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我国的几种蓝藻的固氮作用 被引量:2

THE NITROGEN FIXATION OF SOME BLUE-GREEN ALGAE FROM CHINESE RICE-FIELDS
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摘要 湖北、湖南和江西等地采集的稻田蓝藻经过分离、培养、缺氮培养初步找到可能固氮的蓝藻后,进一步得出了无菌的纯培养的蓝藻藻种,经过试验和用微量凯氏法测定其产生的氮量,确定了四种蓝藻系固氮蓝藻。在100毫升无菌无氮培养基中生长四天的结果测定,水生686固氮蓝藻(Anabaena azotica)、水生678固氮蓝藻(A.azotica forma a)、水生670固氮蓝藻(Anabaena variabilis forma)和水生508固氮蓝藻(Nastoc Linckia forma)的固氮量分别为1.0146、0.938、0.8614和0.759毫克。 The investigation deals,with the nitrogen fixation of some blue-green algae isolated from the soils of rice fields.Samples of algae-bearing soils were collected from rice fields in the provinces of Hupeh,Hunan and Kiangsi.Uni-algal cultures were made first on media enriched with nitrogenous compounds to encourage vigorous growth.The uni-algal cultures were then subcul- tured onto nitrogen-free media,which effected a preliminary separation of those algae which could thrive in the absence of pre-formed nitrogenous compounds,from those which could not.The algae which showed a prolific growth on the nitrogen-free medium may be considered either to be capable of“fixing”(assimilating)atmospheric nitrogen,or that their nitrogen supply is coming from Azotobacter present in the culture.Our next step was to obtain bacteria-flee unialgal cultures. Two bacteriostatic methods were used:ultra-violet radiation from 300-watt quartz lamps,and treatment with streptomycin. Bacteriostatically treated uni-algal cultures were tested by inoculating sterile nitrogen-free media suitable for Azotobacter and allied organisms.Examination of these subcultures from the irradiated material showed that an intermittent radiation from our lamps of 5 minutes,repeated two or three times,was an effective bacteriostatic.Also,that Azotobacter and other micro-organisms were killed after treatment with 20 ppm.of streptomycin. The capacity for assimilating free nitrogen from the air was assessed by determining the quantity of nitrogenous compounds produced in the algal cells and in the medium,by means of the micro- Kjeldhal method.The nitrogen-fixing capacity has now been assessed on 4 isolated types of Blue- green Algae:HB 686(dnabaena azotica);HB 678(dnabaena azotica f.alpha);HB 670 (Anabaena variabilis forma);and HB 508 (Nostoc Linckia forma).The highest rate of fixation, amounting to 1.0146 rag.N/100 cc.of nitrogen-flee medium in 4 days,was attained by HB 686; the next,of 0.9382 mg.N,by HB 678,0.8614 nag.N,by HB 670;and 0.7592 mg.N,was produced under the same conditions,by HB 508.
出处 《水生生物学集刊》 1959年第4期429-439,共11页
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  • 1周云龙.异形胞与蓝藻的固氮[J].生物学通报,1994,29(11):5-6. 被引量:11
  • 2林惠民,何振荣,戴玲芳,王业勤,何家苑,李辛夫,杜代贤,谭渝云,张甬元,黎尚豪.几种固氮蓝藻的固氮酶活性及其某些特性[J].水生生物学集刊,1980,7(1):57-60. 被引量:2
  • 3孔繁翔,高光.大型浅水富营养化湖泊中蓝藻水华形成机理的思考[J].生态学报,2005,25(3):589-595. 被引量:632
  • 4李原,张梅,王若南.滇池的水华蓝藻的时空变化[J].云南大学学报(自然科学版),2005,27(3):272-276. 被引量:63
  • 5黎尚豪.固氮蓝藻作为晚稻肥源的研究[J].固氮蓝藻工作通讯,1980,(7):1-12.
  • 6Dokulil M,Teubner K.Cyanobacterial dominance in lakes.Hydrobiologia,2000,438(1/2/3):1-12.
  • 7Paerl HW.Controlling eutrophication along the freshwater-marine continuum:dual nutrient(N and P) reductions are essential.Estuaries and Coasts,2009,32(4):593-601.
  • 8Schindler DW,Hecky RE,Findlay DL et al.Eutrophication of lakes cannot be controlled by reducing nitrogen input:Results of 37-year whole-ecosystem experiment.Proceedings of the National Academy of Sciences of the United States of America,2008,105 (32):11254-11258.
  • 9Ohlendieck U,Gundersen K,Meyerhofer M et al.The significance of nitrogen fixation to new production during early summer in the Baltic Sea.Biogeosciences,2007,4(1):63-73.
  • 10Vahtera E,Coonley DJ,Gustafsson BG et al.Internal ecosystem feedbacks enhance nitrogen-fixing cyanobacteria blooms and complicate management in the Baltic Sea.Ambio,2007,36(2):186-194.

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