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Analysis of the expression and the activity of the putative alkaline phosphatases in Cyanobacterium Anabaena FACHB709

机译:调节碱性磷酸酶的含碱性磷酸酶的表达及活性分析Anabaena Fachb709

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Cyanobacterial blooms were thought to be initiated by increased availability of phosphorus (P), alkaline phosphatase(AP) play a crucial role in P metabolism. Anabaena FACHB709, a species closely relative to cyanobacterium Anabaena flos-aquae has well-established genetic manipulation system, we have chosen this organism as a model to characterize four genes predicted to encode alkaline phosphatases. We examined cellular physiological responses and transcriptional regulation of these genes after induction of P deficiency. The results showed that the induction of inorganic phosphate deprivation led to cell growth inhibition rather than cell death. Gene phoD2-709 was not transcribed, and other three AP genes were obviously transcribed under normal growth condition. However, under the condition of P starvation, the transcription of the genes were all upregulated obviously in various degrees. The analysis of total alkaline phosphatase activity were consistent with the the results of transcriptional regulation. These evidence suggested that alkaline phosphatases control the availability of phosphorus by the regulation of these genes at transcription level in Anabaena FACHB709.
机译:通过增加磷(P)的可用性,碱性磷酸酶(AP)在P代谢中发挥至关重要的作用,据认为是氨基抗体绽放。 Anabaena Fachb709,一种相对于anababacteriumanababacterium的物种,具有良好的遗传操作系统,我们选择了这种有机物作为表征预测的四种基因的模型。在诱导P缺乏后,我们检查了这些基因的细胞生理反应和转录调节。结果表明,无机磷酸盐剥夺的诱导导致细胞生长抑制而不是细胞死亡。未转录基因Phod2-709,并且在正常生长条件下明显转录其他三种AP基因。然而,在P饥饿的条件下,基因的转录在各种程度上都明显上调。总碱性磷酸酶活性的分析与转录调节的结果一致。这些证据表明,碱性磷酸酶通过在Anabaena Fachb709中的转录水平的调节来控制这些基因的磷的可用性。

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