, 1998, Classification and terminology of plant epicuticular waxes, J. Linnean Soc., 126, 137
Barthlott, 2003, Epicuticular waxes and vascular plant systematics: integrating micromorphological and chemical data, 189
Benyus, 1997
Bhushan, 2006, Micro- and nanoscale characterization of hydrophobic and hydrophilic leaf surfaces, Nanotechnology, 17, 2758, 10.1088/0957-4484/17/11/008
Bhushan, 2006, Surface characterization and adhesion and friction properties of hydrophobic leaf surfaces, Ultramicroscopy, 106, 119
Boden, 1992, Self-assembly and self-organization in micellar liquid crystals
Buchholz, 2000, Thermodynamic analysis of diffusion of non-electrolytes across plant cuticles in the presence and absence of the plasticiser tributyl phosphate, Planta, 212, 103, 10.1007/s004250000372
Burghardt, M., Riederer, M., 2006. Cuticular transpiration. In: Riederer, M., Müller, C. (Eds.), Biology of the plant cuticle. Blackwell Pub. Annu. Plant Rev. 23, pp. 292–309.
Cameron, 2006, Increased accumulation of cuticular wax and expression of lipid transfer protein in response to periodic drying events in leaves of tree tobacco, Plant Physiol., 140, 176, 10.1104/pp.105.069724
Chamel, 1991, Quantitative determination of water sorption by plant cuticles, Plant, Cell Environ., 14, 87, 10.1111/j.1365-3040.1991.tb01374.x
Chibnall, 1934, The constitution of the primary alcohols, fatty acids and paraffins present in plant and insect waxes, Biochem. J., 28, 2189, 10.1042/bj0282189
Collings, 1997
Cowley, J.M., Goodman, P., Vainshtein, B.K., Zvyagin, B.B., Dorset, D. L., 2006. Electron diffraction and electron microscopy in structure determination. In: International Tables for Crystallography, vol. B, pp. 276–345 (Chapter 2.5).
Craver, T.L.W., Gurr, S.J., 2006. Filamentous fungi on plant surfaces. In: Riederer, M., Müller, C. (Eds.), Biology of the plant cuticle. Blackwell Pub. Annu. Plant Rev. 23, pp. 306–392.
de Bary, A., 1871. Ueber die Wachsüberzüge der Epidermis. Botanische Zeitschrift 29, pp. 128–139, 145–154, 161–176, 566–571, 573–585, 605–619.
De Feyter, 2005, Self-assembly at the liquid/solid interface: STM reveals, J. Phys. Chem. B, 109, 4290, 10.1021/jp045298k
Ditsch, 1997, Mikromorphologie der Epicuticularwachse und das System der Dilleniidae und Rosidae, Tropische und subtropische Pflanzenwelt, 97, 1
Dorset, 1985, Crystal structure of n-paraffin solid solutions: an electron diffraction study, Macromolecules, 18, 2158, 10.1021/ma00153a016
Dorset, 1993, Symmetry and the stability of binary solid solution of linear molecules, Acta Chim. Hung., Models Chem., 130, 389
Dorset, 1995, The crystal structure of waxes, Acta Crystallogr., B51, 1021, 10.1107/S0108768195005465
Dorset, 1997, Crystallography of waxes—an electron diffraction study of refined and natural products, J. Phys. D: Appl. Phys., 30, 451, 10.1088/0022-3727/30/3/018
Dorset, 1999, Development of lamellar structures in natural waxes—an electron diffraction investigation, J. Phys.: D: Appl. Phys., 32, 1276, 10.1088/0022-3727/32/11/315
Dorset, 1983, Epitaxial crystallization of alkane chain lipids for electron diffraction analysis, J. Biochem. Biophys. Methods, 8, 29, 10.1016/0165-022X(83)90018-0
Edelmann, 2005, Influence of hydration and temperature on the rheological properties of plant cuticles and their impact on plant organ integrity, J. Plant Growth Regul., 24, 116, 10.1007/s00344-004-0015-5
Ensikat, 2000, Direct access to plant epicuticular wax crystals by a new mechanical isolation method, Int. J. Plant Sci., 161, 143, 10.1086/314234
Ensikat, 2006, Crystallinity of plant epicuticular waxes: electron and X-ray diffraction studies, Chem. Phys. Lipids, 144, 45, 10.1016/j.chemphyslip.2006.06.016
Fröhlich, 1988, Mikromorphologie der epicuticularen Wachse und das System der Monokotylen, Tropische und subtropische Pflanzenwelt, 63, 279
Gomez-Campo, 1999, Epicuticular wax columns in cultivated Brassica species and in their close wild relatives, Ann. Bot., 83, 515, 10.1006/anbo.1999.0849
Haas, 2001, Epicuticular wax crystalloids in rice and sugar cane leaves are reinforced by polymeric aldehydes, J. Appl. Bot. -Angew. Botanik, 75, 178
Hallam, 1964, Sectioning and electron microscopy of Eucalypt leaf waxes, Aust. J. Biol. Sci., 17, 587, 10.1071/BI9640587
Hallam, N.D., 1967. An electron microscope study of the leaf waxes of the genus Eucalyptus L’Heritier, PhD, University of Melbourne.
Hallam, 1971, The anatomy of the leaf surface, 3
Hamilton, 1996, Commercial waxes: their composition and applications, 257
Hennig, 1994, Mikromorphologie der Epicuticularwachse und die Systematik der Magnoliidae. Ranunculidae und Hamamelididae, Tropische und subtropische Pflanzenwelt, 90, 5
Holloway, 1982, Structure and histochemistry of plant epicuticular membranes: an overview, 1
Holloway, 1994, Plant cuticles: physicochemical characteristics and biosynthesis, 1
Holloway, 1976, Structural determination of secondary alcohols from plant epicuticular waxes, Phytochemistry, 15, 1768, 10.1016/S0031-9422(00)97477-6
Holmes, 2002, Effects of pubescence and waxes on the reflectance of leaves in the ultraviolet and photosynthetic wavebands: a comparison of a range of species, Plant, Cell Environ., 25, 85, 10.1046/j.1365-3040.2002.00779.x
Hunsche, 2007, Mancozeb wash-off from apple seedlings by simulated rainfall as affected by drying time of fungicide deposit and rain characteristics, Crop Prot., 26, 768, 10.1016/j.cropro.2006.07.003
International Union of Crystallography, 1992. Report of the Executive Committee for 1991. Acta Crystalogr. A 48, pp. 922–946.
Jeffree, 2006, The fine structure of the plant cuticle, 11
Jeffree, 1975, Ultrastructure and recrystallization of plant epicuticular waxes, New Phytol., 75, 539, 10.1111/j.1469-8137.1975.tb01417.x
Jeffree, 1976, Origins of the fine structure of plant epicuticular waxes, 119
Jetter, 1994, Epicuticular crystals of nonacosan-10-ol: in vitro reconstitution and factors influencing crystal habits, Planta, 195, 257, 10.1007/BF00199686
Jetter, 1995, In vitro reconstitution of epicuticular wax crystals. Formation of tubular aggregates by alkanediols, Botanica Acta, 108, 111, 10.1111/j.1438-8677.1995.tb00840.x
Jetter, 1999, Homologous long-chain delta-lactones in leaf cuticular waxes of Cerinthe minor, Phytochemistry, 50, 1359, 10.1016/S0031-9422(98)00369-0
Jetter, 2001, Chemical composition of the Prunus laurocerasus leaf surface. Dynamic changes of the epicuticular wax film during leaf development, Plant Physiol., 126, 1725, 10.1104/pp.126.4.1725
Jetter, 1996, The effects of dry O3, SO2 and NO2 on reconstituted epicuticular wax tubules, New Phytol., 133, 207, 10.1111/j.1469-8137.1996.tb01887.x
Jetter, 2000, Leaf cuticular waxes are arranged in chemically and mechanically distinct layers: evidence from Prunus laurocerasus L., Plant, Cell Environ., 23, 619, 10.1046/j.1365-3040.2000.00581.x
Jetter, 2006, Composition of plant cuticular waxes, 145
Johnson, 1970, Negative stain in wax tubes from the surface of Sitka spruce leaves, Planta, 95, 179, 10.1007/BF00387249
Kenrick, 1997, The origin and early evolution of plants on land, Nature, 389, 33, 10.1038/37918
Kerstiens, 1996, Cuticular water permeability and its physiological significance, J. Exp. Bot., 47, 1813, 10.1093/jxb/47.12.1813
Kobayashi, 1993, Lattice images and molecular images of organic materials, J. Mater. Chem., 3, 1, 10.1039/jm9930300001
Koch, 2006, Structural analysis of wheat wax Triticum aestivum c.v. ‘Naturastar’ L.: from the molecular level to three dimensional crystals, Planta, 223, 258, 10.1007/s00425-005-0081-3
Koch, 2006, Influence of air humidity on epicuticular wax chemical composition, morphology and wettability of leaf surfaces, Environ. Exp. Bot., 56, 1, 10.1016/j.envexpbot.2004.09.013
Koch, 2006, Chemistry and crystal growth of plant wax tubules of Lotus Nelumbo nucifera and Nasturtium Tropaeolum majus leaves on technical substrates, Cryst. Growth Des., 6, 2571, 10.1021/cg060035w
Koch, 2004, Self assembly of epicuticular waxes on plant surfaces investigated by Atomic Force Microscopy (AFM), J. Exp. Bot., 55, 711, 10.1093/jxb/erh077
Koch, 2007, The use of plant waxes as templates for micro- and nanopatterning of surfaces, Acta Biomater., 3, 905, 10.1016/j.actbio.2007.05.013
Kolattukudy, 1980, Biopolyester membranes of plants: cutin and suberin, Science, 208, 990, 10.1126/science.208.4447.990
Kolattukudy, 2001, Polyesters in higher plants, 4
Kreger, 1948, An X-ray study of waxy coating from plants, Recueil des Traveaux botaniques Neerlandais, 42, 606
Kunst, 2003, Biosynthesis and secretion of plant cuticular wax, Prog. Lipid Res., 42, 51, 10.1016/S0163-7827(02)00045-0
Larsson, 1994
Leveau, 2006, Microbial communities in the phyllosphere, 334
Malkin, 1952, The molecular structure and polymorphism of fatty acids and their derivates, Prog. Chem. Fats Other Lipids, 1, 1, 10.1016/0079-6832(52)90003-7
Marmur, 2003, Wetting on hydrophobic rough surfaces: to be heterogeneous or not to be?, Langmuir, 19, 8343, 10.1021/la0344682
Matas, 2004, Biomechanics and anatomy of Lycopersicon esculentum fruit peels and enzyme-treated samples, Am. J. Bot., 91, 352, 10.3732/ajb.91.3.352
Mazliak, 1968, Chemistry of plant cuticles, vol. 1, 49
Meldrum, 2007, Template-directed control of crystal morphologies, Macromol. Biosci., 7, 152, 10.1002/mabi.200600191
Merk, 1998, Phase behaviour and crystallinity of plant cuticular waxes studied by Fourier transform infrared spectroscopy, Planta, 204, 44, 10.1007/s004250050228
Meusel, 1999, Ultrastructure, chemical composition and recrystallization of epicuticular waxes: transversely ridged rodlets, Can. J. Bot., 77, 706
Meusel, 2000, Chemical composition and recrystallization of epicuticular waxes: coiled rodlets and tubules, Plant Biol., 2, 1, 10.1055/s-2000-5961
Müller, 2006, Plant-insect interactions on cuticular surfaces, 306
Neinhuis, 1997, Characterisation and distribution of water-repellent, self-cleaning plant surfaces, Ann. Bot., 79, 667, 10.1006/anbo.1997.0400
Nosonovsky, 2007, Hierarchical roughness makes superhydrophobic states stable, Microelectr. Eng., 84, 382, 10.1016/j.mee.2006.10.054
Oehme, 1998
Petracek, 1995, Rheological properties of enzymatically isolated tomato fruit cuticle, Plant Physiol., 109, 675, 10.1104/pp.109.2.675
Pfündel, 2006, Optical properties of plant surfaces, 216
Piper, 1931, Synthesis and crystal spacings of certain long-chain paraffins, ketones and secondary alcohols, Biochem. J., 25, 2072, 10.1042/bj0252072
Popp, 2005, Characterization of hydrophilic and lipophilic pathways of Hedera helix L. cuticular membranes: permeation of water and uncharged organic compounds, J. Exp. Bot., 56, 2797, 10.1093/jxb/eri272
Rastogi, 2002, Time-resolved WAXD and SAXS investigations on butyl branched alkane at elevated pressures, Macromolecules, 35, 5861, 10.1021/ma012078l
Reynhardt, 1994, Structures and molecular dynamics of plant waxes. II. Cuticular waxes from leaves of Fagus sylvatica L. and Hordeum vulgare L., Eur. Biophys. J., 23, 59
Riedel, 2003, Slippery surfaces of carnivorous plants: composition of epicuticular wax crystals in Nepenthes alata Blanco pitchers, Planta, 218, 87, 10.1007/s00425-003-1075-7
Riedel, 2007, Chemical composition of epicuticular wax crystals on the slippery zone in pitchers of five Nepenthes species and hybrids, Planta, 225, 1517, 10.1007/s00425-006-0437-3
Riederer, 1996, Cuticular waxes: a critical assessment of current knowledge, 189
Riederer, 2006
Riederer, 1990, The effect of the environment on the permeability and composition of Citrus leaf cuticles. II. Composition of soluble cuticular lipids and correlation with transport properties, Planta, 180, 54, 10.1007/BF00193990
Riederer, 1995, Waxes—the transport barriers of plant cuticles, 131
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
Robards, 1993, Low-dose microscopy (Module 9:7)
Schaper, 2006, Electron microscopy and diffraction of radiation-sensitive nanostructured materials, J. Microsc., 223, 88, 10.1111/j.1365-2818.2006.01603.x
Schönherr, 1982, Resistance of plant surface to water loss: transport properties of cutin, suberin and associated lipids, 153
Schönherr, 2000, Calcium chloride penetrates plant cuticles via aqueous pores, Planta, 212, 112, 10.1007/s004250000373
Schönherr, 2001, Cuticular penetration of calcium salts: effects of humidity, anions, and adjuvants, J. Plant Nutr., 164, 225, 10.1002/1522-2624(200104)164:2<225::AID-JPLN225>3.0.CO;2-N
Schönherr, 2002, A mechanistic analysis of penetration of glyphosate salts across astomatous cuticular membranes, Pest Manage. Sci., 58, 343, 10.1002/ps.462
Schönherr, 2006, Characterization of aqueous pores in plant cuticles and permeation of ionic solutes, J. Exp. Bot., 57, 2471, 10.1093/jxb/erj217
Schreiber, 2005, Polar paths of diffusion across plant cuticles: new evidence for an old hypothesis, Ann. Bot., 95, 1069, 10.1093/aob/mci122
Schreiber, 2006, Characterization of polar paths of transport in plant cuticles, 280
Schreiber, 1997, 2H NMR study of cuticular wax isolated from Hordeum vulgare L. leaves: identification of amorphous and crystalline wax phases, Eur. Biophys. J., 26, 371, 10.1007/s002490050091
Shepherd, 2006, The effects of stress on plant cuticular waxes, New Phytol., 171, 469, 10.1111/j.1469-8137.2006.01826.x
Thair, 1975, The distribution and fine structure of the epicuticular leaf wax of Pseudotsuga menziezii, Can. J. Bot., 53, 1063, 10.1139/b75-124
Tulloch, 1974, Epicuticular waxes of Secale cereale and Triticale hexaploide leaves, Phytochemistry, 13, 2535, 10.1016/S0031-9422(00)86932-0
Typke, 2004, Electron microscopy of biological macromolecules: bridging the gap between what physics allows and what we currently can get, Microsc. Microanal. Microstruct., 10, 21, 10.1017/S1431927604040164
Typke, 2007, Stroboscopic image capture: reducing the dose per frame by a factor of 30 does not prevent beam-induced specimen movement in paraffin, Ultramicroscopy, 107, 106, 10.1016/j.ultramic.2006.06.005
Vandenburg, 1970, The structural constituents of carnauba wax, J. Am. Oil Chem. Soc., 47, 514, 10.1007/BF02639240
Vogg, 2004, Tomatoe fruit cuticular waxes and their effects on transpiration barrier properties: functional characterization of a mutant deficient in a very-long-chain fatty acid β-ketoacyl-CoA synthase, J. Exp. Bot., 55, 1401, 10.1093/jxb/erh149
von Rudloff, 1959, The wax of leaves of Picea pungens Colorado spruce, Can. J. Chem., 37, 1038, 10.1139/v59-149
von Wettstein-Knowles, 1974, Ultrastructure and origin of epicuticular wax tubes, J. Ultrastruct. Res., 46, 483, 10.1016/S0022-5320(74)90069-0
Wen, 2007, Nanotubules on plant surfaces: chemical composition of epicuticular wax crystals on needles of Taxus baccata L., Phytochemistry, 67, 1808, 10.1016/j.phytochem.2006.01.018
Whitecross, 1972, Environmental effects on epicuticular waxes of Brassica napus L., Aust. J. Bot., 20, 87, 10.1071/BT9720087
Whitesides, 2002, Beyond molecules: self-assembly of mesoscopic and macroscopic components, Proc. Natl. Acad. Sci. U.S.A., 1998, 4769, 10.1073/pnas.082065899
Wollenweber, 1982, Flavonoid aglycones as costituents of epicuticular layers on ferns, 215
Wollenweber, 1984, The systematic implication of flavonoids secreted by plants, 53
Wollenweber, 1990, On the distribution of exudate flavonoids among angiosperms, Revista Latinoamericana de Quimica, 2, 115
Wollenweber, 2000, Lipophilic exudates of Pteridaceae—chemistry and chemotaxonomy, Biochem. Syst. Ecol., 28, 751, 10.1016/S0305-1978(99)00118-0
Zhang, 2003, Fabrication of novel biomaterials through molecular self-assembly, Nat. Biotechnol., 1171, 10.1038/nbt874
Zhang, 2002, Designing nanobiological materials through self assembly of peptides and proteins, Curr. Opin. Chem. Biol., 6, 865, 10.1016/S1367-5931(02)00391-5
Zhang, 2003