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Metagenomic analysis and characterization of acidogenic microbiome and effect of pH on organic acid production

机译:酸性微生物组的组分分析与表征对pH对有机酸生产的影响

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Organic acid production including lactate and acetate is an economically attractive technology that has gained momentum worldwide over the past years. These series of action need to be performed by an esoteric and complex microbial community, in which different members have distinct roles in the establishment of a collective organization. In this study, we analyzed the bioma from bioreactors with various pH conditions of 4.0, 5.0 and 6.0 (R-1, R-2 and R-3), respectively, involved in acidogenic digestion for stable production of various organic acids by means of high-throughput Illumina sequencing, disclosing thousands of genes and extracting more than 53 microbial genomes. At pH 5.0, the hydrolysis reaction was enhanced and thus the lactic acid fermentation was stably improved to 45.96 mm/L and acetic acid to 73.77 mm/L. R-2 was found with the most suitable pH condition for stable organic acids production as Lactobacilli and Bifidobacteria were the major members. Both the members have the key roles in heterofermentation and produce higher transcripts of key encoding enzymes involved in the dominant heterofermentation pathways.
机译:包括乳酸和醋酸酯的有机酸产生是一种经济上有吸引力的技术,在过去几年中获得了全世界的势头。这些系列的行动需要由深奥和复杂的微生物群落进行,其中不同成员在建立集体组织时具有不同的作用。在本研究中,我们分析了生物反应器的生物组,分别是4.0,5.0和6.0(R-1,R-2和R-3)的各种pH条件,参与酸性消化以通过方法稳定地生产各种有机酸高通量illumina测序,透露成千上万的基因并提取超过53个微生物基因组。在pH 5.0,提高水解反应,因此乳酸发酵稳定地改善至45.96mm / L和乙酸至73.77mm / L.作为稳定的有机酸产生的最合适的pH条件发现R-2,因为乳杆菌和双歧杆菌是主要成员。这两个成员都具有杂种物中的关键作用,并产生涉及主要杂种术途径的关键编码酶的更高转录物。

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