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Characterization of the gut microbiota of invasive Agrilus mali Matsumara (Coleoptera: Buprestidae) using high-throughput sequencing: uncovering plant cell-wall degrading bacteria

机译:使用高通量测序表征侵袭性马格里乌斯松果(Coleoptera:Buprestidae)的肠道菌群:发现植物细胞壁降解细菌

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摘要

The genus Agrilus comprises diverse exotic and agriculturally important wood-boring insects that have evolved efficient digestive systems. Agrilus mali Matsumara, an invasive insect, is causing extensive mortality to endangered wild apple trees in Tianshan. In this study, we present an in-depth characterization of the gut microbiota of A. mali based on high-throughput sequencing of the 16S rRNA gene and report the presence of lignocellulose-degrading bacteria. Thirty-nine operational taxonomic units (OTUs) were characterized from the larval gut. OTUs represented 6 phyla, 10 classes, 16 orders, 20 families, and 20 genera. The majority of bacterial OTUs belonged to the order Enterobacteriales which was the most abundant taxa in the larval gut. Cultivable bacteria revealed 9 OTUs that all belonged to Gammaproteobacteria. Subsequently, we examined the breakdown of plant cell-wall compounds by bacterial isolates. Among the isolates, the highest efficiency was observed in Pantoea sp., which was able to synthesize four out of the six enzymes (cellulase, cellobiase, β-xylanase, and β-gluconase) responsible for plant-cell wall degradation. One isolate identified as Pseudomonas orientalis exhibited lignin peroxidase activity. Our study provides the first characterization of the gut microbial diversity of A. mali larvae and shows that some cultivable bacteria play a significant role in the digestive tracts of larvae by providing nutritional needs.
机译:Agrilus属包括各种各样的外来且对农业有重要意义的枯木昆虫,这些昆虫已经进化出高效的消化系统。入侵昆虫马格里·马里(Agrilus mali Matsumara)正在给天山濒临灭绝的野生苹果树造成大量死亡。在这项研究中,我们基于16S rRNA基因的高通量测序,对大肠埃希氏菌的肠道菌群进行了深入表征,并报告了木质纤维素降解细菌的存在。从幼虫肠道中鉴定出39个操作分类单位(OTU)。 OTU代表6个门,10个类,16个科,20个科和20个属。大多数细菌OTU属于肠杆菌科,这是幼虫肠道中最丰富的分类单元。可培养细菌揭示了9个OTU,它们都属于γ-变形细菌。随后,我们检查了细菌分离株对植物细胞壁化合物的分解作用。在分离株中,在Pantoea sp。中观察到最高的效率,该菌能够合成负责植物细胞壁降解的六种酶(纤维素酶,纤维二糖酶,β-木聚糖酶和β-葡萄糖苷酶)中的四种。鉴定为东方假单胞菌的一种分离物表现出木质素过氧化物酶活性。我们的研究提供了马来曲霉幼虫肠道微生物多样性的第一个特征,并表明某些可培养细菌通过提供营养需要在幼虫的消化道中发挥重要作用。

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