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Genetic Improvement of Bacillus licheniformis Strains for Efficient Deproteinization of Shrimp Shells and Production of High-Molecular-Mass Chitin and Chitosan ▿ †

机译:地衣芽孢杆菌菌株的遗传改良,可对虾壳进行高效脱蛋白并生产高分子量甲壳质和壳聚糖▿†

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摘要

By targeted deletion of the polyglutamate operon (pga) in Bacillus licheniformis F11, a derivative form, F11.1 (Δpga), was obtained that, along with lacking polyglutamate (PGA) formation, displayed enhanced proteolytic activities. The phenotypic properties were maintained in a strain in which the chiBA operon was additionally deleted: F11.4 (ΔchiBA Δpga). These genetically modified strains, carrying the Δpga deletion either alone (F11.1) or together with the ΔchiBA (F11.4) deletion, were used in fermentations (20-liter scale) aiming at the deproteinization of shrimp shells in order to obtain long-chain chitin. After chemical deacetylation, the resulting chitosan samples were analyzed by nuclear magnetic resonance spectroscopy, size exclusion chromatography, and viscometry and compared to a chitosan preparation that was produced in parallel by chemical methods by a commercial chitosan supplier (GSRmbH). Though faint lipid impurities were present in the fermented polysaccharides, the viscosity of the material produced with the double-deletion mutant F11.4 (Δpga ΔchiBA) was higher than that of the chemically produced and commercially available samples (Cognis GmbH). Thus, enhanced proteolytic activities and a lack of chitinase activity render the double mutant F11.4 a powerful tool for the production of long-chain chitosan.
机译:通过有针对性地衣芽孢杆菌F11中的聚谷氨酸操纵子(pga)的删除,获得了衍生形式F11.1(Δpga),该形式与缺乏聚谷氨酸(PGA)的形成一起表现出增强的蛋白水解活性。在其中另外缺失了chiBA操纵子的菌株F11.4(ΔchiBAΔpga)中保持了表型特性。这些转基因菌株既携带Δpga缺失(F11.1),又携带ΔchiBA(F11.4)缺失,被用于发酵(20升规模),目的是对虾壳进行脱蛋白,以获得更长的时间。链几丁质。化学脱乙酰后,通过核磁共振波谱,尺寸排阻色谱和粘度分析法对所得的壳聚糖样品进行分析,并与由壳聚糖供应商(GSRmbH)通过化学方法并行生产的壳聚糖制剂进行比较。尽管在发酵的多糖中存在微弱的脂质杂质,但使用双缺失突变体F11.4(ΔpgaΔchiBA)制备的材料的粘度高于化学制备的市售样品的粘度(Cognis GmbH)。因此,增强的蛋白水解活性和缺乏几丁质酶的活性使得双突变体F11.4成为生产长链壳聚糖的有力工具。

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