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首页> 外文期刊>Applied and Environmental Microbiology >A Polysaccharide Utilization Locus from an Uncultured Bacteroidetes Phylotype Suggests Ecological Adaptation and Substrate Versatility
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A Polysaccharide Utilization Locus from an Uncultured Bacteroidetes Phylotype Suggests Ecological Adaptation and Substrate Versatility

机译:未培养的拟杆菌属细菌型的多糖利用位点表明生态适应性和底物的多功能性。

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Recent metagenomic analyses have identified uncultured bacteria that are abundant in the rumen of herbivores and that possess putative biomass-converting enzyme systems. Here we investigate the saccharolytic capabilities of a polysaccharide utilization locus (PUL) that has been reconstructed from an uncultured Bacteroidetes phylotype (SRM-1) that dominates the rumen microbiome of Arctic reindeer. Characterization of the three PUL-encoded outer membrane glycoside hydrolases was performed using chromogenic substrates for initial screening, followed by detailed analyses of products generated from selected substrates, using high-pressure anion-exchange chromatography with electrochemical detection. Two glycoside hydrolase family 5 (GH5) endoglucanases (GH5_g and GH5_h) demonstrated activity against β-glucans, xylans, and xyloglucan, whereas GH5_h and the third enzyme, GH26_i, were active on several mannan substrates. Synergy experiments examining different combinations of the three enzymes demonstrated limited activity enhancement on individual substrates. Binding analysis of a SusE-positioned lipoprotein revealed an affinity toward β-glucans and, to a lesser extent, mannan, but unlike the two SusD-like lipoproteins previously characterized from the same PUL, binding to cellulose was not observed. Overall, these activities and binding specificities correlated well with the glycan content of the reindeer rumen, which was determined using comprehensive microarray polymer profiling and showed an abundance of various hemicellulose glycans. The substrate versatility of this single PUL putatively expands our perceptions regarding PUL machineries, which so far have demonstrated gene organization that suggests one cognate PUL for each substrate type. The presence of a PUL that possesses saccharolytic activity against a mixture of abundantly available polysaccharides supports the dominance of SRM-1 in the Svalbard reindeer rumen microbiome.
机译:最近的宏基因组学分析已鉴定出未食细菌,其在草食动物的瘤胃中含量很高,并且具有推定的生物量转化酶系统。在这里,我们研究了一种多糖利用位点(PUL)的糖解能力,该位点是从未培养的拟杆菌属菌种(SRM-1)重构的,该菌种主导了北极驯鹿的瘤胃微生物组。使用生色底物进行初步筛选,对三种PUL编码的外膜糖苷水解酶进行表征,然后使用高压阴离子交换色谱法和电化学检测对从选定底物产生的产物进行详细分析。两个糖苷水解酶家族5(GH5)内切葡聚糖酶(GH5_g和GH5_h)表现出对β-葡聚糖,木聚糖和木葡聚糖的活性,而GH5_h和第三个酶GH26_i在几种甘露聚糖底物上具有活性。检查这三种酶的不同组合的协同实验表明,在单个底物上的活性增强有限。 SusE位置的脂蛋白的结合分析显示了对β-葡聚糖和甘露聚糖的亲和力,但与先前以同一PUL为特征的两种SusD样脂蛋白不同,未观察到与纤维素的结合。总体而言,这些活性和结合特异性与驯鹿瘤胃的聚糖含量密切相关,而驯鹿瘤胃的聚糖含量是通过全面的微阵列聚合物谱分析确定的,并显示出各种半纤维素聚糖的丰富性。单个PUL的底物用途广泛,从而扩展了我们对PUL机器的认识,到目前为止,这已证明了基因组织,表明每种底物类型都具有一个同源的PUL。对丰富的多糖混合物具有糖解活性的PUL的存在,支持了SRM-1在斯瓦尔巴德驯鹿瘤胃微生物组中的优势。

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