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首页> 外文期刊>Microbiological Research >New glucosidase activities identified by functional screening of a genomic DNA library from the gut microbiota of the termite Reticulitermes santonensis.
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New glucosidase activities identified by functional screening of a genomic DNA library from the gut microbiota of the termite Reticulitermes santonensis.

机译:通过对白蚁 Reticulitermes santonensis 的肠道菌群进行基因组DNA库功能筛选,发现了新的葡萄糖苷酶活性。

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beta -Glucosidases are widely distributed in living organisms and play a major role in the degradation of wood, hydrolysing cellobiose or cello-oligosaccharides to glucose. Termites are among the rare animals capable of digesting wood, thanks to enzyme activities of their own and to enzymes produced by their gut microbiota. Many bacteria have been identified in the guts of lower termites, some of which possess cellulolytic or/and hemicellulolytic activity, required for digesting wood. Here, having isolated bacterial colonies from the gut of Reticulitermes santonensis, we constructed in Escherichia coli a genomic DNA library corresponding to all of the colonies obtained and screened the library for clones displaying beta -glucosidase activity. This screen revealed 8 positive clones. Sequence analysis with the BLASTX program revealed putative enzymes belonging to three glycoside hydrolase families (GH1, GH3 and GH4). Agar-plate tests and enzymatic assays revealed differences between the GH1- and GH3-type enzymes (as regards substrate specificity and regulation) and a difference in substrate specificity within the GH3 group. The substrate specificities and characteristic activities of these enzymes suggest that they may intervene in the depolymerisation of cellulose and hemicellulose.
机译:β-葡糖苷酶广泛分布于活生物体中,并在木材降解,纤维二糖或纤维寡糖水解成葡萄糖方面发挥重要作用。由于白蚁自身的酶活性以及肠道菌群产生的酶,白蚁是能够消化木材的稀有动物之一。在白蚁的肠道中发现了许多细菌,其中一些具有消化木材所需的纤维素分解或/和半纤维素分解活性。在这里,我们从 Reticulitermes santonensis 的肠道中分离出细菌菌落,然后在 Escherichia coli 中构建了与获得的所有菌落相对应的基因组DNA文库,并筛选了该文库以显示克隆β-葡萄糖苷酶活性。该屏幕显示了8个阳性克隆。使用BLASTX程序进行的序列分析显示,推定的酶属于三个糖苷水解酶家族(GH1,GH3和GH4)。琼脂平板测试和酶促测定揭示了GH1型和GH3型酶之间的差异(关于底物特异性和调控),以及GH3组中底物特异性的差异。这些酶的底物特异性和特征活性表明它们可以干预纤维素和半纤维素的解聚。

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