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Requirement of the Type II Secretion System for Utilization of Cellulosic Substrates by Cellvibrio japonicus

机译:对日本细胞弧菌利用纤维素底物的II型分泌系统的要求

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Cellulosic biofuels represent a powerful alternative to petroleum but are currently limited by the inefficiencies of the conversion process. While Gram-positive and fungal organisms have been widely explored as sources of cellulases and hemicellulases for biomass degradation, Gram-negative organisms have received less experimental attention. We investigated the ability of Cellvibrio japonicus , a recently sequenced Gram-negative cellulolytic bacterium, to degrade bioenergy-related feedstocks. Using a newly developed biomass medium, we showed that C. japonicus is able to utilize corn stover and switchgrass as sole sources of carbon and energy for growth. We also developed tools for directed gene disruptions in C. japonicus and used this system to construct a mutant in the gspD gene, which is predicted to encode a component of the type II secretion system. The gspD ::pJGG1 mutant displayed a greater-than-2-fold decrease in endoglucanase secretion compared to wild- type C. japonicus . In addition, the mutant strain showed a pronounced growth defect in medium with biomass as a carbon source, yielding 100-fold fewer viable cells than the wild type. To test the potential of C. japonicus to undergo metabolic engineering, we constructed a strain able to produce small amounts of ethanol from biomass. Collectively, these data suggest that C. japonicus is a useful platform for biomass conversion and biofuel production.
机译:纤维素生物燃料是石油的强大替代品,但目前受到转化过程效率低下的限制。虽然革兰氏阳性和真菌生物被广泛用作纤维素酶和半纤维素酶的来源,以降解生物量,但革兰氏阴性生物受到的实验关注较少。我们调查了最近被测序的革兰氏阴性纤维素分解细菌日本Cellvibrio japonicus降解生物能源相关原料的能力。使用最新开发的生物质培养基,我们证明了日本血吸虫能够利用玉米秸秆和柳枝switch作为唯一的碳和能源增长来源。我们还开发了用于日本血吸虫定向基因破坏的工具,并使用该系统在gspD基因中构建了一个突变体,该突变体预计将编码II型分泌系统的一个成分。与野生型日本血吸虫相比,gspD :: pJGG1突变体的内切葡聚糖酶分泌降低了2倍以上。此外,突变菌株在以生物质为碳源的培养基中显示出明显的生长缺陷,与野生型相比,产生的活细胞减少了100倍。为了测试日本血吸虫进行代谢工程的潜力,我们构建了一种能够从生物质中产生少量乙醇的菌株。总体而言,这些数据表明日本血吸虫是用于生物质转化和生物燃料生产的有用平台。

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