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夏季南海浮游植物光合固碳对不同波长阳光紫外辐射的响应 被引量:3

Photosynthetic response of surface water phytoplankton assemblages to different wavebands of UV radiation in the South China Sea
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摘要 阳光紫外(UV)辐射影响浮游植物光合固碳,且不同波长UV辐射的生理效应不一。本文以夏季南海近岸海域浮游植物为研究对象,采用生物加权函数(Biological weighting function,BWF,亦被称为UV辐射作用光谱)的研究方法,探讨了不同波长UV辐射对浮游植物群落光合固碳的作用。结果表明,在只有可见光情况下的光合固碳速率最高,实验期间平均为10.86μg/(μg.h),当暴露于含UV辐射的阳光下,光合固碳速率明显下降,且接受的辐射波长越短,固碳量越低;在全波段阳光辐射下培养的最低,每小时平均为6.51μg,此时UVR的相对抑制率约为40%。同时BWF显示不同波长的紫外辐射抑制能力不一,波长越短抑制能力越强,UV-B最短波长(280 nm)的单位光能抑制率为UV-A(>320 nm)的100万倍以上。 The photosynthetic carbon fixation of phytoplankton was affected significantly by solar UV radiation,while these effects are wavelength dependent.We investigated the photosynthetic carbon fixation by surface water phytoplankton assemblages of the South China Sea in summer under different radiation treatments to evaluate the photosynthetic response to different wavelength of UVR.The photosynthetic carbon fixation rate was the highest under PAR treatment,with the mean value of 10.86 μg/(μg·h).When the samples were exposed to PAR+UV radiation,the photosynthetic carbon fixation rate decreased significantly,the shorter wavelength exposed,the lower photosynthetic carbon fixation rate observed.As a result,the photosynthetic carbon fixation rate under full spectrum of solar radiation was the lowest,with the mean value of 6.51 μg/(μg·h),the relative inhibition induced by UVR was about 40%.Moreover,the effects of UV radiation were wavelength dependent,biological weighting function(BWF) indicated that the shorter wavelength of UVR,the higher inhibition per energy induced.The biological weight of the shortest wavelength of UV-B(i.e.280 nm) was at least 106 times of the UV-A(320 nm).
出处 《海洋学报》 CAS CSCD 北大核心 2011年第5期146-151,共6页
基金 国家973计划项目(2009CB421207)
关键词 BWF 光合固碳 浮游植物 紫外辐射 作用光谱 biological weighting function phytoplankton photosynthetic carbon fixation UV radiation
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参考文献22

  • 1HADER D P, KUMAR H D, SMITH R C, et ai. Effects of solar UV radiation on aquatic ecosystems and interactions with climate change [J]. PhotochPhotobioSci, 2007, 6:267-285. 被引量:1
  • 2BOUCHARD J N, ROY S, FERREYRA G, et al. Ultraviolet B effects on photosystem II efficiency of natural phytoplankton communities from Antarctica[J]. Polar Biol, 2005, 28: 607-618. 被引量:1
  • 3WORREST R C, VAN DYKE H, THOMSON B E. Impact of enhanced simulated solar ultraviolet radiation upon a marine community[J]. Photochem Photobiol, 1978, 27: 471- 478. 被引量:1
  • 4唐学玺,杨震,王悠,李永祺.紫外辐射诱发三角褐指藻自由基伤害的研究[J].海洋通报,1999,18(4):93-96. 被引量:22
  • 5GAO K, LI P, WATANABE T, et al. Combined effects of ultraviolet radiation and temperature on morphology, photosynthesis and DNA of Arthrospira (Spirulina) platensis (Cyanophyta)[J]. J Phycol, 2008, 44: 777-786. 被引量:1
  • 6刘晓娟,段舜山,李爱芬.绿色巴夫藻受紫外(UV-B)胁迫后的超补偿生长效应[J].应用生态学报,2007,18(1):169-173. 被引量:14
  • 7MOSELEY H, MACKIE R M. Ultraviolet B radiation was increased at ground level in Scotland during a period of ozone depletion[J]. Brit J Dermatol, 1997, 137: 101-102. 被引量:1
  • 8WU Y, GAO K, LI G, et al. Seasonal impacts of solar UV radiation on photosynthesis of phytoplankton assemblages in the coastal waters of the South China Sea[J].Photochem Photobiol, 2010, 86: 586-592. 被引量:1
  • 9MARCOVAL M A, VILLAFANE V E, HELBLING E W. Combined effects of solar ultraviolet radiation and nutrients addition on growth, biomass and taxonomic composition of coastal marine phytoplankton communities of Patagonia[J]. J Photoeh Photobio B, 2008, 91: 157-166. 被引量:1
  • 10GAO K, LI G, HELBLING E W, et al. Variability of UVR effects on photosynthesis of summer phytoplankton assemblages from a tropical coastal area of the South China Sea[J]. Photochem Photobiol, 2007, 83: 802-809. 被引量:1

二级参考文献28

  • 1张珍萍,段舜山,刘振乾,李爱芬,徐宁.眼点拟微绿球藻在黑暗胁迫下的超补偿生长响应[J].暨南大学学报(自然科学与医学版),2005,26(3):412-416. 被引量:8
  • 2Aquatic Technological Academy of Zhanjiang (湛江水产专科学校).1980.Culture of Marine Feeds.Beijing:China Agriculture Press.(in Chinese). 被引量:1
  • 3Belsky AJ.1986.Does herbivory benefit plants? A review of the evidence.American Naturalist,127:870-892. 被引量:1
  • 4Chen M-Y (陈明耀).1995.Culture of Living Feeds.Beijing:China Agriculture Press.(in Chinese). 被引量:1
  • 5Dubois M,Gilles KA,Hamilton JK,et al.1956.Colorimetric method for determination of sugars and related substances.Analytical Chemistry,28:350-356. 被引量:1
  • 6Ehling-Schulz M,Bilqer W,Scherer S.1997.UV-B induced synthesis of photoprotective pigments and extracellular polysaccharides in terrestrial cyanobaterium Nostoc commune.Journal of Bacteriology,179:1940-1945. 被引量:1
  • 7Grobe CW,Murphy TM.1998.Solar ultraviolet-B radiation effects on growth and pigment composition of the intertidal alga Ulva expansa (Setch.) S.& G.(Chlorophyta).Journal of Experimental Marine Biology and Ecology,225:39-51. 被引量:1
  • 8He YY,Hader DP.2002.Involvement of reactive oxygen species in the UV-B damage to the cyanobacterium Anabaena sp.Journal of Photochemistry and Photobiology B:Biology,66:73-80. 被引量:1
  • 9Manoharan K,Lee TK,Cha JM,et al.1999.Acclimation of Prorocentrum minimun (Dinophyceae) to prolonged darkness by use of an alternative carbon from triacylglycerides and Galactolipids.Journal of Phycology,5:287-292. 被引量:1
  • 10Yakovleva IM,Titlvanov EA.2001.Effect of high visible and UV irradiance on subtidal Chondrus crispus:Stress,photoinhibition and protective mechanisms.Aquatic Botany,71:47-61. 被引量:1

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