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The Relationship between Inorganic Nitrogen Metabolism and Proline Accumulation in Osmoregulatory Responses of Two Euryhaline Microalgae

机译:两种Euryhaline微藻的渗透调节反应中无机氮代谢与脯氨酸积累的关系

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摘要

Chlorella autotrophica, a euryhaline marine alga, and Stichococcus bacillaris, a salt-tolerant soil alga, grow in the presence of methionine sulfoximine (MSX), an inhibitor of glutamine synthetase, by maintaining high levels of NADPH-glutamate dehydrogenase. Nitrate reductase showed no change in MSX-adapted cells. For both species, MSX-adapted cells retained their capacity to accumulate proline in response to salinity, and in S. bacillaris no major shift was observed in the presence of MSX toward the accumulation of sorbitol. Following transfer from 33 to 150% artificial seawater (ASW), both algae exhibited increases in organic solute levels without a lag. Within 6 h of this sudden increase in salinity, the levels of proline in C. autotrophica and of proline and sorbitol in S. bacillaris were similar to those found in steady state 150% ASW cultures. Following transfer from 33 to 150% ASW, S. bacillaris continued [14C] bicarbonate photoassimilation at a normal rate and maintained active enzymes of nitrogen assimilation. The incorporation of [14C]phenylalanine into proteins was inhibited for about 30 minutes in MSX-free cells and 90 minutes in MSX-adapted cells following transfer from 33 to 150% ASW; the recovery after these lag periods was almost complete.
机译:通过维持高水平的NADPH-谷氨酸脱氢酶,在谷氨酰胺合成酶抑制剂蛋氨酸亚砜亚胺(MSX)的存在下,生长了自养小球藻(藻类)和耐盐性土壤藻(Stichococcus bacillaris)。硝酸还原酶在适应MSX的细胞中无变化。对于这两个物种,适应MSX的细胞都保留了响应盐度而积累脯氨酸的能力,并且在MS.S. bacillaris中,没有观察到向着山梨糖醇积累的重大转变。从33%的人工海水转移到150%的人工海水(ASW)之后,两种藻类均显示出有机溶质水平的增加而没有滞后。在盐度突然增加的6小时内,自养芽孢杆菌中的脯氨酸水平以及杆菌中的脯氨酸和山梨糖醇水平与稳态150%ASW培养物中的水平相似。从33%的ASW转移到150%的ASW之后,细菌杆菌以正常速率继续[ 14 C]碳酸氢盐光同化作用,并保持了活性的氮同化酶。从33%转移到150%ASW后,无MSX的细胞抑制[ 14 ]苯丙氨酸掺入蛋白质约30分钟,而适应MSX的细胞抑制90分钟。这些滞后期后的恢复工作几乎完成。

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