Departamento de Microbiologia, Instituto de Ciências Biomédicas, Universidade de São Paulo, São Paulo, Brazil.
Departamento de Bioquímica e Imunologia, Faculdade de Medicina de Ribeirão Preto, Universidade de São Paulo, Ribeirão Preto, Brazil.
Microbiol Spectr. 2021 Sep 3;9(1):e0071021. doi: 10.1128/Spectrum.00710-21. Epub 2021 Aug 25.
In this study, we characterize the response of the free-living oligotrophic alphaproteobacterium Caulobacter crescentus to low temperatures by global transcriptomic analysis. Our results showed that 656 genes were upregulated and 619 were downregulated at least 2-fold after a temperature downshift. The identified differentially expressed genes (DEG) belong to several functional categories, notably inorganic ion transport and metabolism, and a subset of these genes had their expression confirmed by reverse transcription quantitative real-time PCR (RT-qPCR). Several genes belonging to the ferric uptake regulator (Fur) regulon were downregulated, indicating that iron homeostasis is relevant for adaptation to cold. Several upregulated genes encode proteins that interact with nucleic acids, particularly RNA: , , and the DEAD box RNA helicases , , and . Moreover, 31 small regulatory RNAs (sRNAs), including the cell cycle-regulated noncoding RNA (ncRNA) CcnA, were upregulated, indicating that posttranscriptional regulation is important for the cold stress response. Interestingly, several genes related to transport were upregulated under cold stress, including three AcrB-like cation/multidrug efflux pumps, the nitrate/nitrite transport system, and the potassium transport genes . Further characterization showed that is upregulated in a potassium-limited medium and at a low temperature in a SigT-independent way. mRNA is less stable in and mutant strains, but while the expression is positively regulated by RhlE, it is negatively regulated by Rho. A -deleted strain was generated, and its viability in response to osmotic, acidic, or cold stresses was determined. The implications of such variation in the gene expression for cold adaptation are discussed. Low-temperature stress is an important factor for nucleic acid stability and must be circumvented in order to maintain the basic cell processes, such as transcription and translation. The oligotrophic lifestyle presents further challenges to ensure the proper nutrient uptake and osmotic balance in an environment of slow nutrient flow. Here, we show that in Caulobacter crescentus, the expression of the genes involved in cation transport and homeostasis is altered in response to cold, which could lead to a decrease in iron uptake and an increase in nitrogen and high-affinity potassium transport by the Kdp system. This previously uncharacterized regulation of the Kdp transporter has revealed a new mechanism for adaptation to low temperatures that may be relevant for oligotrophic bacteria.
在这项研究中,我们通过全局转录组分析来描绘自由生活的贫营养 α 变形菌新月柄杆菌对低温的反应。我们的结果表明,温度下降后,有 656 个基因至少上调了 2 倍,有 619 个基因下调了 2 倍。鉴定出的差异表达基因(DEG)属于几个功能类别,特别是无机离子的运输和代谢,其中一部分基因的表达通过反转录定量实时 PCR(RT-qPCR)得到了验证。属于铁摄取调节因子(Fur)调节子的几个基因下调,表明铁稳态对于适应低温很重要。几个上调的基因编码与核酸相互作用的蛋白质,特别是 RNA: 、 、和 DEAD 盒 RNA 解旋酶 、 、和 。此外,31 个小调控 RNA(sRNA),包括细胞周期调控非编码 RNA(ncRNA)CcnA,上调,表明转录后调控对于冷应激反应很重要。有趣的是,几个与运输有关的基因在冷应激下上调,包括三个 AcrB 样阳离子/多药外排泵、硝酸盐/亚硝酸盐运输系统和钾运输基因 。进一步的表征表明, 在低钾培养基中和低温下以 SigT 独立的方式上调。 mRNA 在 和 突变株中不太稳定,但虽然它的表达受 RhlE 正向调控,但受 Rho 负向调控。生成了一个 -缺失菌株,并测定了其对渗透压、酸性或低温应激的生存能力。讨论了这种基因表达变化对冷适应的影响。 低温应激是核酸稳定性的一个重要因素,必须加以规避,以维持转录和翻译等基本细胞过程。贫营养的生活方式带来了进一步的挑战,以确保在缓慢营养流动的环境中适当的养分摄取和渗透平衡。在这里,我们表明在新月柄杆菌中,参与阳离子运输和稳态的基因的表达在冷应激时发生改变,这可能导致铁摄取减少,氮和高亲和力钾通过 Kdp 系统的运输增加。这种对 Kdp 转运体的新调控机制揭示了一种适应低温的新机制,可能对贫营养细菌具有重要意义。