首页> 外文期刊>Applied and Environmental Microbiology >Whole-Transcriptome Shotgun Sequencing (RNA-seq) Screen Reveals Upregulation of Cellobiose and Motility Operons of Lactobacillus ruminis L5 during Growth on Tetrasaccharides Derived from Barley β-Glucan
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Whole-Transcriptome Shotgun Sequencing (RNA-seq) Screen Reveals Upregulation of Cellobiose and Motility Operons of Lactobacillus ruminis L5 during Growth on Tetrasaccharides Derived from Barley β-Glucan

机译:全转录组Shot弹枪测序(RNA-seq)屏幕揭示了在大麦β-葡聚糖衍生的四糖生长过程中乳杆菌L5的纤维二糖和运动操纵子的上调。

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Lactobacillus ruminis is an inhabitant of human bowels and bovine rumens. None of 10 isolates (three from bovine rumen, seven from human feces) of L. ruminis that were tested could utilize barley β-glucan for growth. Seven of the strains of L. ruminis were, however, able to utilize tetrasaccharides (3-O-β-cellotriosyl-d-glucose [LDP4] or 4-O-β-laminaribiosyl-d-cellobiose [CDP4]) present in β-glucan hydrolysates for growth. The tetrasaccharides were generated by the use of lichenase or cellulase, respectively. To learn more about the utilization of tetrasaccharides by L. ruminis, whole-transcriptome shotgun sequencing (RNA-seq) was tested as a transcriptional screen to detect altered gene expression when an autochthonous human strain (L5) was grown in medium containing CDP4. RNA-seq results were confirmed and extended by reverse transcription-quantitative PCR assays of selected genes in two upregulated operons when cells were grown as batch cultures in medium containing either CDP4 or LDP4. The cellobiose utilization operon had increased transcription, particularly in early growth phase, whereas the chemotaxis/motility operon was upregulated in late growth phase. Phenotypic changes were seen in relation to upregulation of chemotaxis/flagellar operons: flagella were rarely seen by electron microscopy on glucose-grown cells but cells cultured in tetrasaccharide medium were commonly flagellated. Chemotactic movement toward tetrasaccharides was demonstrated in capillary cultures. L. ruminis utilized 3-O-β-cellotriosyl-d-glucose released by β-glucan hydrolysis due to bowel commensal Coprococcus sp., indicating that cross feeding of tetrasaccharide between bacteria could occur. Therefore, the RNA-seq screen and subsequent experiments had utility in revealing foraging attributes of gut commensal Lactobacillus ruminis.
机译:ruminibacillus ruminis是人类肠和牛瘤胃的居民。测试的10个分离的金黄色葡萄球菌(3个来自牛瘤胃,7个来自人类粪便)不能利用大麦β-葡聚糖进行生长。然而,有七株金黄色葡萄球菌能够利用β中存在的四糖(3-O-β-纤维三糖基-d-葡萄糖[LDP4]或4-O-β-lamribribiosyl-d-纤维二糖[CDP4]) -葡聚糖水解物生长。分别通过使用地衣酶或纤维素酶产生四糖。为了了解更多关于瘤胃乳杆菌利用四糖的信息,测试了全转录组shot弹枪测序(RNA-seq)作为转录筛选,以检测在含有CDP4的本地人种菌株(L5)中生长的基因表达是否发生改变。当细胞在含有CDP4或LDP4的培养基中成批培养时,通过在两个上调操纵子中选择的基因的逆转录定量PCR测定法确认并扩展了RNA-seq结果。纤维二糖利用操纵子的转录增加,特别是在早期生长阶段,而趋化性/运动操纵子在生长后期被上调。表型的变化与趋化性/鞭毛操纵子的上调有关:电子显微镜在葡萄糖生长的细胞上很少见鞭毛,但在四糖培养基中培养的细胞通常是鞭毛的。毛细管培养表明向四糖趋化运动。由于肠道共生Coprococcus sp。,ruminis利用了由β-葡聚糖水解释放的3-O-β-cellosriosyl-d-葡萄糖,这表明细菌之间可能发生四糖交叉加料。因此,RNA-seq筛选和后续实验可用于揭示肠道共生性鲁米氏乳杆菌的觅食属性。

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