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海洋科学  2007 

东海原甲藻对中肋骨条藻的他感作用初探

, PP. 62-67

Keywords: 他感作用,东海原甲藻(Prorocentrum,donghaiense,Lu),中肋骨条藻(Skeletonema,costatum),胶体

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Abstract:

在实验室内将不同生长期的东海原甲藻(ProrocentrumdonghaienseLu)培养液滤液用切向超滤技术分级处理后,培养中肋骨条藻(Skeletonemacostatum),发现东海原甲藻的滤液对中肋骨条藻的生长具有促进作用,不同生长期的东海原甲藻分泌物在粒级100ku~0.45μm的培养液中对中肋骨条藻的促进作用最明显,表明东海原甲藻可以产生大小不同的可促进中肋骨条藻生长的他感物质,且在100ku~0.45μm范围含量较大。东海原甲藻对中肋骨条藻的生长促进作用在不同生长期作用强度不同,促进作用最明显的是消亡期,其次为平台期,指数生长期的藻液是3种藻液中促进作用最小的。

References

[1]  王金辉.东海赤潮生物具齿原甲藻及其特征[J].浙江海洋学院学报:自然科学版,2003,22(2):129-131.
[2]  王金辉 黄秀清.具齿原甲藻的生态特征及赤潮成因浅析[J].应用生态学报,2003,14(7):1065-1069.
[3]  陆斗定 齐雨藻 JeanetteGoebel 邹景忠 高亚辉.东海原甲藻修订及与相关原甲藻的分类学比较[J].应用生态学报,2003,14(7):1060-1064.
[4]  齐雨藻 王艳.我国东海赤潮原甲藻应属哪种?[J].应用生态学报,:.
[5]  沈国英 施并章.海洋生态学[M].北京:科学出版社,2002..
[6]  Honjo T. Overview on bloom dynamics and physiological ecology of Heterosigma akashiwo[A]. Smayda T J, Shimizu Y. Toxic Phytoplankton Bloom in the Sea[C]. Amsterdam: Elsevier Science Publishers, 1993. 33-41.
[7]  Smith G D, Doan N T. Cyanobacterial metabolites with bioaetivity against photosynthesis in cyanobacteria, algae and higher plants[J]. J Appl Phycol,1999, 11: 337-344.
[8]  李瑞香 朱明远 王宗灵 石晓勇 陈炳章.东海两种赤潮生物种间竞争的围隔实验[J].应用生态学报,2003,14(7):1049-1054(inChinese).
[9]  Begon M, Harper J L, Townsend C R. Ecology. Individuals, Populations and Communities [M]. 3rd ed.Oxford: Blackwell, 1996.
[10]  Keating K I. Blue-green algal inhibition of diatom growth: transition from mesotrophic to eutrophic community structure[J]. Science, 1978, 199: 971-973.
[11]  Keating K I. Allelopathic influence on blue-green bloom sequence in a eutrophic lake[J]. Science, 1977, 196: 885-887.
[12]  Pratt D M. Competition between Skeletonema costaturn and Olisthodiscus luteus in Narragansett Bay and in culture[J]. Limnol Oceanogr, 1966, 11:447-455
[13]  Tillman U, John W. Toxic effects of Alexandrium spp. On heterotrophic dinoflagellates: an allelochemical defence mechanism independent of PSP-toxin content[J]. Mar Ecol Prog Ser, 2002, 230:47-58.
[14]  Myklestad S M. Production of carbohydrates by marine planktonic diatoms Ⅱ: Influence of the N/P ratio in the growth medium on the assimilation ratio,growth rate, and production of cellular an extracellular carbohydrates by Chaetoceros affinis var. willei(Gran) Hustedt and Skeletonema costatum (Grey.)[J].Cleve J Exp Mar Biol, 1977, 29:161-179.
[15]  Schmidt L E, Hansen P J. Allelopathy in the prymnesiophyte Chyrsochromulina polylepis: effect of cell concentration, growth phase and pH[J]. Mar Ecol Prog Ser, 2001, 216:67-81.
[16]  Maestrini S Y, Bonin D J. Allelopathic relationships between phytoplankton species[J]. Can Bull Fish Aquati Sci,1981, 210: 323-338.
[17]  Legrand C, Rengefors K, Fistarol G O, etal. Allelopathy in phytoplankton-biochemical, ecological, and evolutionary aspects[J]. Phycologia, 2003, 42 (4):70-83.
[18]  Guillard R R. Culture of phytoplankton for feeding marine invertebrates[A]. Smith W L , Chanley MH. Culture of Marine Invertebrate Animals[C].New York:Plenum Press, 1975. 29-60.
[19]  邢黎峰 孙明高.生物生长的Richards模型[J].生物数学学报,:.
[20]  王修林 张蕾 等.营养盐对海洋浮游植物生长的影响—数学模型研究[J].海洋科学进展,:.
[21]  王修林 邓宁宁 祝陈坚 韩秀荣 李克强 辛宇 陈莉莉.磷酸盐、硝酸盐组成对海洋赤潮藻生长的影响[J].中国海洋大学学报,2004,34(3):453-460.
[22]  Vance B D. Composition and succession of cyanophycean water bloom[J]. J Phyeol, 1965, 1: 81-86.
[23]  Suikkanen S, Fistarol G O, Graneli E. Allelophathic effects of Baltic cyanobacteria Nodularia spumigena,Aphnizomenon flos-aquae and Anabaena lemmermannii on algal monocultures[J]. Journal of Experimental Marine and Ecology,2004, 308: 85-101.
[24]  Molisch H. Der Einfluss einer Pflanze auf die andere:Allelopathie[M]. Jena: Gustay Fisher Verlag, 1937.106
[25]  Rice E L. Allelopathy[M]. 2nd ed. New York: Academic Press, 1984. 422.

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