Architecture of the nervous system in two Dactylopodola species (Gastrotricha, Macrodasyida)
Tóm tắt
Từ khóa
Tài liệu tham khảo
Ax P (2003) Multicellular Animals III. Order in Nature—System made by Man. Springer, Berlin
Breidbach O (1990) Serotonin-immunoreactive brain interneurons persist during metamorphosis of an insect: a developmental study of the brain of Tenebrio molitor L. (Coleoptera). Cell Tissue Res 259:345–360. doi: 10.1007/BF00318458
Breidbach O, Wegerhoff R (1993) FMRFamide-like immunoreactive neurons in the central brain of the beetle Tenebrio molitor: Constancies and variations in development from embryo to adult. Int J Insect Morphol Embryol 23:383–404. doi: 10.1016/0020-7322(94)90033-7
Ehlers U, Ehlers B (1978) Paddle cilia and discocilia—genuine structures? Cell Tissue Res 192:489–501. doi: 10.1007/BF00212328
Grimmelikhuijzen CJP (1983) FMRFamide immunoreactivety is generally occurring in the nervous system of coelenterates. Histochemistry 78:361–381. doi: 10.1007/BF00496623
Harzsch S, Wildt M, Battelle B, Waloszek D (2005) Immunohistochemical localization of neurotransmitter in the nervous system of larval Limulus polyphemus (Chelicerata, Xiphosura): evidence for a conserved protocerebral architecture in Euarthropoda. Arthropod Struct Dev 34:327–342. doi: 10.1016/j.asd.2005.01.006
Hochberg R (2007) Comparative immunohistochemistry of the cerebral ganglion in Gastrotricha: an analysis of FMRFamide-like immunoreactivity in Neodasys cirritus (Chaetonotida), Xenodasys riedli and Turbanella cf. hyalina (Macrodasyida). Zoomophology 126:245–264. doi: 10.1007/s00435-007-0044-2
Hochberg R, Litvaitis MK (2000) Phylogeny of Gastrotricha: a morphology-based framework of gastrotrich relationships. Biol Bull 198:299–305. doi: 10.2307/1542532
Hochberg R, Litvaitis MK (2001a) Macrodasyida (Gastrotricha): a cladistic analysis of morphology. Invertebr Biol 120:124–135. doi: 10.1111/j.1744-7410.2001.tb00116.x
Hochberg R, Litvaitis MK (2001b) The muscular system of Dactylopodola baltica and other macrodasyidan gastrotrichs in a functional and phylogenetic perspective. Zool Scr 30:325–336. doi: 10.1046/j.1463-6409.2001.00066.x
Hochberg R, Livaitis MK (2003) Ultrastructural and immunocytochemical observations of the nervous systems of three macrodasyidan gastrotrichs. Acta Zool 84:171–178. doi: 10.1046/j.1463-6395.2003.00144.x
Horvitz HR, Chalfie M, Trent C, Sulston JE, Evans PD (1982) Serotonin and octopamine in the nematode C. elegans. Science 216:1012–1014. doi: 10.1126/science.6805073
Joffe BI, Kotikova EA (1987) Catecholamines in the nervous system of the gastrotrich Turbanella sp. Dokl Akad Nauk SSSR 296:1509–1511
Joffe BI, Wikgren M (1995) Immunocytochemical distribution of 5-Ht (serotonin) in the nervous system of the gastrotrich Turbanella cornuta. Acta Zool 76:7–9
Kienecke A, Martinez Arbizu P, Ahlrichs WH (2008) Anatomy and ultrastructure of the reproductive organs in Dactylopodola typhle (Gastrotricha: Macrodasyida) and their possible functions in sperm transfer. Invertebr Biol 127:12–32. doi: 10.1111/j.1744-7410.2007.00111.x
Kotikova EA, Raikova OI, Reuter M, Gustafsson MKS (2005) Rotifer nervous system visualized by FMRFamide and 5-Ht immunocytochemistry and confocal laser scanning microscopy. Hydrobiologia 546:239–248. doi: 10.1007/s10750-005-4203-5
Liesenjohann T, Neuhaus B, Schmidt-Rhaesa A (2006) Head sensory organs of Dactylopodola baltica (Macrodasyida, Gastrotricha): a combination of transmission electron microscopical and immunocytochemical techniques. J Morphol 267:897–908. doi: 10.1002/jmor.10419
Liu T, Kim K, Barr MM (2007) FMRFamide-like neuroprptide and mechanosensory touch receptor neurons regulate male sexual turning behavior in Caenorhabditis elegans. J Neurosci 27:7174–7182. doi: 10.1523/JNEUROSCI.1405-07.2007
Lubics A, Reglődi D, Slezák S, Szelier M, Lengvári I (1997) Co-localization of serotonin and FMRFamide-like immunoreactivity in the central nervous system of the earthworm, Eisenia fetida. Acta Histochem 99:459–467
Morris J, Cardona A, Del Mar De Miguel-Bonet M, Hartenstein V (2007) Neurobiology of the basal platyhelminth Macrostomum lignano: map and digital 3D model of the juvenile brain neuropile. Dev Genes Evol 217:569–584. doi: 10.1007/s00427-007-0166-z
Nässl DR (1999) Histamine in the brain of insects: a review. Microsc Res Tech 44:121–136. doi:10.1002/(SICI)1097-0029(19990115/01)44:2/3<121::AID-JEMT6>3.0.CO;2-F
Nässl DR, Holmqvist MH, Hardie RC, Håkanson R, Sundler F (1988) Histamine-like immunoreactivity in photoreceptors of the compound eyes and ocelli of the flies Calliphora erythrocephala and Musca domestica. Cell Tissue Res 253:639–646
Panula P, Eriksson K, Gustafsson M, Reuter M (1995) An immunocytochemical method for histamine: application to the planarians. Hydrobiol 305:291–295. doi: 10.1007/BF00036409
Raikova OI, Reuter M, Jondelius U, Gustafsson MKS (2000) The brain of Nemertodermatida (Platyhelminthes) as revealed by anti-5Ht and anti-FMRFamide immunostainnings. Tissue Cell 32:358–365. doi: 10.1054/tice.2000.0121
Raikova OI, Reuter M, Gustafsson MKS, Maule AG, Halton DW, Jondelius U (2004) Basiepidermal nervous system in Nemertoderma westbladi (Nemertodermatida): GYIRFamide immunoreactivity. Zoology 107:75–86. doi: 10.1016/j.zool.2003.12.002
Reglödi D, Slezák S, Lubic A, Szelier M, Elkes K, Lengvári I (1997) Distribution of FMRFamide-like immunoreactivity in the nervous system of Lumbricus terrestris. Cell Tissue Res 288:575–582. doi: 10.1007/s004410050843
Remane A (1926) Morphologie und Verwandtschaftsbeziehungen der aberranten Gastrotrichen I. Z Morph Ökol Tiere 5:625–754
Remane A (1936). Gastrotricha und Kinorhyncha. In: Bronn`s Kl. Ordn. Tierreichs 4: 1–385
Reuter M, Raikova OI, Gustafsson MKS (2001) Pattern in the nervous and muscle systems in lower flatworms. Belg J Zool 31(Suppl 1):47–53
Rieger RM, Ruppert EE (1978) Resin embedments of quantitative meiofauna samples for ecological and structural studies–description and application. Mar Biol (Berl) 46:223–235. doi: 10.1007/BF00390684
Rothe BH, Schmidt-Rhaesa A (2008) Variation in the nervous system in three species of the genus Turbanella (Gastrotricha, Macrodasyida). Meiofauna Marina 16:175–185
Ruiz-Trillo I, Riutort M, Littlewood DTJ, Herniou EA, Baguña J (1999) Acoel flatworms: earliest extant bilaterian metazoans, not members of Platyhelminthes. Science 283:1919–1923. doi: 10.1126/science.283.5409.1919
Ruppert EE (1982) Comparative ultrastructure of the gastrotrich pharynx and the evolution of myoepithelial foreguts in Aschelminthes. Zoomorphology 99:181–220. doi: 10.1007/BF00312295
Ruppert EE (1991) Gastrotricha. In: Harrison F, Ruppert EE (eds) Microscopic anatomy of invertebrates, vol 4: Aschelminthes. Wiley, New York, pp 41–109
Schmidt-Rhaesa A (2002) Two dimensions of biodiversity research amplified by Nematomorpha and Gastrotricha. Integr Comp Biol 42:633–640. doi: 10.1093/icb/42.3.633
Schmidt-Rhaesa A (2003) Old trees, new trees—is there any progress? Zoology 106:291–301. doi: 10.1078/0944-2006-00128
Short G, Tamm SL (1991) On the nature of paddle cilia and discocilia. Biol Bull 180:466–474. doi: 10.2307/1542347
Teuchert G (1974) Aufbau und Feinstruktur der Muskelsysteme von Turbanella cornuta Remane (Gastrotricha, Macrodasyoida). Mikrofauna Meeresbodens 39:223–246
Teuchert G (1976) Sinneseinrichtigungen bei Turbanella cornuta Remane (Gastrotricha). Zoomorphologie 83:193–207. doi: 10.1007/BF00993484
Teuchert G (1977) The ultrastructure of the marine gastrotrich Turbanella cornuta Remane (Macrodasyoidea) and its functional and phylogenetic importance. Zoomorphologie 88:189–246. doi: 10.1007/BF00995474
Teuchert G, Lappe A (1980) The so-called “pseudocoel” of Nemathelminthes—a comparison of the body cavity of several gastrotrichs. Zool Jahrb Anat 103:424–438
Todaro MA, Littlewood DTJ, Balsamo M, Herniou EA, Cassanelli S, Manicardi G, Tongiorgi P (2003) The interreleationships of the Gastrotricha using nuclear small rRNA subunit sequence data, with an interpretation based on morphology. Zool Anz 242:145–156. doi: 10.1078/0044-5231-00093
Todaro MA, Telford MJ, Lockyer AE, Littlewood TJ (2006) Interrelationsship of the Gastrotricha and their place among the Metazoa inferred from 18S rRNA genes. Zool Scr 35:251–259. doi: 10.1111/j.1463-6409.2006.00228.x
Travis PB (1983) Ultrastructural study of body wall organization and Y-cell composition in the Gastrotricha. Z Zool Syst Evolut-forsch 21:52–68
Uhlig G (1964) Eine einfache Methode zur Extraction der vagilen, mesopsammalen Mikrofauna. Helgoländer Wiss Meeresunt 11:151–157
Wallberg A, Curini-Galletti M, Ahmadzadeh A, Jondelius U (2007) Dismissal of Acoelomorpha: Acoela and Nemertodermatida are separate early bilaterian clades. Zool Scr 36:509–523. doi: 10.1111/j.1463-6409.2007.00295.x
Wiedermann A (1995) Zur Ultrastruktur des Nervensystems bei Cephalodasys maximus (Macrodasyida, Gastrotricha). Microfauna Marina 10:173–233
Wikgren M, Reuter M, Gustafsson MKS, Lindroos P (1990) Immunocytochemical localization of histamine in flatworms. Cell Tissue Res 260:479–484. doi: 10.1007/BF00297227
Wikgren M, Fagerholm H-P (1993) Neuropeptides in sensory structures of nematodes. Acta Biol Hung 44:133–136