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  1. NTU Theses and Dissertations Repository
  2. 生命科學院
  3. 動物學研究所
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/35433
完整後設資料紀錄
DC 欄位值語言
dc.contributor.advisor陳俊宏
dc.contributor.authorWei-Shan Laien
dc.contributor.author賴唯珊zh_TW
dc.date.accessioned2021-06-13T06:52:36Z-
dc.date.available2005-08-01
dc.date.copyright2005-08-01
dc.date.issued2005
dc.date.submitted2005-07-28
dc.identifier.citationAlemanni M. E., M. Lozada, and H. E. Zagarese (2003) Assessing sublethal effects of ultraviolet radiation in juvenile rainbow trout (Oncorhynchus mykiss). Photochemical and Photobiological Science 2: 867-870
Arenson M. S. and S. C. Evans (2001) Activation of protein kinase C increases acetylcholine release from frog moto nerves by a direct action on L-type Ca2+ channels and apparently not by depolarization of the terminal. Neuroscience 104 (4): 1157-1164.
Bear M. F., B. W. Connors, and M. A. Paradiso (2001) Neuroscience. Exploring the brain. Second edition. p.855, Lippincott Williams & Wilkins.
Booth L. H., V. Heppelthwaite, and C. T. Eason (1998) Cholinesterase and glutathione S-transferase in the earthworm Apporectodea Caliginosa as biomarkers of organophosphate exposure. The Proceedings of the 51st New Zealand Plant Protection Conference: 138-142.
Buckley N. A., M. Eddleston, L. Szinicz (2005) Oximes for acute organophosphate phesticide poisoning. The Cochrane Database of Systematic Reviews (1): CD005085. DOI: 10.1002/14651858.
Charron R. A., J. C. Fenwick, D. R. S. Lean, and T. W. Moon (2000) Ultraviolet-B Radiation Effects on Antioxidant Status and Survival in the Zebrafish, Brachydanio rerio. Photochemistry and Photobiology 73: 327-333
Chen N., W. Ma, C. Huang, and Z. Dong (1999) Translocation of protein kinase Cε and protein kinase Cδ to membrane is required for ultraviolet B-induced activation of mitogen-activated protein kinases and apoptosis. The Journal of Biological Chemistry 274 (22): 15389-15394.
Chuang Shu-Chun (2004) The study of crawling behavior, oxygen consumption and oxidative stress of skin in earthworms after UV-A or UV-B exposure. Doctoral Thesis of National Taiwan University Institute of Zoology
Darwin C. (1881) The formation of vegetable mould through the action of worms, with observation of their habits. London. John Murray.
Devlin C. L. (2001) The pharmacology of gamma-aminobutyric acid and acetylcholine receptors at the echinoderm neuromuscular junction. The Journal of Experimental Biology 204: 887-896.
Diffy B. L. (2002) Sources and measurement of ultraviolet radiation. Methods 28: 4-13.
Dobransky T., W. L. Davis, Gong-Hua Xiao, and R. J. Rylett (2000) Expression, purification and characterization of recombinant human choline acetyltransferase: phosphorylation of enzyme regulates catalytic activity. Biochemical Journal 349: 141-151.
Dobransky T., W. L. Davis, and R. J. Rylett (2001) Functional characterization of phosphorylation of 69-kDa human choline acetyltransferase at serine 440 by protein kinase C. The Journal of Biological Chemistry 276 (25): 22244- 22250.
Dobransky T., D. Brewer, G. Lajoie, and R. J. Rylett (2003) Phosphorylation of 69-kDa choline acetyltransferase at threonine 456 in response to amyloid-β peptide 1-42. The Journal of Biological Chemistry 278 (8): 5883-5893.
Edward C. A. and P. J. Bohlen (1996) Biology and Ecology of Earthworm. p.426, Chapman & Hall, USA
Gardner C. R. and C. H. Cashin (1975) Some aspects of monoamine function in the earthworm (Lumbricus Terrestris) Neuropharmacology 14: 493-500.
Gardner C. R. (1976) The neuronal control of locomotion in the earthworm. Biological Reviews 51: 25-52
Gilchrest B. A., Hee-Young Park, M. S. Eller, and M. Yaar (1996) Mechanisms of ultraviolet light-induced pigmentation. Photochemistry and Photobiology 63 (1): 1-10.
Häder D. P., H. D. Kumar, R. C. Smith, and R. C. Worrest (2003) Aquatic exosystems: effects of solear ultraviolet radiation and interactions with other climatic change factors. Photochemical and Photobiological Science 2: 39-50.
Hassoni A. A., G. A. Kerkut, and R. J. Walker (1985) The action of cholinomimetic and cholinolytic agents, hemicholinium-3 and α- and β-bungarotoxin on the body wall muscle of the earthworm, Lumbricus Terrestris. Comparative Biochemistry and Physiology 82C (1): 179-192.
He Jia-Qiang, YeQing Pi, J. W. Walker, and T. J. Kamp (2000) Endothelin-1 and photoreleased diacylglycerol increase L-type Ca2+ current by activation of protein kinase C in rat ventricular myocytes. Journal of Physiology 524 (3): 807-820.
Hille B. (2001) Ion Channels of Excitable Membranes. Third Edition. Sinauer Associates, INC. Sunderland, Massachusetts U.S.A.
Horiuchi Y., R. Kimura, N. Kato, T. Fujii, M. Seki, T. Endo, T. Kato, K. Kawashima (2003) Evolution study on acetylcholine expression. Life Science 72: 1745-1756.
Keating C. and P. E. Lloyd (1999) Differential modulation of motor neurons that innervate the same muscle but use different excitatory transmitters in Aplysia. The Journal of Neurophysiology 82 (4): 1759-1767.
Key P. B., M. H. Fulton, J. A. Harman-Fetcho, L. L. McConnell (2003) Acetylcholinesterase activity in grass shrimp and aqueous pesticide levels from South Florida drainage canals. Archives of environmental contamination and toxicology 45 (3): 371-377.
Marcel V, L. G. Palacios, C. Pertuy, P. Masson, and D. Fournier (1998) Two invertebrate acetylcholinesterases show activation followed by inhibition with substrate concentration. Biochemical Journal 329 (2): 329-334.
Matsui M. S., N. Wang, V. A. DeLeo (1996) Ultraviolet radiation B induces differentiation and protein kinase C in normal human epidermal keratinocytes. Photodermatology, Photoimmunology & Photomedicine 12: 103-108.
McKenzie R. L., L. O. Björn, A. Bais, and M. Ilyasd (2003) Changes in biologically active ultraviolet radiation reaching the Earth’s surface. Photochemical and Photobiological Science 2: 5-15.
Mill P. J. (1982) Recent developments in earthworm neurobiology. Comparative biochemistry and physiology 73A: 641-661
Misra R. B., G. S. Babu, R. S. Ray, and R. K. Hans (2002) Tubifex: a sensitive model for UV-B-induced phototoxicity. Ecotoxicology and Environmental Safty 52: 288-295.
Mizutani K., T. Shimoi, Y. Kitamura, H. Ogawa, and K. Oka (2003) Identification of two types of synaptic activity in the earthworm nervous system during locomotion. Neuroscience 121: 473-478.
Nagl A. M. and R. Hofer (1997) Effects of ultraviolet radiation on early larval stages of the Alpine newt, Triturus alpestris, under natural and laboratory conditions. Oecologia 110: 514-519.
Rao, J. V., Y. S. Pavan, and S. S. Madhavendra (2003) Toxic effects of chlorpyrifos on morphology and acetylcholinesterase activity in the earthworm, Eisenia foetida. Ecotoxicology and Environmental Safty 54, 296-301.
Roullet F., F. Datiche, F. Liénard, M. Gattarelli (2004) Cue valence representation studied by Fos immunocytochemistry after acquisition of a discrimination learning task. Brain Research Bulletin 64: 31-38.
Schallreuter K. U., S. M. A. Elwary, N. C. J. Gibbons, H. Rocos, and J. M. Wood (2004) Activation/deactivation of acetylcholinesterase by H2O2: more evidence for oxidative stress in vitiligo. Biochemical and Biophysical Research Communications 315: 502-508.
Stojan J., M. Golicnik, D. Fournier (2004) Rational polynomial equation as an unbiased approach for the kinetic studies of Drosophila melanogaster acetylcholinesterase reaction mechanism. Biochimica et Biophysica Acta 1703: 53-61.
Sundquist S. J., L. K. Nisenbaum (2005) Fast Fos: rapid protocols for single- and double-labeling c-Fos immunohistochemistry in fresh brain sections. Journal of Neuroscience Methods 141: 9-20.
Taylor P. and Z. Radic (1994) The cholinesterase: from gene to proteins. Annual Review of Pharmacology and Toxicology 34: 281-320.
Vander A., J. Sherman, D. Luciano (2001) Human Physiology. Eight Edition. The Mechanisms of Body Function. The McGraw-Hill Companies.
Walker R. J., L. Holden-Dye, and C. J. Franks (1993) Physiological and pharmacological studies on annelid and nematode body wall muscle. Comparative Biochemistry and Physiology 106C (1): 49-58.
World Health Organization, World Meteorological Organization, United Nations Environment Programme, and the International Commission on Non-Ionizing Radiation Protection (2002) Global Solar UV Index.
Wu Jia-Hsing (2003) The relationship between earthworms wondering on soil surface after rain and their excretion. Master’s Thesis of National Taiwan University Institute of Zoology.
Zhong Zhen-Guo, Y. Kimura, M. Noda, H. Misawa, and H. Higashida (1995) Discrete acetylcholine release from neuroblastoma or hybrid cells overexpressing choline acetyltransferase into the neuromuscular synaptic cleft. Neuroscience Research 22: 81-88.
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/35433-
dc.description.abstract蚯蚓多生活於土壤中,但在大雨過後的清晨,常可看到許多蚯蚓爬出地表,進而陳屍於地表。根據前人的研究發現,紫外線照射會影響蚯蚓的爬行,推測紫外線可能為造成蚯蚓陳屍地表的原因。本實驗以在台灣大雨過後常可見爬出地表的物種纖細遠盲蚓(Amynthas gracilis)作為研究對象,該物種在照射紫外線-B (UV-B)時會產生不正常的S形運動和跳動等行為反應,並且對碰觸刺激變得敏感,因此本實驗目的在探討紫外線-B (UV-B)影響蚯蚓運動模式的機制。首先,在c-Fos做為神經細胞活性指標的實驗中發現,蚯蚓經過紫外線B的照射後,蚯蚓的腹神經索中確實有神經細胞被活化,表示紫外線B確實可以影響蚯蚓神經的活性,於是進一步探討紫外線B如何調控蚯蚓的神經系統以達到影響運動的效果。蚯蚓照射紫外線B會影響蚯蚓的AChE活性,並使神經的PKCα活性上升,而這樣的活性變化皆不是酵素直接吸收紫外線所造成的,AChE是神經突觸間重要的酵素,可分解acetylcholine (ACh),調控神經傳導物質作用的時間; PKC已知為脊椎動物神經細胞內重要的細胞訊息傳遞物質,可調控鈣離子通道,影響神經傳導物質ACh的釋放,或是調控合成ACh的酵素choline acetyltransferase的活性,達到調控神經傳導的效果。利用PKC活化劑PMA以及鈣離子通道A23187改變PKC的活性,皆可發現會促進蚯蚓照射紫外線B時的運動行為,而鈣離子通道的抑制劑則會抑制蚯蚓照射紫外線B產生的運動,AChE抑制劑chlorpyrifos的處理也會對蚯蚓的運動產生促進效果,由此可知,AChE和PKC活性的改變,確實會影響蚯蚓在紫外線照射下所出現的行為反應,因此推論紫外線會藉由改變這兩個酵素活性來影響蚯蚓的運動模式。zh_TW
dc.description.abstractEarthworms usually live in the soil, but some earthworms could be found lying dead on the surface of the ground after a heavy rain. UV radiation was suspected to affect earthworm crawling. Since earthworms, Amynthas gracilis, are often observed lying on the soil surface after a heavy rain in Taiwan, the earthworms were used as an animal model in this experiment. Under UV-B exposure, they showed the abnormal behaviors, the S-shape movement and the jumping behavior. Therefore, the purpose of this experiment is to determine how the UV-B radiation affects the earthworm movement behaviors. Some Fos-labelled cells in earthworm ventral nerve cord were shown after the UV-B radiation. This suggested that some neurons were activated by UV-B radiation. The UV-B radiated nerves were found to have higher protein kinase Cα (PKCα) activity, an effect not mediated by direct UV-B absorption. PKC might regulate the calcium channel(s) to increase the intracellular calcium concentration to alter acetylcholine (ACh) release and choline acetyltransferase to affect ACh synthesis in presynaptic cells. The treatment of PKC activator, PMA and calcium ionophore, A23187 both enhanced the abnormal behavior caused by UV-B radiation. And calcium channels blocker, verapamil blocked the jumping behavior caused by UV-B radiation. On the other hand, the UV-B radiation also affected the activity of acetylcholinesterase (AChE), a key enzyme in the synaptic cleft for ACh hydrolysis. Again, AChE activity was not affected by direct UV-B absorption. And AChE inhibitor, chlorpyrifos, treatment enhanced the earthworm behavior. Together, all of those results support that PKCα and AChE are involved in the regulation of earthworm movement caused by UV-B radiation.en
dc.description.provenanceMade available in DSpace on 2021-06-13T06:52:36Z (GMT). No. of bitstreams: 1
ntu-94-R92b41018-1.pdf: 735154 bytes, checksum: aa6943b3a27469e8aace5605469f9056 (MD5)
Previous issue date: 2005
en
dc.description.tableofcontentsIntroduction - 1 -
Earthworms come out the soil - 1 -
Ultraviolet (UV) radiation and ozone depletion on the earth - 2 -
UV damage - 2 -
Neuron-muscle regulation - 4 -
Materials and Methods……………………………………………………………-7-
Animals - 7 -
Chemicals - 7 -
UV exposure - 7 -
Behaviors of earthworm - 7 -
Fos immunohistochemistry - 8 -
Protein kinase C activity - 9 -
Acetylcholinesterase assay - 11 -
H2O2 treatment on isolated body wall - 11 -
Statistical analysis - 12 -
Results - 13 -
The movement behavior of earthworms - 13 -
Fos immunohistochemistry - 13 -
The earthworm nerve PKCα activity after UV-B exposure - 14 -
PMA enhanced the S-shape movement and the jumping behavior caused by UV-B radiation - 14 -
A23187 treatment enhanced the S-shape movement and the jumping behavior caused by UV-B radiation - 15 -
The influence of verapamil treatment on the S-shape movement and the jumping behavior caused by UV-B radiation - 15 -
The AChE activity after UV-B exposure - 16 -
Chlorpyrifos treatment enhanced the S-shape movement and the jumping behavior caused by UV-B radiation - 16 -
The influence of H2O2 on earthworm AChE activity - 17 -
Discussion - 18 -
Reference - 22 -
Figures………………………………………………………………………… …-29-
dc.language.isoen
dc.title蚯蚓(纖細遠盲蚓)照射紫外線B後產生激烈運動行為的研究zh_TW
dc.titleThe Study of Earthworm (Amynthas gracilis) Exciting Movement Behavior Caused by UV-B Radiationen
dc.typeThesis
dc.date.schoolyear93-2
dc.description.degree碩士
dc.contributor.oralexamcommittee陳瑞芬,黃榮棋,李蕙芸
dc.subject.keyword蚯蚓,紫外線,zh_TW
dc.subject.keywordearthworm,UV,en
dc.relation.page42
dc.rights.note有償授權
dc.date.accepted2005-07-28
dc.contributor.author-college生命科學院zh_TW
dc.contributor.author-dept動物學研究研究所zh_TW
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