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首页> 外文期刊>Applied Microbiology and Biotechnology >Insect symbionts as valuable grist for the biotechnological mill: an alkaliphilic silkworm gut bacterium for efficient lactic acid production
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Insect symbionts as valuable grist for the biotechnological mill: an alkaliphilic silkworm gut bacterium for efficient lactic acid production

机译:昆虫共生作为生物技术磨机的珍贵谷物:一种碱性蚕肠道细菌,用于有效的乳酸产生

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Insects constitute the most abundant and diverse animal class and act as hosts to an extraordinary variety of symbiotic microorganisms. These microbes living inside the insects play critical roles in host biology and are also valuable bioresources. Enterococcus mundtii EMB156, isolated from the larval gut (gut pH 10) of the model organism Bombyx mori (Lepidoptera: Bombycidae), efficiently produces lactic acid, an important metabolite for industrial production of bioplastic materials. E. mundtii EMB156 grows well under alkaline conditions and stably converts various carbon sources into lactic acid, offering advantages in downstream fermentative processes. High-yield lactic acid production can be achieved by the strain EMB156 from renewable biomass substrates under alkaline pretreatments. Single-molecule real-time (SMRT) sequencing technology revealed its 3.01 Mbp whole genome sequence. A total of 2956 protein-coding sequences, 65 tRNA genes, and 6 rRNA operons were predicted in the EMB156 chromosome. Remarkable genomic features responsible for lactic acid fermentation included key enzymes involved in the pentose phosphate (PP)/glycolytic pathway, and an alpha amylase and xylose isomerase were characterized in EMB156. This genomic information coincides with the phenotype of E. mundtii EMB156, reflecting its metabolic flexibility in efficient lactate fermentation, and established a foundation for future biotechnological application. Interestingly, enzyme activities of amylase were quite stable in high-pH broths, indicating a possible mechanism for strong EMB156 growth in an alkaline environment, thereby facilitating lactic acid production. Together, these findings implied that valuable lactic acid-producing bacteria can be discovered efficiently by screening under the extremely alkaline conditions, as exemplified by gut microbial symbionts of Lepidoptera insects.
机译:昆虫构成了最丰富多多多的动物阶层,并作为宿主以非凡的共生微生物。这些生活在昆虫内的微生物在宿主生物学中发挥着关键作用,也是有价值的生物资源。肠球菌Mundtii emb156,孤立的幼虫肠道(Gut ph& 10)模型生物体Bombyx mori(鳞翅目:卵状曲面),有效地产生乳酸,是生物塑料材料工业生产的重要代谢物。 E. Mundtii emb156在碱性条件下产生良好,稳定地将各种碳源转化为乳酸,在下游发酵过程中提供优势。高产乳酸产生可以通过碱性预处理下的可再生生物质基材的菌株胚胎156实现。单分子实时(SMRT)测序技术揭示了其3.01 MBP全基因组序列。在胚胎染色体中预测了总共2956个蛋白质编码序列,65个TRNA基因和6个RRNA操纵子。负责乳酸发酵负责的显着基因组特征包括磷酸磷酸盐(PP)/糖型途径中涉及的关键酶,并且α淀粉酶和木糖异构酶的特征在于emb156。该基因组信息与E.MundTii胚胎的表型相吻合,反映了其在有效乳酸发酵中的代谢柔韧性,并为未来的生物技术应用建立了基础。有趣的是,淀粉酶的酶活性在高pH肉汤中非常稳定,表明碱环境中强烈胚胎生长的可能机制,从而促进乳酸产生。这些发现暗示,通过在极其碱性条件下筛选可以有效地发现有价值的乳酸产生细菌,如鳞翅目昆虫的肠道微生物共生的例子所示。

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