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北白令海透明胞外聚合颗粒物的含量与来源

马丽丽 陈敏 郭劳动 林峰 童金炉

马丽丽, 陈敏, 郭劳动, 林峰, 童金炉. 北白令海透明胞外聚合颗粒物的含量与来源[J]. 海洋学报, 2012, 34(5): 81-90.
引用本文: 马丽丽, 陈敏, 郭劳动, 林峰, 童金炉. 北白令海透明胞外聚合颗粒物的含量与来源[J]. 海洋学报, 2012, 34(5): 81-90.
MA Lili, CHEN Min, GUO Laodong, LIN Feng, TONG Jinlu. Distribution and source of transparent exopolymer particles in the northern Bering Sea[J]. Haiyang Xuebao, 2012, 34(5): 81-90.
Citation: MA Lili, CHEN Min, GUO Laodong, LIN Feng, TONG Jinlu. Distribution and source of transparent exopolymer particles in the northern Bering Sea[J]. Haiyang Xuebao, 2012, 34(5): 81-90.

北白令海透明胞外聚合颗粒物的含量与来源

基金项目: 中国第四次北极科学考察项目;海洋公益性行业科研专项(201105022-4);福建省自然科学基金项目(2009J06026)。

Distribution and source of transparent exopolymer particles in the northern Bering Sea

  • 摘要: 透明胞外聚合颗粒物(TEP)是海水中大量存在的黏性颗粒物质,它对于海洋颗粒物的聚集、有机碳的埋藏、食物网物质的传递、痕量金属的清除与迁出等均起着重要作用。本研究开展了夏季北白令海陆架、陆坡和海盆区透明胞外聚合颗粒物含量和分布的研究。结果表明,北白令海TEP含量介于34~628 mg/m3(Xeq)之间,其中陆架、陆坡和海盆区TEP的平均含量分别为240, 145和83 mg/m3(Xeq),整体呈现由陆架向外海降低的趋势。在陆坡和海盆区,TEP含量随着深度的增加而降低,但在陆架近底层水中,观察到TEP高含量的特征,与近底层水高的TSM, POC相对应。TEP与荧光强度、TSM、POC等的关系分析显示,研究海域TEP存在两个来源,其一为海洋上层水体的浮游生物,其主要贡献于陆架上层、陆坡和海盆水体;其二为陆架沉积物的底栖生物,其通过沉积物再悬浮贡献于陆架近底层水。
  • ALLDREDGE A L, PASSOW U, LOGAN B E. The abundance and significance of a class of large, transparent organic particles in the ocean[J]. Deep-Sea Research I, 1993, 40(6): 1131-1140.
    PASSOW U. Production of transparent exopolymer particles (TEP) by phyto-and bacterioplankton[J]. Marine Ecology Progress Series, 2002, 236: 1-12.
    VERDUGO P, ALLDREDGE A L, AZAM F, et al. The oceanic gel phase: a bridge in the DOM-POM continuum[J]. Marine Chemistry, 2004, 92(1-4): 67-85.
    PASSOW U. Transparent exopolymer particles (TEP) in aquatic environments[J]. Progress in Oceanography, 2002, 55(3-4): 287-333.
    PASSOW U, ALLDREDGE A L. Distribution, size and bacterial colonization of transparent exopolymer particles (TEP) in the ocean[J]. Marine Ecology Progress Series, 1994, 113(1): 185-198.
    TRANVIK L J, SHERR E, SGERR B F. Uptake and utilization of colloidal DOM by heterotrophic flagellates in seawater[J]. Marine Ecology Progress Series, 1993, 92: 301-309.
    PRIETO L, SOMMER F, STIBOR H, et al. Effects of planktonic copepods on transparent exopolymeric particles (TEP) abundance and size spectra[J]. Journal of Plankton Research, 2001, 23(5): 515-525.
    FLOOD P R, DEIBEL D, MORRIS C C. Filtration of colloidal melanin from sea water by planktonic tunicates[J]. Nature, 1992, 355(6361): 630-632.
    MARI X, RASSOULZADEGAN F. Role of TEP in the microbial food web structure:I. Grazing behavior of a bacterivorous pelagic ciliate[J]. Marine Ecology Progress Series, 2004, 279: 13-22.
    ENGEL A. Direct relationship between CO2 uptake and transparent exopolymer particles production in natural phytoplankton[J]. Journal of Plankton Research, 2002, 24(1): 49-53.
    GUO L, HUNG C C, SANTSCHI P H, et al. 234Th scavenging and its relationship to acid polysaccharide abundance in the Gulf of Mexico[J]. Marine Chemistry, 2002, 78(2/3): 103-119.
    QUIGLEY M S, SANTSCHI P H, HUNG C C, et al. Importance of acid polysaccharides for 234Th complexation to marine organic matter[J]. Limnology and Oceanography, 2002, 47(2): 367-377.
    GORDON Jr D C. A microscopic study of organic particles in the North Atlantic Ocean[J]. Deep-Sea Research, 1970, 17(1): 175-178.
    WIEBE W J, POMEROY L R. Microorganisms and their association with aggregates and detritus in the sea: a microscopic study[J]. Memorie dell'Istituto Italiano di Idrobiologia, 1972, 24: 325-352.
    PASSOW U, ALLDREDGE A L. A dye-binding assay for the spectrophotometric measurement of transparent exopolymer particles (TEP)[J]. Limnology and Oceanography, 1995, 40(7): 1326-1335.
    RAMAIAH N, YOSHIKAWA T, FURUYA K. Temporal variations in transparent exopolymer particles (TEP) associated with a diatom spring bloom in a subarctic ria in Japan[J]. Marine Ecology Progress Series, 2001, 212: 79-88.
    THORNTON D C O. Formation of transparent exopolymeric particles (TEP) from macroalgal detritus[J]. Marine Ecology Progress Series, 2004, 282: 1-12.
    ORTEGA-RETUERTA E, RECHE I, PULIDO-VILLENA E, et al. Uncoupled distributions of transparent exopolymer particles (TEP) and dissolved carbonhydrates in the Southern Ocean[J]. Marine chemistry, 2009, 115: 59-65.
    彭安国,黄奕普. 九龙江河口区TEP及其与铀、钍、钋同位素相关性的研究[J]. 厦门大学学报(自然科学版),2007,46(supp. 1): 38-42.
    孙军. 海洋中的凝集网与透明胞外聚合颗粒物[J]. 海洋学报,2005,25(5):1191-1198.
    孙翠慈, 王友绍, 吴梅林, 等. 夏季珠江口透明胞外聚合颗粒物分布特征[J]. 热带海洋学报, 2010, 29(5): 81-87.
    BANSE K, ENGLISH D C. Comparing phytoplankton seasonality in the eastern and western subarctic Pacific and the western Bering Sea[J]. Progress in Oceanography, 1999, 43(2-4): 235-287.
    刘子琳, 陈建芳, 陈忠元, 等. 白令海光合浮游生物现存量和初级生产力[J]. 生态学报, 2006, 26(5): 1345-1351.
    陈敏, 黄奕普, 邱雨生. 白令海盆氮吸收速率的同位素示踪[J]. 自然科学进展, 2007, 17(12): 1672-1684.
    WALSH J J. Arctic carbon sinks: present and future[J]. Global Biogeochemical Cycles, 1989, 3(4): 393-411.
    陈立奇, 高众勇, 王伟强, 等. 白令海盆CO2分布特征及其对北极碳汇的影响[J]. 2003, 33(8): 781-790.
    高郭平, 侍茂崇, 赵进平, 等. 1999年白令海夏季水文特征分析[J]. 海洋学报, 2002, 24(1): 8-16.
    王晓宇,赵进平. 北白令海夏季冷水团的分布及其年际变化研究[J]. 海洋学报,2011,33(2): 1-10.
    AZUMAYA T, OHTANI K. Effect of winter meteorological conditions on the formation of the cold bottom water in the eastern Bering Sea shelf[J]. Journal of Oceanography, 1995, 51(6): 665-680.
    赵进平, 史久新, 矫玉田. 夏季北冰洋海冰边缘区海水温盐结构及其形成机理[J].海洋与湖沼, 2003, 34(4): 375-388.
    STABENO P, VAN MEURS P. Evidence of episodic on-shelf flow in the southeastern Bering Sea[J]. Journal of Geophysical Research, 1999, 104(12): 29715-29720.
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    AZETSU-SCOTT K, PASSOW U. Ascending marine particles: significance of transparent exopolymer particles (TEP) in the upper ocean[J]. Limnology and Oceanography, 2004, 49(3): 741-748.
    BAR-ZEEV E, BERMAN-FRANK I, STAMBLER N, et al. Transparent exopolymer particles (TEP) link phytoplankton and bacterial production in the Gulf of Aqaba[J]. Marine Ecology Progress Series, 2009, 56: 217-225.
    HONG Y, SMITH Jr W O, WHITE A M. Studies on transparent exopolymer particles (TEP) produced in the Ross Sea (Antarctica) and by phaeocystis antarctica (prymnesiophyceae)[J]. Journal of Phycology, 1997, 33(3): 368-376.
    ENGEL A. Distribution of transparent exopolymer particles (TEP) in the northeast Atlantic Ocean and their potential significance for aggregation processes[J]. Deep-Sea Research I, 2004, 51(1): 83-92.
    刘子琳, 陈建芳, 刘艳岚, 等. 2008年夏季白令海粒度分级叶绿素a和初级生产力[J]. 海洋学报, 2011, 33(3): 148-157.
    林凌, 何剑锋, 张芳, 等. 2008年夏季白令海和北冰洋异养浮游细菌丰度与分布特征[J]. 海洋学报, 2011, 3
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  • 收稿日期:  2011-10-24
  • 修回日期:  2012-05-09

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