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The Influence of pCO2 and Temperature on Gene Expression of Carbon and Nitrogen Pathways in Trichodesmium IMS101

机译:pCO2和温度对Trichodesmium IMS101中碳氮通道基因表达的影响

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Growth, protein amount, and activity levels of metabolic pathways in Trichodesmium are influenced by environmental changes such as elevated pCO2 and temperature. This study examines changes in the expression of essential metabolic genes in Trichodesmium grown under a matrix of pCO2 (400 and 900 µatm) and temperature (25 and 31°C). Using RT-qPCR, we studied 21 genes related to four metabolic functional groups: CO2 concentrating mechanism (bicA1, bicA2, ccmM, ccmK2, ccmK3, ndhF4, ndhD4, ndhL, chpX), energy metabolism (atpB, sod, prx, glcD), nitrogen metabolism (glnA, hetR, nifH), and inorganic carbon fixation and photosynthesis (rbcL, rca, psaB, psaC, psbA). nifH and most photosynthetic genes exhibited relatively high abundance and their expression was influenced by both environmental parameters. A two to three orders of magnitude increase was observed for glnA and hetR only when both pCO2 and temperature were elevated. CO2 concentrating mechanism genes were not affected by pCO2 and temperature and their expression levels were markedly lower than that of the nitrogen metabolism and photosynthetic genes. Many of the CO2 concentrating mechanism genes were co-expressed throughout the day. Our results demonstrate that in Trichodesmium, CO2 concentrating mechanism genes are constitutively expressed. Co-expression of genes from different functional groups were frequently observed during the first half of the photoperiod when oxygenic photosynthesis and N2 fixation take place, pointing at the tight and complex regulation of gene expression in Trichodesmium. Here we provide new data linking environmental changes of pCO2 and temperature to gene expression in Trichodesmium. Although gene expression indicates an active metabolic pathway, there is often an uncoupling between transcription and enzyme activity, such that transcript level cannot usually be directly extrapolated to metabolic activity.
机译:Trichodesmium中的生长,蛋白质量和代谢途径的活性水平受环境变化(例如pCO2和温度升高)的影响。这项研究研究了在pCO2(400和900 µatm)和温度(25和31°C)的基质下生长的毛滴虫中必需代谢基因表达的变化。使用RT-qPCR,我们研究了与四个代谢功能组有关的21个基因:CO2浓缩机制(bicA1,bicA2,ccmM,ccmK2,ccmK3,ndhF4,ndhD4,ndhL,chpX),能量代谢(atpB,sod,prx,glcD) ,氮代谢(glnA,hetR,nifH)以及无机碳固定和光合作用(rbcL,rca,psaB,psaC,psbA)。 nifH和大多数光合作用基因表现出相对较高的丰度,并且它们的表达受到两个环境参数的影响。仅当pCO2和温度均升高时,glnA和hetR才会增加2-3个数量级。 CO 2浓缩机制基因不受pCO 2和温度的影响,其表达水平明显低于氮代谢和光合作用基因。一整天共表达了许多CO2浓缩机制基因。我们的结果表明,在Trichodesmium中,CO2浓缩机制基因是组成型表达的。在光周期的前半部分,当进行氧合光合作用和N2固定时,经常会观察到来自不同功能组的基因的共表达,这表明毛线虫的基因表达受到严格而复杂的调节。在这里,我们提供了新的数据,将pCO2的环境变化和温度与Trichodesmium中的基因表达相关联。尽管基因表达表明有一个活跃的代谢途径,但转录和酶活性之间常常存在解偶联,因此转录水平通常不能直接推断为代谢活性。

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