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Differential Expression of the Two kdp Operons in the Nitrogen-Fixing Cyanobacterium Anabaena sp. Strain L-31

机译:氮固定蓝细菌鱼腥藻中两个kdp操纵子的差异表达。 L-31株

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In several types of bacteria, the Kdp ATPase (comprising of the KdpABC complex) is an inducible, high-affinity potassium transporter that scavenges K+ from the environment. The cyanobacterium Anabaena sp. strain L-31 showed the presence of not one but two distinct kdp operons in its genome. The kdp1 consisted of kdpA1B1G1C1D genes, whereas the kdp2 contained the kdpA2B2G2C2 genes. Among the regulatory genes, the kdpD open reading frame of Anabaena sp. strain L-31 was truncated compared to the kdpD of other bacteria, whereas a kdpE-like gene was absent in the vicinity of the two kdp operons. In response to K+ limitation (+), only kdp2 (and not kdp1) expression could be detected as a 5.3-kb transcript on Northern blots, indicating that kdpA2B2G2C2 genes constitute a polycystronic operon. Unlike E. coli, addition of osmolytes like NaCl, or a change in pH of the medium did not enhance the kdp expression in Anabaena sp. strain L-31. Interestingly, the Anabaena sp. strain L-31 kdp2 operon was strongly induced in response to desiccation stress. The addition of K+ to K+-starved cultures resulted in repression and degradation of kdp2 transcripts. Our results clearly show that kdp2 is the major kdp operon expressed in Anabaena sp. strain L-31 and may play an important role in adaptation to K+ limitation and desiccation stress.
机译:在几种细菌中,Kdp ATPase(由KdpABC复合物组成)是一种可诱导的高亲和力钾转运蛋白,可清除环境中的K +。蓝藻鱼腥藻。 L-31菌株显示其基因组中不存在一个,而是两个不同的kdp操纵子。 kdp1由kdpA1B1G1C1D基因组成,而kdp2包含kdpA2B2G2C2基因。在调控基因中,鱼腥藻的kdpD开放阅读框。与其他细菌的kdpD相比,L-31菌株被截短,而在两个kdp操纵子附近不存在类似kdpE的基因。响应K +限制(+),在Northern印迹上只能检测到5.3kb的转录本,而仅检测到kdp2(而不是kdp1)的表达,这表明kdpA2B2G2C2基因构成了一个多顺反子操纵子。与大肠杆菌不同,添加渗透液(如NaCl)或改变培养基的pH值不会增强鱼腥藻(Anabena sp。)中的kdp表达。 L-31株。有趣的是,鱼腥藻。应变L-31 kdp2操纵子强烈诱导响应于干燥压力。在K +饥饿的文化中添加K +会导致kdp2转录物的阻遏和降解。我们的结果清楚地表明,kdp2是鱼腥藻中表达的主要kdp操纵子。菌株L-31可能在适应K +限制和干燥胁迫中起重要作用。

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