[1] | Labandeira CC (2013) A paleobiologic perspective on plant-insect interactions. Curr Opin Plant Biol 16: 414–421. doi: 10.1016/j.pbi.2013.06.003
|
[2] | Wedmann S, Bradler S, Rust J (2007) The first fossil leaf insect: 47 million years of specialized cryptic morphology and behavior. PNAS 104: 565–569. doi: 10.1073/pnas.0606937104
|
[3] | Buckley TR, Attanayake D, Bradler S (2009) Extreme convergence in stick insect evolution: phylogenetic placement of the Lord Howe Island tree lobster. Proc Roy Soc B 276: 1055–1062. doi: 10.1098/rspb.2008.1552
|
[4] | Sharov AG (1968) Filogeniya orthopteroidnykh nasekomykh. Tr Paleontol Inst, Akad Nauk SSSR 118: 1–216.
|
[5] | Sharov AG (1971) Phylogeny of the Orthopteroidea; Theodor O, editor. Jerusalem: Israel Program for Scientific Translations. vi+251 p.
|
[6] | Kukalová-Peck J (1991) Fossil History and the Evolution of Hexapod Structures. In: Naumann ID, Crane PB, Lawrence JF, Nielsen ES, Spradbery JP et al.., editors. The Insects of Australia, a textbook for students and researchers. 2nd ed. Melbourne: Melbourne University Press. pp. 141–179.
|
[7] | Gorochov AV (1994) Permian and Triassic walking sticks (Phasmoptera) from Eurasia. Pal J 28: 83–98.
|
[8] | Carpenter FM (1992) Superclass Hexapoda. In: Kaesler RL, editor. Treatise on Invertebrate Paleontology. Boulder: The Geological Society of America and the University of Kansas. pp. xxii+655.
|
[9] | Gorochov AV (1993) Fossil stick-insects (Phasmoptera) from Jurassic and Cretaceous [in Russian]. Tr Paleontol Inst, Akad Nauk SSSR 252: 112–116.
|
[10] | Hennig W (1981) Insect Phylogeny; Pont AC, editor. New York: Wiley & Sons. xxii+514 p.
|
[11] | Tilgner E (2000) The fossil record of Phasmida (Insecta: Neoptera). Insect Syst Evol 31: 473–480. doi: 10.1163/187631200x00507
|
[12] | Ren D (1997) First record of fossil stick-insects from China with analyses of some palaeobiological features (Phasmatodea: Hagiphasmatidae fam. nov.). Acta Zootax Sin 22: 268–282.
|
[13] | Kuzmina SA (1985) New orthopterans of the family Phasmomimidae from the Lower Cretaceous of Transbaikalia. Pal J 19: 56–63.
|
[14] | Gorochov AV (1988) O klassifikatzii iskapaemykh priamokrylykh nadsemieistva Phasmomimoidea (Orthoptera) s apicaniem novykh taksonof. P Zool Inst, Russ Acad Sc 178: 32–44.
|
[15] | Gorochov AV (2000) Phasmomimidae: are they Orthoptera or Phasmatoptera? Pal J 34: 295–300.
|
[16] | Delclòs X, Nel A, Azar D, Bechly G, Dunlop JA, et al. (2008) The enigmatic Mesozoic insect taxon Chresmodidae (Polyneoptera): New palaeobiological and phylogenetic data, with the description of a new species from the Lower Cretaceous of Brazil. N Jb Geol Pal?ont, Abh 247: 353–381. doi: 10.1127/0077-7749/2008/0247-0353
|
[17] | Nel A, Delfosse E, Robillard T, Petrulevi?ius JF (2010) An early winged crown group stick insect from the Early Eocene amber of France (Insecta, Phasmatodea). Syst Ent 40: 31–36. doi: 10.1111/j.1365-3113.2009.00515.x
|
[18] | Bradler S, Buckley TR (2011) Stick insect on unsafe ground: does a fossil from the early Eocene of France really link Mesozoic taxa with the extant crown group of Phasmatodea. Syst Ent 36: 218–222. doi: 10.1111/j.1365-3113.2010.00564.x
|
[19] | Nel A, Delfosse E (2011) A new Chinese Mesozoic stick insect. Acta Pal Pol 56: 429–432. doi: 10.4202/app.2009.1108
|
[20] | Tilgner EH, Kiselyova TG, McHugh JV (1999) A morphological study of Timema cristinae Vickery with implications for the phylogenetics of Phasmida. D Entomol Z 46: 149–162. doi: 10.1002/mmnd.19990460203
|
[21] | Bradler S (2009) Die Phylogenie der Stab- und Gespentschrecken (Insecta: Phasmatodea). Species, Phylogeny & Evol 2: 3–139.
|
[22] | Bradler S (1999) The vomer of Timema Scudder, 1895 (Insecta: Phasmatodea) and its significance for phasmatodean phylogeny. Cour Forsch-Inst Senckenberg 215: 43–47.
|
[23] | Shang L, Béthoux O, Ren D (2011) New stem-Phasmatodea from the Middle Jurassic of China. Eur J Entomol 108: 677–685. doi: 10.14411/eje.2011.086
|
[24] | Chang S, Zhang H, Renne PR, Fang Y (2009) High-precision 40Ar/39Ar age for the Jehol Biota. Palaeogeogr Palaeoclimatol Palaeoecol 280: 94–104. doi: 10.1016/j.palaeo.2009.06.021
|
[25] | Béthoux O (2009) Gaps and nodes between fossil and extant insects. Syst Ent 34: 599–609. doi: 10.1111/j.1365-3113.2009.00484.x
|
[26] | Ragge DR (1955) The wing-venation of the order Phasmida. Trans R Entomol Soc London 106: 375–392. doi: 10.1111/j.1365-2311.1955.tb01272.x
|
[27] | Zeuner FE (1939) Fossil Orthoptera Ensifera. London: British Museum (Natural History). xiv+321+plates volume p.
|
[28] | Béthoux O, Nel A (2001) Venation pattern of Orthoptera. J Orthopt Res 10: 195–198. doi: 10.1665/1082-6467(2001)010[0195:vpoo]2.0.co;2
|
[29] | Béthoux O, Nel A (2002) Venation pattern and revision of Orthoptera sensu nov. and sister groups. Phylogeny of Palaeozoic and Mesozoic Orthoptera sensu nov. Zootaxa 96: 1–88.
|
[30] | Gorochov AV (2005) Review of Triassic Orthoptera with descriptions of new and little known taxa. Part 1. Pal J 39: 178–186.
|
[31] | Béthoux O (2007) Archaeorthoptera wing venation nomenclature: a reply to Gorokhov. Pal J 41: 338–340. doi: 10.1134/s0031030107030136
|
[32] | Rasnitsyn AP (2007) On the discussion of the wing venation of (Archae)Orthoptera (Insecta). Pal J 41: 341–344. doi: 10.1134/s0031030107030148
|
[33] | Gorochov AV, Rasnitsyn AP (2002) Superorder Gryllidea Laicharting, 1781 ( = Orthopteroidea Handlirsch, 1903). In: Rasnitsyn AP, Quicke DLJ, editors. History of Insects. Dordrecht: Kluwer Academic Publishers. pp. 293–303.
|
[34] | Béthoux O (2008) Groundplan, nomenclature, homology, phylogeny, and the question of the insect wing venation pattern. Alavesia 2: 219–232.
|
[35] | Béthoux O (2010) Optimality of phylogenetic nomenclatural procedures. Org Div Evol 10: 173–191. doi: 10.1007/s13127-010-0005-3
|
[36] | Redtenbacher J (1906) Phasmidae Areolatae. Die Insektenfamilie der Phasmiden. Leipzig: Wilhelm Engelmann. pp. 1–180.
|
[37] | Grimaldi D, Engel MS (2005) Evolution of the Insects. New York: Cambridge University Press. xv+755 p.
|
[38] | Beier M (1968) Phasmida (Stab- oder Gespenstheuschrecken). In: Helmcke JG, Starck D, Wermuth H, editors. Handbuch der Zoologie. Berlin: Walter de Gruyter. pp. 1–56.
|
[39] | Gottardo M (2011) A new genus and new species of Philippine stick insects (Insecta: Phasmatodea) and phylogenetic considerations. C R Biol 334: 555–563. doi: 10.1016/j.crvi.2011.04.003
|
[40] | Gottardo M, Heller P (2012) An enigmatic new stick insect from the Philippine Islands (Insecta: Phasmatodea). C R Biol 335: 594–601. doi: 10.1016/j.crvi.2012.07.004
|
[41] | Friedmann K, Wipfler B, Bradler S, Beutel RG (2012) On the head morphology of Phyllium and the phylogenetic relationships of Phasmatodea (Insecta). Acta Zool 93: 184–199. doi: 10.1111/j.1463-6395.2010.00497.x
|
[42] | Crampton GC (1916) A comparative study of the maxillae of the Acridiidae (Oedipodinae and Tettiginae), Phasmidae and Phylliidae. Psyche 23: 83–87. doi: 10.1155/1916/92637
|
[43] | Teder T, Tammaru (2005) Sexual size dimorphism within species increases with body size in insects. Oikos 108: 321–334. doi: 10.1111/j.0030-1299.2005.13609.x
|
[44] | Fairbairn DJ (1997) Allometry for sexual size dimorphism: pattern and process in the coevolution of body size in males and females. Ann Rev Ecol Syst 28: 659–687. doi: 10.1146/annurev.ecolsys.28.1.659
|
[45] | Hochkirch A, Gr?ning J (2008) Sexual size dimorphism in Orthoptera (sens. str.) - a review. J Orthopt Res 17: 189–196. doi: 10.1665/1082-6467-17.2.189
|
[46] | Sivinski J (1978) Intrasexual aggression in the stick insects Diapheromera veliei and D. covilleae and sexual dimorphism in the Phasmatodea. Psyche 85: 395–406. doi: 10.1155/1978/35784
|
[47] | Honěk A (1993) Intraspecific variation in body size and fecundity in insects: a general relationships. Oikos 66: 483–492. doi: 10.2307/3544943
|
[48] | Blanckenhorn WU (2000) The evolution of body size: what keeps organisms small? Q Rev Biol 75: 385–407. doi: 10.1086/393620
|
[49] | Thornhill R, Alcock J (1983) The evolution of insect mating systems. Cambridge, USA: Harvard University. xi+547 p.
|
[50] | Alcock J (1994) Postinsemination associations between males and females in insects: the mate-guarding hypothesis. Ann Rev Entomol 39: 1–21. doi: 10.1146/annurev.en.39.010194.000245
|
[51] | Whiting MF, Bradler S, Maxwell T (2003) Loss and recovery of wings in stick insects. Nature 421: 264–267. doi: 10.1038/nature01313
|
[52] | Zhou Z, Barrett PM, Hilton J (2003) An exceptionnally preserved Lower Cretaceous ecosystem. Nature 421: 807–814. doi: 10.1038/nature01420
|
[53] | Bedford GO (1978) Biology and ecology of Phasmatodea. Ann Rev Entomol 23: 125–149. doi: 10.1146/annurev.en.23.010178.001013
|
[54] | Sun G, Zheng S-l, Dilcher DL, Wang Y-d, Mei S-w (2001) Early Angiosperms and their associated plants from Western Liaoning, China. Shanghai, China: Shanghai Scientific and Technological Education Publishing House. 227 p.
|
[55] | Zhou Z (2009) An overview of fossil Ginkgoales. Palaeoworld 18: 1–22. doi: 10.1016/j.palwor.2009.01.001
|
[56] | Mohanta TK, Occhipinti A, Zebelo SA, Foti M, Fliegmann J, et al. (2012) Ginkgo biloba responds to herbivory by activating early signaling and direct defenses. PLoS One 7: 1–14. doi: 10.1371/journal.pone.0032822
|
[57] | Scott AC, Anderson JM, Anderson HM (2004) Evidence of plant-insect interactions in the Upper Triassic Molteno Formation of South Africa. J Geol Soc, London 161: 401–410. doi: 10.1144/0016-764903-118
|
[58] | Doyle JA (2006) Seed ferns and the origin of angiosperms. J Torrey Bot Soc 133: 169–209. doi: 10.3159/1095-5674(2006)133[169:sfatoo]2.0.co;2
|
[59] | Crespi BJ, Sandoval CP (2000) Phylogenetic evidence for the evolution of ecological specialization in Timema walking-sticks. J Evol Biol 13: 249–262. doi: 10.1046/j.1420-9101.2000.00164.x
|
[60] | Zhou Z, Zhang F (2007) Mesozoic birds of China—a synoptic review. Front Biol China 2: 1–14. doi: 10.1007/s11515-007-0001-y
|
[61] | Meng J, Hu Y, Li C, Wang Y (2006) The mammal fauna in the Early Cretaceous Jehol Biota: implications for diversity and biology of Mesozoic mammals. Geol J 41: 439–463. doi: 10.1002/gj.1054
|
[62] | Wang Y, Labandeira CC, Shih C, Ding Q, Wang C, et al. (2012) Jurassic mimicry between a hangingfly and a ginkgo from China. PNAS 109: 20514–20519. doi: 10.1073/pnas.1205517109
|
[63] | Wang Y, Liu Z, Wang X, Shih C, Zhao Y, et al. (2010) Ancient pinnate leaf mimesis among lacewings. PNAS 107: 16212–16215. doi: 10.1073/pnas.1006460107
|
[64] | Wedmann S (2010) A brief overview of the fossil history of plant masquerade by insects. Palaeontogr Abt B 283: 175–182.
|