請用此 Handle URI 來引用此文件:
http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/44071完整後設資料紀錄
| DC 欄位 | 值 | 語言 |
|---|---|---|
| dc.contributor.advisor | 蕭仁傑 | |
| dc.contributor.author | Ni-Na Chang | en |
| dc.contributor.author | 張妮娜 | zh_TW |
| dc.date.accessioned | 2021-06-15T02:38:40Z | - |
| dc.date.available | 2009-08-14 | |
| dc.date.copyright | 2009-08-14 | |
| dc.date.issued | 2009 | |
| dc.date.submitted | 2009-08-12 | |
| dc.identifier.citation | Anderson, D. M., Glibert, P. M., Burkholder, JA. M., 2002. Harmful algal blooms and eutrophication: nutrient sources, composition, and consequences. Estuaries and Coasts 25(4b), 704-726
Bulman,C., Althaus, F., He, X., Bax, N. J., Williams, A., 2001. Diets and trophic guilds of demersal fishes of the south-eastern Australian shelf. Marine and freshwater research 52 (4), 537-548. Bergstad, O. A., Menezes, G., Hoines, A. S., 2008. Demersal fish on a mid-ocean ridge: Distribution patterns and structuring factors. Deep Sea Research II 55, 185-202. Boynton, W. R., Kemp, W. M., 1985. Nutrient regeneration and oxygen consumption by sediments along an estuarine salinity gradient. Marine Ecology Progress Series 23, 45-55. Byrkjedal, I., Hoines, A., 2007. Distribution of demersal fish in the south-western Barents Sea. Polar Research 26, 135-151. Clifford, H. T., Stephenson, W., 1975. An introduction to numerical classification, Academic Press. London, 209-224pp. Caddy, J. F., 1993. Toward a comparative evaluation of human impacts on fishery ecosystem of enclosed and semi-enclosed seas. Reviews in Fisheries Science 1, 57-96. Chen, C. S., Beardsley, R. C., Limeburner, R., Kim, K., 1994. Comparison of winter and summer hydrographic observations in the Yellow and East China Seas and adjacent Kuroshio during 1986. Continental Shelf Research 14(7/8), 909-929. Chen, Y. Q., Shen, X. Q., 1995. Changes in the biomass of the East China Sea ecosystem. In: Tang, Q. S., Sherman, K (eds) The Large Marine Ecosystems of the Pacific Rim. IUCN publication, United State, 91-112pp. Chen, C. T., 1996. The Kuroshio intermediate water is the major source of nutrients on the East China Sea continental shelf. Oceanologica Acta 19(5), 523-527. Chen, W. Z., Li, C. S., Hu, F., 1997. A review of the fisheries resource status in East China Sea. Journal of Fishery Sciences of China 4(3), 39-43. (In Chinese). Chen, C. C., Shiah, F. K., Gong, G. C., Chiang, K. P., 2003a. Planktonic community respiration in the East China Sea: importance of microbial consumption of organic carbon. Deep-Sea Research II 50, 1311-1325. Chen, C. S., Zhu, J. R., Beardsley, R. C., Franks, P. J. S., 2003b. Physical–biological sources for dense algal blooms near the Changjiang River. Geophysical Research Letters 30 (10), 1515-1518. Cheng, J. S., Yu, L. F., 2004. The change of structure and diversity of demersal fish communities in the Yellow Sea and East China Sea in winter. Journal of Fisheries of China 28(1), 29-34. (In Chinese). Cheung, W. W. L., Pitcher, T. J., Pauly, D., 2005. A fuzzy logic expert system to estimate intrinsic extinction vulnerabilities of marine fishes to fishing. Biological Conservation 124(1), 97-111. Chen, C. C., Gong, G. C., Shiah, F. K., 2007. Hypoxia in the East China Sea: One of the largest coastal low-oxygen areas in the world. Marine Environmental Research 64, 399-408. Delaune, R. D., Reddy, C. N., Patrick, W. H., 1981. Accumulation of plant nutrients and heavy metals through sedimentation processes and accretion in a Louisiana salt marsh. Estuaries and Coasts 4(4), 328-334. Downing, J. A., Plante, C., Lalonde, S., 1990. Fish production correlated with primary productivity, not the morphoedaphic index. Canadian Journal of Fisheries and Aquatic Sciences 47, 1929-1936. Diaz, R. J., Rosenberg, R., 1995. Marine benthic hypoxia: a review of its ecological effects and the behavioural responses of benthic macrofauna. Oceanography and Marine Biology - An Annual Review 33, 245-303. Fossen, I., Cotton, C. F., Bergstad, O. A., Dyb, J. E., 2008. Species composition and distribution patterns of fishes captured by longlines on the Mid-Atlantic Ridge. Deep-Sea Research II 55, 203-217. Gao, S., Cheng, P.,Wang, Y.P., Cao, Q.Y., 2000. Characteristics of suspended sediment concentrations over the areas adjacent to the Changjiang River estuary, the summer of 1998. Marine Science Bulletin 2 (1), 14-24. Gong, G. C., Wen, Y. H., Wang, B. W., Liu, G. J., 2003. Seasonal variation of chlorophyll a concentration, primary production and environmental conditions in the subtropical East China Sea. Deep-Sea Research Part II 50, 1219-1236. Gao, X., Song, J., 2005. Phytoplankton distributions and their relationship with the environment in the Changjiang Estuary, China. Marine Pollution Bulletin 50 (3), 327–335. Gong, G. C., Chang, J., Chiang, K. P., et al. 2006. Reduction of primary production and changing of nutrient ratio in the East China Sea: Effect of the Three Gorges Dam? Geophysical Research Letters 33 (7), 1-4. Huston, M. A., 1979. A general hypothesis of species diversity. The American Naturalist 113(1), 81-101. Hu, Y.M., 2006. The historical and present status of large yellow croaker germplasm in East Sea. Journal of Shaoxing University 26 (7), 49-53. (In Chinese). Ichikawa, H., Beardsley, R. C., 2002. The current system in the Yellow and East China Seas. Journal of Oceannography 58, 77-92. Jin, X., Xu, B., Tang, Q., 2003. Fish assemblage structure in the East China Sea and southern Yellow Sea during autumn and spring. Journal of Fish Biology 62, 1194-1205. Jiang, Y.Z., Cheng, J. H., Li, S. F., 2008. Variation in fish community structure and biodiversity in the north of the East China Sea between two periods. Journal of Fishery Sciences of China 15 (3), 453-459. (In Chinese). Kramer, D. L., 1987. Dissolved oxygen and fish behavior. Environmental Ecology of Fishes 18(2), 81-92. Katoh, O., 2000. Current distribution in southern East China Sea in summer. Journal of Geophysical Research 105(C4), 8565-8573. Kemp, W. M., Boynton, W. R. et al., 2005. Eutrophication of Chesapeake Bay: historical trends and ecological interactions. Marine Ecology Progress Series 303, 1-29. Lee, G. F., Jones, R. A., 1991. Effects of eutrophication on fisheries. Reviews in Aquatic Sciences 5 (3-4), 287-305. Liu, W. H., Zhan, B. Y., 1999. The dynamic analysis on the fishery stocks in the East China Sea. Journal of Shanghai Fisheries University 8(1), 19-24. (In Chinese). Liu, X. C., Shen, H. T., Huang, Q. H., 2002. Concentration variation and flux estimation of dissolved inorganic nutrient from the Changjiang River into its estuary. Oceanologia et Linnologia Sinica 33, 332-340. (In Chinese). Li, D. J., Zhang, J., Huang, D. J., 2002. Oxygen depletion off the Changjiang (Yangtze River) Estuary. Science in China (Series D) 45(12), 1137-1146. Li, D. J., Dag, D., 2004. Ocean pollution from land-based sources: East China Sea, China. AMBIO: A Journal of the Human Environment 33 (1), 107-113. Li, S.F., Cheng, J.H., Yan, L.P., 2007a. Spatial s tructure of fish communities on the continental shelf of the East China Sea. Acta Ecologica Sinica 27(11), 4377-4386. (In Chinese). Li, J. S., Li, S. F., Ding, F. Y., Cheng, J. H., 2007b. Analysis on annual change of fish diversity in Yangtze estuary off shore water area. Journal of Fishery Sciences of China 14(4), 637-643. (In Chinese). Magurran, A. E., 1988. Ecological Diversity and its Measurement. Princeton University Press. Princeton,U.S.A, pp 7-45. Musick, J. A., 1999. Criteria to Define Extinction risk in marine fishes- The American Fisheries Society initiative. Fisheries 24(12), 6-14. Mackey, R. L., Currie, D. V., 2001. The Diversity-Disturbance Relationship: Is It Generally Strong and Peaked? Ecology 82(12), 3479-3492. Magni, P., Micheletti, S., Casu, D., Floris, A., Giordani, G., Petrov, A., De Falco, G., Castelli, A., 2005. Relationships between chemical characteristics of sediments and macrofaunal communities in the Cabras lagoon (Western Mediterranean, Italy). Hydrobiologia 550(1-3), 105-119. Maravelias, C. D., Tsitsika, E. V., Papaconstantinou, C., 2007. Seasonal dynamics, environmental preferences and habitat selection of John Dory (Zeus faber). Estuarine, Coastal and Shelf Science 72, 703-710. Nixon, S. W., 1995. Coastal marine eutrophication: a definition, social causes, and future concerns. Ophelia 41, 199-219. Nakabo, T., 2002. Fishes of Japan with pictorial keys to the species, English edition. Tokai University. 1800pp. Peet, R. K., 1975. Relative diversity indices. Ecology 56, 496-298. Qin, Y.S., Zhao, Y.Y., Chen, L.R., Zhao, S.L., 1996. Geology of the East China Sea. Science Press, Beijing, 357pp. Quan, W.M., Shen, X.Q., 2004. Research on present condition and change tendency of fisheries environmental quality in the ChangJiang River estuary and adjacent East China Sea. Marine Fisheries 26(2), 93-98. (In Chinese). Rosenberg, R., Hellman, B., Johansson, B., 1991. Hypoxic tolerance of marine benthic fauna. Marine Ecology Progress Series 79, 127-131. Rabalais, N.N., Turner, R.E., Wiseman Jr., W.J., 2001. Hypoxia in the Gulf of Mexico. Journal of Environmental Quality 30, 320-329. Shen, H. C., 1993. Fishes of Taiwan. Institute of zoology, National Taiwan University. Taipei, 1-819pp. (In Chinese). Smith, V. H., Tilman, G. D., Nekola, J. C., 1999. Eutrophication: impacts of excess nutrient inputs on freshwater, marine, and terrestrial ecosystems. Environmental Pollution 100, 179-196. Shiah, F. K., Gong, G. C., Chen, C. C., 2003. Seasonal and spatial variation of bacterial production in the continental shelf of the East China Sea: possible controlling mechanisms and potential roles in carbon cycling. Deep-Sea Research II 50, 1295-1309. Tian, S. J., 1995. Assessment on groundfish resources in the southeastern part of the East China Sea. Master’s thesis. Institute of Fisheries Science, National Taiwan University, Taipei, Taiwan. (In Chinese). Wang, J.H., 2002. Phytoplankton communities in three distinct ecotypes of the Changjiang Estuary. Journal of Ocean University of Qingdao 32 (3), 422-428 (In Chinese). Xu, K.D., Liu, Z.F., 2007. The current stock of large yellow croaker Pseudosciaena crocea in the East China Sea in the respect of its stock decline. Journal of Dalian Fisheries University 22(5), 392-396. (In Chinese). Yan, W. J., and Zhang, S., 2003. How do nitrogen inputs to the Changjiang basin impact the Changjiang River nitrate: A temporal analysis for 1968–1997. Global biogeochemical cycles 17(4), 1-9. Yan, L. P., Li, J. S., Ling, J. Z., et al., 2005. Analysis on Recent Status of the Fishery Resources in the East China Sea. Journal of Zhejiang Ocean University (Natural Science) 24(4), 303-307. (In Chinese). Yamada, U., et al., 2007. Fishes and Fisheries of the East and Yellow seas. Tokai University, 1-1340pp. Yokoyama, H., Ishihi, Y., 2007. Variation in food sources of the macrobenthos along a land–sea transect: a stable isotope study. Marine Ecology Progress Series 346, 127-141. Zhan, X. W., Sui, J. X., Zhang, Y., et al. 2002. Status of China marine environmental quality in 2001. Marine Environmental Science 21(2), 47-49. (In Chinese). Zheng, Y.J., Chen, X.Z., Cheng, J.H., Wang, Y.L., Shen, X.Q., Chen, W.Z., Li, C.S., 2003. Biological Resources and Environmental Characteristics of the East China Sea Continental Shelf. Shanghai Science and Technology Press, Shanghai, 835pp. Zhou, M.J., Shen, Z.L., Yu, R.C., 2008. Responses of a coastal phytoplankton community to increased nutrient input from the Changjiang (Yangtze) River. Continental Shelf Research 28, 1483-1489. | |
| dc.identifier.uri | http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/44071 | - |
| dc.description.abstract | 東海擁有廣泛的大陸棚區域,並且由於長江輸入大量營養鹽,東海也具備了高營養鹽、高初級生產力以及豐富漁業資源的特性。然而,統計數據指出,從1960年代開始,從長江輸入東海的營養鹽含量已經增加了10倍以上,並且經常造成優養化及水體缺氧的情況發生。另一方面,長江三峽大壩的興建及運作已被證實了會大幅減少營養鹽排放入東海的量。然而,在此兩個反向的作用下,目前東海的營養鹽狀態對底棲生物群聚的影響仍是未知且值得關注的。由於過去數十年的營養鹽過量輸入,我們能夠推測目前東海的營養鹽狀態仍是過盛的,並且很可能會對造成底棲生物群聚造成負面的影響。
為探討此一問題,本研究於2008年夏季7月份利用底拖網在東海海域進行了從近岸至離岸的穿越線調查。總共採集了3935隻底棲性魚類,分屬於71種,41科。在物種組成方面,有明顯的南北以及離岸遠近的差異。生物多樣性指數則是以離岸較遠的測站有較高值,而又以靠近長江河口及杭州灣的測站A1和B1有著最低的生物多樣性。生物與環境間的相關分析結果顯示,各測站間物種組成的差異和緯度、深度、溶氧、磷酸鹽類及亞硝酸鹽類有較密切的相關性。此外,生物多樣性指標和底部溶氧呈現顯著正相關,且和營養鹽及葉綠素濃度呈顯著負相關。 以上結果顯示了東海的底棲魚類物種組成不僅受魚類的生物地理學偏好所影響,同時也會因物種間對營養鹽濃度梯度及缺氧的情形的耐受性不同而有所差異。總結來說,目前東海的營養鹽狀態仍是過盛的,且其後續的效應,如:有機物質堆積以及底部缺氧皆會對底棲生物群聚造成危害。 | zh_TW |
| dc.description.abstract | The East China Sea (ECS) was characterized by nutrient-rich condition, high primary productivity and high fishery yield, due to the massive input of nutrient from Changjiang (CJ). However, the anthropogenic nutrient load from CJ has increased over 10-fold since 1960’s, and caused frequent eutrophication and hypoxia events. In addition, construction of Three Gorges Dam has been proved to reduce the nutrients discharge. The effects of present nutrient status on the benthos assemblage were still obscure. Nevertheless, we presume that the nutrient status in the ECS is still excessive, and may injure the benthos communities in the ECS.
To verify our assumption, oceanographic survey was conducted across the inshore-offshore transects. Totally 3935 dermal fish including 71 species were collected by the beam trawl. Fish species composition varied greatly between northern and southern sites as well as between inshore and offshore sites. Higher diversity appeared at offshore sites and lowest diversity occurred at the inshore site close to Changjiang Estuary. The fish community structure among each site was related to depth, latitude, dissolved oxygen, PO4 and NO2. Besides, the fish species diversity is significantly positive correlated to dissolved oxygen and negative to concentrations of various nutrients and chlorophyll a. This result implied that the fish communities were not only determined by specific biogeographic distribution, but also by the nutrients and hypoxia conditions. In conclusion, the nutrient status in the ECS is still redundant, and its follow up consequences, including organic matters accumulation and benthic hypoxia have negatively impacted the community of demersal fish. | en |
| dc.description.provenance | Made available in DSpace on 2021-06-15T02:38:40Z (GMT). No. of bitstreams: 1 ntu-98-R96241216-1.pdf: 3697895 bytes, checksum: 75f51081d45c6e13ca44b03c5e206cec (MD5) Previous issue date: 2009 | en |
| dc.description.tableofcontents | 致謝 -----------------------------------------------------------------------------------------Ⅰ
中文摘要 ----------------------------------------------------------------------------------------Ⅱ 英文摘要 --------------------------------------------------------------------------------------Ⅲ Contents -----------------------------------------------------------------------------------------Ⅳ Table legends ------------------------------------------------------------------------------------Ⅴ Figure legends -----------------------------------------------------------------------------------Ⅵ Appendix legends --------------------------------------------------------------------------------Ⅵ 1. Introduction ---------------------------------------------------------------------------------1 1-1. Environmental characters in the East China Sea ------------------------------1 1-2. Biological characters in the East China Sea -----------------------------------2 1-3. Environmental changes in the East China Sea -----------------------------------4 1-4. Aims of study-----------------------------------------------------------------------8 2. Materials and Methods ---------------------------------------------------------------------9 2-1. Study area ---------------------------------------------------------------------------9 2-2. Sampling procedure ---------------------------------------------------------------9 2-3. Data Analysis -----------------------------------------------------------------------10 2-4. Abbreviations ------------------------------------------------------------------------14 3. Results --------------------------------------------------------------------------------------15 3-1. Species composition and biodiversity -----------------------------------------15 3-2. Biological-environmental relationships ---------------------------------------17 4. Discussion ----------------------------------------------------------------------------------20 4-1. Species composition -------------------------------------------------------------20 4-1-1. Spatial variations of species composition ---------------------------------------20 4-1-2. Temporal variations among species composition ------------------------------24 4-2. Species diversity -----------------------------------------------------------------25 4-3. Linkages between biological patterns and environmental variables-------26 4-3-1. Species/Genera level ---------------------------------------------------------------26 4-3-2. Community level -------------------------------------------------------------------27 References ----------------------------------------------------------------------------------------31 Tables ---------------------------------------------------------------------------------------------38 Figures ---------------------------------------------------------------------------------------------52 Appendix ----------------------------------------------------------------------------------------64 | |
| dc.language.iso | en | |
| dc.subject | 缺氧 | zh_TW |
| dc.subject | 東海 | zh_TW |
| dc.subject | 長江 | zh_TW |
| dc.subject | 底棲性魚類 | zh_TW |
| dc.subject | 營養鹽 | zh_TW |
| dc.subject | 優養化 | zh_TW |
| dc.subject | East China Sea | en |
| dc.subject | Hypoxia | en |
| dc.subject | Eutrophication | en |
| dc.subject | Nutrients | en |
| dc.subject | Demersal fish | en |
| dc.title | 2008年夏季東海底棲性魚類多樣性及海洋生物與環境之相關性 | zh_TW |
| dc.title | Biodiversity and Biological-Environmental Relationships of the Demersal Fish Assemblage in the East China Sea in 2008 Summer | en |
| dc.type | Thesis | |
| dc.date.schoolyear | 97-2 | |
| dc.description.degree | 碩士 | |
| dc.contributor.oralexamcommittee | 沈世傑,龔國慶,嚴宏洋,葉信明 | |
| dc.subject.keyword | 東海,長江,底棲性魚類,營養鹽,優養化,缺氧, | zh_TW |
| dc.subject.keyword | East China Sea,Demersal fish,Nutrients,Eutrophication,Hypoxia, | en |
| dc.relation.page | 71 | |
| dc.rights.note | 有償授權 | |
| dc.date.accepted | 2009-08-12 | |
| dc.contributor.author-college | 理學院 | zh_TW |
| dc.contributor.author-dept | 海洋研究所 | zh_TW |
| 顯示於系所單位: | 海洋研究所 | |
文件中的檔案:
| 檔案 | 大小 | 格式 | |
|---|---|---|---|
| ntu-98-1.pdf 未授權公開取用 | 3.61 MB | Adobe PDF |
系統中的文件,除了特別指名其著作權條款之外,均受到著作權保護,並且保留所有的權利。
