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Sequence and transcriptional analysis of the genes responsible for curdlan biosynthesis in Agrobacterium sp. ATCC 31749 under simulated dissolved oxygen gradients conditions

机译:农杆菌属中凝乳聚糖生物合成相关基因的序列和转录分析。在模拟溶解氧梯度条件下的ATCC 31749

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Expression at the mRNA level of ten selected genes in Agrobacterium sp. ATCC 31749 under various dissolved oxygen (DO) levels during curdlan fermentation related to electron transfer chain (ETC), tricarboxylic acid (TCA) cycle, peptidoglycan/lipopolysaccharide biosynthesis, and uridine diphosphate (UDP)-glucose biosynthesis were determined by qRT-PCR. Experiments were performed at DO levels of 30%, 50%, and 75%, as well as under low-oxygen conditions. The effect of high cell density on transcriptional response of the above genes under low oxygen was also studied. Besides cytochrome d (cyd A), the transcription levels of all the other genes were increased at higher DO and reached maximum at 50% DO. Under 75% DO, the transcriptional levels of all the genes were repressed. In addition, transcription levels of icd, sdh, cyo A, and fix N genes did not exhibit significant fluctuation with high cell density culture under low oxygen. These results suggested a mechanism for DO regulation of curdlan synthesis through regulation of transcriptional levels of ETCs, TCA, and UDP-glucose synthesis genes during curdlan fermentation. To our knowledge, this is the first report that DO concentration apparently regulates curdlan biosynthesis in Agrobacterium sp. ATCC 31749 providing essential lead for the optimization of the fermentation at the industrial scale.
机译:在农杆菌中十个选定基因的mRNA水平表达。通过qRT-PCR测定了在涉及电子转移链(ETC),三羧酸(TCA)循环,肽聚糖/脂多糖生物合成和尿苷二磷酸酯(UDP)-葡萄糖生物合成的凝多糖发酵过程中,在各种溶解氧(DO)水平下的ATCC 31749。在30%,50%和75%的DO水平以及低氧条件下进行实验。还研究了高细胞密度对低氧条件下上述基因转录反应的影响。除细胞色素d(cyd A)外,所有其他基因的转录水平在较高的DO时均增加,在50%DO时达到最高。在75%DO下,所有基因的转录水平均被抑制。此外,icd,sdh,cyo A和fix N基因的转录水平在低氧条件下进行高细胞密度培养时没有明显的波动。这些结果提示了在凝乳发酵期间通过调节ETC,TCA和UDP-葡萄糖合成基因的转录水平来DO调节凝乳合成的机制。据我们所知,这是第一份关于溶解氧浓度明显调节土壤杆菌属物种中的凝胶多糖生物合成的报道。 ATCC 31749为工业规模的发酵优化提供了必要的线索。

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