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Microbiome of Fungus-Growing Termites: a New Reservoir for Lignocellulase Genes

机译:真菌生长的白蚁的微生物组:木质纤维素酶基因的新水库。

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摘要

Fungus-growing termites play an important role in lignocellulose degradation and carbon mineralization in tropical and subtropical regions, but the degradation potentiality of their gut microbiota has long been neglected. The high quality and quantity of intestinal microbial DNA are indispensable for exploring new cellulose genes from termites by function-based screening. Here, using a refined intestinal microbial DNA extraction method followed by multiple-displacement amplification (MDA), a fosmid library was constructed from the total microbial DNA isolated from the gut of a termite growing in fungi. Functional screening for endoglucanase, cellobiohydrolase, β-glucosidase, and xylanase resulted in 12 β-glucosidase-positive clones and one xylanase-positive clone. The sequencing result of the xylanase-positive clone revealed an 1,818-bp open reading frame (ORF) encoding a 64.5-kDa multidomain endo-1,4-β-xylanase, designated Xyl6E7, which consisted of an N-terminal GH11 family catalytic domain, a CBM_4_9 domain, and a Listeria-Bacteroides repeat domain. Xyl6E7 was a highly active, substrate-specific, and endo-acting alkaline xylanase with considerably wide pH tolerance and stability but extremely low thermostability.
机译:真菌生长的白蚁在热带和亚热带地区的木质纤维素降解和碳矿化中起着重要作用,但是其肠道菌群的降解潜力长期以来一直被忽略。高质量和高量的肠道微生物DNA对于通过基于功能的筛选从白蚁中探索新的纤维素基因是必不可少的。在这里,使用精制的肠道微生物DNA提取方法,然后进行多位移扩增(MDA),从分离自真菌生长的白蚁肠道的总微生物DNA中构建了一个fosmid文库。内切葡聚糖酶,纤维二糖水解酶,β-葡萄糖苷酶和木聚糖酶的功能筛选产生12个β-葡萄糖苷酶阳性克隆和1个木聚糖酶阳性克隆。木聚糖酶阳性克隆的测序结果显示,一个1,818 bp的开放阅读框(ORF)编码一个64.5 kDa多域内切1,4-β-木聚糖酶,命名为Xyl6E7,由N端GH11家族催化结构域组成,CBM_4_9域和李斯特菌细菌重复域。 Xyl6E7是一种高活性,特定于底物且具有内在作用的碱性木聚糖酶,具有相当宽的pH耐受性和稳定性,但热稳定性极低。

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