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  1. NTU Theses and Dissertations Repository
  2. 生命科學院
  3. 植物科學研究所
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/75889
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dc.contributor.authorTsun-Hsin Lenen
dc.contributor.author呂宗信zh_TW
dc.date.accessioned2021-07-01T08:16:12Z-
dc.date.available2021-07-01T08:16:12Z-
dc.date.issued1992
dc.identifier.citation中國沿海潮汐表(暨馬尼拉、新加坡)。民國81年。海軍海洋測量局(刊物第二種)。
中央氣象局淡水測候站,1988年1月至1992年3月氣象資料。
呂光洋。1982。竹圍紅樹林沼澤生態調查(1)。中華林學季
李尚癸。1948。臺灣紅樹林分佈現況。臺灣省林業試驗所通訊 41-48: 337-339。
周昌弘,楊棋明。1981。紅樹林生態生理之研究。科學農業29 (11?12) 327-335。
胡敬華。1959。臺灣南部紅樹林植物之研究。省立博物館年刊 2: 77?95
許建昌。1975。臺灣的禾草。臺灣省教育會印 pp. 229
連玉武,林鵬。1986。九龍江口紅樹林氯的累積和循環。植物生態與地物學學報 10(2): 124?130。
陳明義。1982。紅樹林之特性。中華林學季刊15(3): 17?25。
陳明義,陳谷季,李遠慶。1976。淡水河口紅樹林之生態研究。中華林學季刊 9(3): 43?50。
黃元勳。1983。竹圍紅樹林生態系營養物質流轉之動力學研究。國立臺灣大學植物科學研究所碩士論文。
劉棠瑞。1956。紅樹林。臺大林業叢刊第二號 1?25。
劉棠瑞。1982。台灣之紅樹林。中華林學季刊 15(3): 9?16。
蘇宏仁,呂光洋。1984。淡水紅樹林沼澤區螃蟹種類分佈之調查。師大生物學報 19: 61?70。
Alongi, D. M. 1987. The influence of mangrove-derived tannins an inter tidal meiobenthos in tropical estuaries. Oecologia (Berlin) 71:537-540.
Augspruger, C. K. 1984. Seeding surival among tropical tree species: interactions of dispersal distance, lightgaps and pathogens. Ecology 65:1705-1712.
Augspruger, C. K. and C. K. Kelly. 1984. Pathogen motality of tropical tree Seeding: Experinental studies of the effects of dispersal distance, seedling density and light conditions. Oecologia (Berlin) 61:211-217.
Brown, R. L., C. S. Tang and R. K. Nishimoto. 1983. Growth inhibition from Guava root exudates. Hort.Sci. 18: 316 -318.
Camilleri, J. 1989. Leaf choice by crustaceans in a mangrove forest in Queeusland. Mar. Biol. 102:453 - 459.
Chou, C. H. 1989. Allelopathic research of subtropical vegetation in Taiwan IV. comparative phytotoxic nature of leachate from four subtropical gresses. J. Chem. Ecol. 15:2149-2159.
Chou, C. H. and Y. T. Chung. 1974. The allelopathic potential of Miscanthus floridulus. Bot. Bull. Academia Sinica 15:14 -27.
Chou, C. H. and M. H. Hou. 1981. Allelopathic researches of subtropical vegetations in Taiwan I. Evaluation of allelopathic potential of bamboo vegetation. Proc. Nat. Sci. Coun. (R.O.C.) Part B. 5:284-292.
Chou, C. H. and Y. L. Kuo. 1986. Allelopathic research of Subtropical vegetation in Taiwan III. Allelopathic exclusion of understory by Leucaena leucocephala (Lam). J. chem. Ecol. 12:1431-1448.
Chou, C. H. and H. J. Lin. 1976. Autointoxication mechanism of Oryza sativa I. Phytotoxic effects of decomposing rice residues in soil. J. chem. Ecol. 2: 353-367.
Chou, C. H. and Z. A. Patrick. 1976. Identification and phytotoxic activity of compounds produced during decomposition of corn and rye residues in soil. J. Chem. Ecol. 2: 369-387.
Chou, C. H. and G. R. Waller, (Eds.). 1983. Allelochamicals and Pheromones Institute of Botany, Academia Sinica Monograph No.5, Taipei, Taiwan.
Feeny, P. P. 1969. Inhibitony effect of oak leaf tannins on the hydrolysis of proteins by trypsin. Phytochemistry 8:2119-2126.
Feeny, P. P. 1976. Plant apparency and chemical defense Rec. Adv. Phytochem. 10:1-40.
Field, J. A. and G. Lettinga. 1987. The methanogenic toxicity and anaerobic degradability of a Hydrolyzable tannin. Wat. Res. 21:367-374.
Field, J. A. and G. Lettinga. 1989. The effect of Oxidative Coloration on the methanogenic toxicity and anaerobic biodegradability of phenols. Bio. Wastes 29:161-179.
Field, J. A., S. KorteKaas and G. Lettinga, 1989. The effect of autoxidation on the methanogenic toxicity and anaerobic biodegradability of pyrogallol. Biological Wastes 30:111-121.
Field, J. A., M. J. H. Leyendeckers, R. Sierra - Alvarez, G. Leffinga and L. H. A. Habets. 1988. The methanogenic toxicity of bark tannins and the anaerobic biodegradability of water soluble bark matter. Wat. Sci. Tech. 20:219-240.
Gabriel, W. J. 1975. Allelopathic effects of black wal nut on white birches. J. Forestry 73:234-237.
Geissman, T. A. 1962. The Chemistry of Flavonoid Compounds. The Macmillan Company New your. pp. 197-216.
Hagerman, A. E. and Robbins C. T. 1986. Implications of soluble tannin-protein complexes for tannin analysis and plant defense mechanisms. J. Chem. Ecol. 13:1243-1259.
Hais, I. M. and K. Macek. 1963. Paper chromatography. Publishing House of the Czechoslovek Academy of Science, Prague. pp.955.
Horwitz, w., P. Chichilo and Reynolds (eds).1970. Association of Official Analytical Chemists. eleventh edition pp.116 -117.
Hutchings, P. and P. Saenger. 1987. Ecology of Mangroves PP.184-185. Publish by University of Queensland Press.
Janze, D. H. 1985. Mangrove: where's the understory J. Trop. Ecol. 1:89-92.
Loomis, W. D. and J. Battaile. 1966. Plant phenolic compound and the isolation of plant enzymes. Phytochemistry. 5:423-429.
Macnae, W. 1968. A general account of the fauna and flora of mangrove swamps and forest in the Indo-West-Paciticregion. Adv. Mar. Biol. 6:73-270.
Martin, J. S. and M. M. Martin. 1983. Tannin assays in ecological studies: Precipitation of Ribulose-1. 5-Biophosphose Carboxylase/ Oxygenase by tannic acid, Quebracho, and Oak Foliage Extracts. J. Chem. Ecol. 9:285-294.
Merck index, ninth edition, Merck & CO. Inc. pp.1172-1712.
Michel, W. C., K. Sanfilippo and J. F. Case. 1986. Drilling mud-evoked hydranth shedding in the hydroid Tubulariacrocea. Mar. Pollut. Bull. 17: 415-419.
Mole, S. and P. G. Waterman. 1985. Stimulatory effects of tannins and cholic acid on tryptic hydrolysis of proteins ecological implications. J. Chem. Ecol. 11:1323-1332.
Mole, S. and P. G. Waterman. 1987. A critical analysis of technigues for measuring tannins in ecological studies. I. Techniques for chemically defining tannins. Oecologia72:137-147.
Muller, C. H. 1966. The role of chemical inhibition (Allelopathy) in vegetational composition. Bull. Torrey Bot.Club 93:332-351.
Osborne, K. and T. J. Smith III. 1990. Differetial predation on mangrove propagules in open and closed canopy forest habitates. Vegetatio 89:1-6.
Patrick, Z. A. 1971. Phytotoxic substances associated with the decomposition in soil of plant resides. Soil Sci. 111:13-18.
Percuoco, G., S. Coppola, A. Zonia and G. Picci. 1973. Azione della microjlora del suolo sulla fitotoss icita di alcunicomposti tannici. Agri. Ital. 73: 298-309. (published on Field, J. A. 1989. the effect of tannic Compounds on anaerobic wastewater treat ment. Grafisch bedrijf ponsen & Looijenbv - Wage-ningen. PP.140.)
Poovachiranon, S., K. Boto and N. Duke. 1986. Food preference studies and ingestion rate measurements of mangrove amphiod Parhyale hawaiensis (Dana). J. Exp. Mar. Biol. Ecol. 98:129-140.
Rice, E. L. 1979. Allelopathy an update. Bot. Rew. 45:15-109.
Rice, E. L. 1984. Allelopathy. 2nd ed. pp.422 Academic Press, New York.
Rovira, A. D. 1969. Plant root exudates. Bot. Rev. 35: 35-57.
Sasekumar, A. 1974. Distribution of Macrofauna on a Malayan mangrove shore. J. Anim. Ecol. 43:51-69.
Schupp, E. W. 1988. Factors attecting post - dispersal seed survival in a tropical forest. Oecologia (Berlin) 76:525-530.
Smith, T. J. III. 1987a. Seed predation in relation to tree dominance and distribution in mangrove forests. Ecology 68:266-273.
Smith, T. J. III. 1987b. Effects of light and intertidal position on seeding survival and growth in tropical tidalforests. J. Exp. Mar. Biol. Ecol. 110:133-146.
Smith, T. J. III, H. T. Chan, C. C. McIvor and M. B. Roblee. 1989. Comparisons of seed predation in mangrove forests from three continents. Ecology 70:146-151.
Snedaker, S. C. and E. J. Lahmann. 1988. An Alternative explanation for the lack of a mangrove understory. J. Trop. Ecol. 4:411-414.
Swain, T. 1979. Phenolics in the environment. Rec. Adv. Phytochem. 12:617-640.
Tang, C. S. and C. C. Young. 1982. Collection and identification of allelopatic compound from the undisturbed root system of Bigalta limpograss (Hemarthria altissima). Plant Physiol. 69:155-160.
Tukey, H. B., Jr. 1969, Implications of allelopathy in agricultural plant science. Bot.Rev. (Lancaster) 35:1-16.
van Sumere, C. F., F. Albrecht, Andr'ee dedonder, H. DE pooterand IRMA PE. 1974. The chemisty and Biochemistry of plant protein. Academic Press, New York. pp.211-264.
Waller, G. R. (ed). 1987. Allelochemicals: Role in Agriculure and Forest. ACS Series 330 American Chemical Society, Washington, DC.
Wang, T. S., S. Y. Cheng and H. Tung. 1967. Extraction and analysis of soil organic acids. Soil Sci. 103:60-366.
Warner, G. F. 1969. The occurrence and distribution of crab in Jamaican mangrove swamp. J. Anim. Ecol. 38:379-389.
Webb, I. J., J. G. Tracy and D. P. Haydock. 1967. A factor toxic to seedling of the same species associated with living roots of the non-gregarious subtropical rain forest tree Crevilled robusta. J. Appl. Ecol. 4:13-25.
Wester, L. 1987. Vegetation change in Guan Du Marsh, Taiwan 1978- 1985. 關渡自然公園細部規劃,臺北市政府建設局印,pp.415-426. 林曜松、吳海音、張瓊文譯。
Whittaker, R. H. 1970. The Biochemical Ecology of High Plants. in: Chemical Ecology. E. Sondheimer and J. B. Simeone, (eds.) pp.43-70. Academic Press, New York.
Williamson, G. B., D. R. Richardson and N. H. Fischer. 1992. Allelopathic mechanism in fire - prone communities. in: Allolopathy: the basic and applied aspects. S. J. H. Rizvie and V. Rizvi (eds.) PP. 57-76. Chapman & Hall.
Wilson, M. F. 1989. Ecology of mangrove crab: predation, physical factors and refuges. Bull. Mar. Sci. 44:263-273.
Wisdom, C. S., A. Gonzalez - Coloma and P. W. Rundel. 1987. Ecological tannin assays, Evoluation of proanthocyanidins, protein binding assays and protein precipitating potential. Oecologia (Berlin) 72:395-401.
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/75889-
dc.description.abstract作者研究1978年至1990年之航空照片發現關渡水筆仔(Kandelia candle)叢在1982年後曾急劇增加,且有向蘆葦(Phragmites communis)擴張之現象,在此期間除了蘆葦叢大量退卻而水筆仔將其露出之裸地再次覆蓋外,亦可發現部分水筆仔由蘆葦叢邊緣入侵。在竹圍地區亦可由前人之文獻及航空照片得知,曾遭人為破壞而產生裸地,水筆仔亦能由邊緣侵入漸漸取代先驅進入裸地的蘆葦。由兩地演替的現象均可確知水筆仔對蘆葦入侵的能力。
本研究首先對水筆仔胎生苗存活的情況進行探討,發現不論人為植入或自然散佈的胎生苗均難在蘆葦中存活。由人工植入之實驗得知,於蘆葦叢中的胎生苗於植入兩個月後即遭螃蟹全數啃食,而紅樹林林隙及林內皆有胎生苗之存活,且林隙之啃食率低於林內;而在林內存活之植入苗亦在一年後全數死亡,使得植入之胎生苗僅能存活於林隙中,而有63%的存活率。
本研究另一部分則是探討遮蔭及相剋作用對蘆葦的生長是否有抑制作用,進而產生對水筆仔擴張有利之裸地。經由十個月的遮蔭實驗後,發現蘆葦的生物量及株高有顯著的升高,而地下根莖的萌芽並未下降,動物啃食的現象也無上升。在相剋作用方面,發現水筆仔樹皮及葉的水溶萃取液對蘆葦的萌發具抑制效果,且樹皮內之毒物質對蘆葦之根莖具強抑制能力。但是,此植物毒物質在野外的作用效果仍未有直接的證據。
zh_TW
dc.description.abstractStuding the aerial photographic pictures which were taken from 1978 to 1990, it was found that kandelia candle were not only increasing sharply but also extending to reed (Phragmites communis) area after 1982, covering the exposed area because of backward movement of the reed. The Kandelia began intruding from the edge of the reed. After reviewing the aerial photograph and also references of the Chu-wei district, it was found that the Kandelia would gradually replace the reed area, starting from the edge of the reed area where it was created by mans disturbance. The pheonomenon of succession in Tan-shui river can be concluded that the ability of Kandelia succeed the reed occurs in the mouth of the river.
In the begining, this research was to investigate the surviving status of the viviparous seedling of kandelia. It was hard for either the plant or the spread for the viviparous seedlings needed to survive. With test plants, all the viviparous seedling planted in the reed were biten by crabs within two months. The viviparous seedlings planted in the understory were all dead, however, there were surviving seedlings in the understory and gap of mangrove trees, and the bited rate was lower in the gap than in the understory. The planted viviparous seedlings only survived in the gap at a 63% rate.
An other part of this investigation was to explore whether shading of the reed and finding the allelopathy between the reed and Kandelia would inhibit the growth of the reed. Thus, it might create a better environment for Kandelia to diffuse. After ten monthes in the shade, there was an increase of reed in quantity and extent of growth. The budding of the rhizome did not decrease, and the consumed rate by animal, did not increase. In allelopathy, the extracts of bark and leaf of Kandelia might inhibit the budding of reed. The phytotoxins of the bark can inhibit the growth of rhizomes of the reed, but these is no direct evidence in field.
en
dc.description.provenanceMade available in DSpace on 2021-07-01T08:16:12Z (GMT). No. of bitstreams: 0
Previous issue date: 1992
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dc.description.tableofcontents誌謝
摘要
英文摘要
目錄
表次……………………………………………………1
圖次……………………………………………………2
前言……………………………………………………4
前人研究……………………………………………………6
研究地點……………………………………………………11
材料與實驗方法……………………………………………………18
結果……………………………………………………30
討論……………………………………………………66
引用文獻……………………………………………………73
dc.language.isozh-TW
dc.title淡水河口水筆仔與蘆葦兩植叢間演替機制之探討zh_TW
dc.titleMechanism of Succession between Kandelia candle and Phragmites communis in Tanshui riveren
dc.date.schoolyear80-2
dc.description.degree碩士
dc.relation.page81
dc.rights.note未授權
dc.contributor.author-dept生命科學院zh_TW
dc.contributor.author-dept植物科學研究所zh_TW
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