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蒋汉明, 高坤山. 氮源及其浓度对三角褐指藻生长和脂肪酸组成的影响[J]. 水生生物学报, 2004, 28(5): 545-551.
引用本文: 蒋汉明, 高坤山. 氮源及其浓度对三角褐指藻生长和脂肪酸组成的影响[J]. 水生生物学报, 2004, 28(5): 545-551.
JIANG Han-Ming, GAO Kun-Shan. EFFECTS OF NITROGEN SOURCES AND CONCENTRATIONS ON THE GROWTH AND FATTY ACID COMPOSITION OF PHAEODA-CTYLUM TRICORNUTUM[J]. ACTA HYDROBIOLOGICA SINICA, 2004, 28(5): 545-551.
Citation: JIANG Han-Ming, GAO Kun-Shan. EFFECTS OF NITROGEN SOURCES AND CONCENTRATIONS ON THE GROWTH AND FATTY ACID COMPOSITION OF PHAEODA-CTYLUM TRICORNUTUM[J]. ACTA HYDROBIOLOGICA SINICA, 2004, 28(5): 545-551.

氮源及其浓度对三角褐指藻生长和脂肪酸组成的影响

EFFECTS OF NITROGEN SOURCES AND CONCENTRATIONS ON THE GROWTH AND FATTY ACID COMPOSITION OF PHAEODA-CTYLUM TRICORNUTUM

  • 摘要: 为了研究氮源的类型和浓度对微藻脂肪酸组成的影响,用含有不同浓度NO3-、NH4+、NH2CONH2的培养基,对三角褐指藻(Phaeodactylum tricornutum)进行了培养,并测定了其生长和脂肪酸组成.结果表明,培养基中不添加氮源时,三角褐指藻生长缓慢,但多不饱和脂肪酸(PUFAs)和C18脂肪酸(C18∶0,C18∶2(n-6),C18∶3(n-6))占总脂肪酸的比例较高;氮浓度较低(4+为氮源,生长较快;氮浓度较高(>3.5mmol/L)时,以NH2CONH2为氮源,生长较快.以NH4+或NH2CONH2为氮源时,EPA(Eicosapentaenoic acid)和PUFAs占总脂肪酸的比例随着其浓度的增加而上升;而以NO3-为氮源时,EPA和PUFAs随着NO3-浓度增加先上升后下降,最适NO3-浓度为1.8mmol/L,此时的EPA占总脂肪酸的比例为16.7%.EPA占干重(w/w)的比例,不管是哪种氮源,均随着氮浓度的增加而升高,但是在0.9-3.5mmol/L之间,3种氮源间EPA含量差异不显著.当氮源浓度为7.0mmol/L时,以NH2CONH2为氮源,EPA和PUFAs含量最高,分别为2.6%和4.4%.PUFAs占干重的比例随着NO3-浓度增加而下降,随NH2CONH2浓度增加而升高,而受NH4+浓度变化的影响不显著.

     

    Abstract: In order to investigate the effects of nitrogen sources and the concentrations on fatty acid composition in microalgae,a marine diatom,Phaeodactylum tricornutum,was cultured in batch with varied nitrogen sources(NO3-,NH4+,NH2CONH2)and at different concentrations.Its growth and fatty acid composition were investigated.The results showed that P.tricornutum grew poorly in the cultures without addition of any nitrogen source,however,polyunsaturated fatty acids(PUFAs)and C18 fatty acids(C18∶0,C18∶2(n-6),C18∶3(n-6))accounted for higher percentages of total fatty acids compared to those with addition of the nitrogen sources.At low concentrations of the nitrogen sources(4+,and grew faster with NH2CONH2 at high concentrations (>3.5mmol/L).With NH4+ or NH2CONH2 as nitrogen sources,EPA(eicosapentaenoic acid)and PUFAs in percentages of the total fatty acids increased when nitrogen concentrations were raised from 0.9 to 7.0mmol/L.With NO3-,the EPA and PUFAs percentages increased to the maximum at 1.8mmol/L NO3-,then decreased with the increased NO3- levels,while the highest EPA Was 16.7% of the total fatty acids.EPA content on a dry mass base(w/w)increased with the increasing nitrogen concentrations within a range of 0.9 to 7.0mmol/L regardless of the nitrogen sources.At 7.0mmol/L NH2CONH2,the alga achieved the highest contents(2.6%EPA and 4.4%PUFAs of the dry weight,respectively).PUFAs content on dry mass decreased with increased.NO3-,increased with enhanced NH2CONH2,but showed small variation with added NH4+.

     

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