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通过氮浓度调节塔玛亚历山大藻毒素产量的初步研究 被引量:9
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作者 胡晗华 石岩峻 丛威 《过程工程学报》 CAS CSCD 北大核心 2005年第4期438-441,共4页
初步研究了培养基中氮浓度及补加氮对塔玛亚历山大藻毒素产量的影响.低氮(88.2μmol/L)条件下藻细胞具有较高的比生长速率(0.60d?1),是高氮(882μmol/L)下的约1.2倍.低氮下在藻细胞对数生长的末期(第10天)补加氮(至高氮水平)导致塔玛亚... 初步研究了培养基中氮浓度及补加氮对塔玛亚历山大藻毒素产量的影响.低氮(88.2μmol/L)条件下藻细胞具有较高的比生长速率(0.60d?1),是高氮(882μmol/L)下的约1.2倍.低氮下在藻细胞对数生长的末期(第10天)补加氮(至高氮水平)导致塔玛亚历山大藻的最大细胞密度(48.5×103mL?1)明显增加,分别是低氮(6.28×103mL?1)和高氮(21×103mL?1)下的7.7和2.3倍;最大单位细胞毒素含量(1.26pg/cell)和产量(43.51μg/L)分别是低氮(1.09pg/cell和6.49μg/L)和高氮(0.88pg/cell和13.18μg/L)下的1.2,1.4倍和6.7,3.3倍.结果显示,在培养基中低水平氮、磷条件下塔玛亚历山大藻细胞的毒素合成增加,其中特别是磷限制条件下,藻细胞的毒素含量增加更为显著.通过低氮下补加氮源以维持培养基中的低氮水平,可以显著促进塔玛亚历山大藻细胞的毒素产量. 展开更多
关键词 塔玛亚历山大藻 贝类毒素 毒素产量 氮浓度调节
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Responses of Halophyte Salicornia bigelovii to Different Forms of Nitrogen Source 被引量:4
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作者 N. KUDO H. FUJIYAMA 《Pedosphere》 SCIE CAS CSCD 2010年第3期311-317,共7页
Salt-affected soils are agricultural and environmental problems on a global scale. Plants suffer from saline stresses in these soils and show nitrogen (N) deficiency symptoms. However, halophytes grow soundly under ... Salt-affected soils are agricultural and environmental problems on a global scale. Plants suffer from saline stresses in these soils and show nitrogen (N) deficiency symptoms. However, halophytes grow soundly under saline conditions. In order to clarify the N nutrition of the halophyte Salicornia bigelovii, it was grown at several N levels (1, 2, 3, and 4 mmol L-1), supplied in the form of NO3 or ammonium (NH4+), under high NaCl conditions (200 mmol L-l). NH4^+- fed plants showed better growth than NO3-fed plants at 1-3 mmol L-1N, and plants in both treatments showed the same growth at 4 mmol L-1 N. Nitrogen contents in NO3-fed plants increased with the N concentrations in solution; competitive inhibition of NO3- absorption by Cl- was observed under lower N conditions. In addition, shoot dry weight was significantly correlated only with shoot N content. Therefore, growth of NO3-fed plants was regulated by N absorption. In contrast, N contents of shoots in NH4+-fed plants did not change with N concentration. Shoot Na content decreased with increasing N concentration, while K content increased. Dry weight was highly correlated only with K content in NH4+-fed plants. These observations indicated that growth of NH4+-fed plants was mainly regulated by K absorption. 展开更多
关键词 cation absorption nitrogen nutrition plant growth saline stress
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