期刊文献+

叶绿素荧光检测技术在浮游植物营养盐限制研究中的应用 被引量:4

The application of chlorophyll fluorescence detection techniques in the study of phytoplankton nutrient limitation
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出处 《海洋科学》 CAS CSCD 北大核心 2008年第12期97-101,共5页 Marine Sciences
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参考文献33

  • 1Beardall J, Berman T, Phil H, et al. A comparison of methods for detecting phosphate limitation in mieroalgae[J]. Aquatic Sciences, 2001, 63: 107-121.
  • 2Beardall J, Young E, Simon R. Approaches for determining phytoplankton nutrient limitation [J]. Aquatic Sciences, 2001, 63:44-69.
  • 3Parkhill J P, Maillet G, Cullen J J. Fluorescence-based maximal quantum yield for PSII as a diagnostic of nutrient stress [J]. Journal of Phycology, 2001, 37: 517- 529.
  • 4Schreiber U, Hormann H, Neubauer C, et al. Assessment of photosystem II photochemical quantum yield by chloro- phyll fluorescence quenching analysis [J]. Australia Journal of Plant Physiology, 1995, 22:209-220.
  • 5Young E B, Beardall J. Photosynthetic function in Dunaliella tertiolecta (chlorophyta) during a nitrogen starvation and recovery cycle[J].Journal of Phycology, 2003, 39: 897-905.
  • 6Steglich C, Behrenfeld M, Koblizek M, et al. Nitrogen deprivation strongly affects Photosystem II but not phycoerythrin level in the divinyl-chlorophyll b-containing cyanobaeterium Prochlorococcusmarinus[J]. Bioehimi- ca et Biophysica Acta, 2001, 1 503: 341-349.
  • 7Cleveland J S, Perry M J. Quantum yield,relative specific absorption and fluorescence in nitrogen-limited Chaetoceros gracilis [J]. Marine Biology, 1987, 94: 489-497.
  • 8Geider R J, Roche J La, Greene R M, etal. Response of the photosynthetic apparatus of Phaeodactylum tricornutum (Baeillariophyceae) to nitrate phosphate or iron starvation[J]. Journal of Phycology, 1993, 29:755-766.
  • 9Geider R J, Macintyre L, Graziano L M, et al. Responses of the photosynthetic apparatus of Dunaliella tertiolecta (Chlorophyeeae) to nitrogen and phosphorus limitation[J]. European Journal of Phycoiogy, 1998, 33:315-332.
  • 10Lippemeier S, Hintze R, Vanselow K H, et al. Inline recording of PAM fluorescence of phytoplanton cultures as a new tool for studying effects of fluctuating nutrient supply on photosynthesis[J]. European Journal of Phycology, 2001, 36:89-100.

二级参考文献20

  • 1SAMUELSSON G, OQUIST G. A method for studying photosynthetic capacities of unicellular algae based on in vivo chlorophyll fluorescence[J]. Physiol. Plant, 1997.40:315-319.
  • 2PAPAGEORGIOU G C, ALYGIZAKI-ZORBA A. A sensitive method for the estimation of the cytoplasmic osmolality of cyanobacterial cells using Chlorophyll fluorescence[J]. Biochimca et Biophysica Acta, 1997,1335 : 1-4.
  • 3HSU B, LEE J. Fluorescence quenching by plastoquinone in an oxygen-evolving photo system Ⅱ — Enriched preparetion[J]. Journal of Photochemistry and Photobiology B: Biology, 1995,30 : 57-61.
  • 4KRIEGER A, RUTHERFORD A, JEGERSCHOLD C. Thermoluminescence measurements on chloride-depleted and calcium-depleted photosystem Ⅱ [J]. Biochimca et Biophysica Acta, 1998,1364:46-54.
  • 5PARKHILL J, MAILLET G, GULLEN J J. Fluorescence-based maximal quantum yield for photosystem Ⅱ as a diagnostic of nutrient stress[J]. J. Phycol. , 2001,31:517-529.
  • 6THOMPSON J A. Cellluar fluorescence capacity as endpoint in algal toxicity testing[J]. Chemosphere, 1997, 35: 2027-2037.
  • 7GUSTAVSON K, WANGBERG S. Tolerance induction and succession in microalgae communities exposed to copper and atrazine[J]. Aquatic Toxiciology, 1995,32:283-302.
  • 8BLANCK H, DAHL B. Pollution-induced community tolerance (PICT) in marine periphyton in a gradient of tri-n-butyltin (TBT) contamination[J]. Aquatic Toxiciology, 1996,35:59-77.
  • 9RALPH P J. Herbicide toxicity of Halophila ovalis assessed by chlorophyll a fluorescence[J] . Aquatic Botany ,2000,66:141-152.
  • 10HAYNES D, RALPH P,PRANGE J, et al. Impact of herbicide Diuron on photosynthesis in three species of tropical seagrass[J]. Marine Pollution Bulletin, 2000,41 : 288-293.

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