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Gene Transfer in Leptolyngbya sp. Strain BL0902, a Cyanobacterium Suitable for Production of Biomass and Bioproducts

机译:Leptolyngbya sp。中的基因转移。蓝细菌菌株BL0902,适用于生产生物质和生物制品

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摘要

Current cyanobacterial model organisms were not selected for their growth traits or potential for the production of renewable biomass, biofuels, or other products. The cyanobacterium strain BL0902 emerged from a search for strains with superior growth traits. Morphology and 16S rRNA sequence placed strain BL0902 in the genus Leptolyngbya. Leptolyngbya sp. strain BL0902 (hereafter Leptolyngbya BL0902) showed robust growth at temperatures from 22°C to 40°C and tolerated up to 0.5 M NaCl, 32 mM urea, high pH, and high solar irradiance. Its growth rate under outdoor conditions rivaled Arthrospira (“pirulina” strains. Leptolyngbya BL0902 accumulated higher lipid content and a higher proportion of monounsaturated fatty acids than Arthrospira strains. In addition to these desirable qualities, Leptolyngbya BL0902 is amenable to genetic engineering that is reliable, efficient, and stable. We demonstrated conjugal transfer from Escherichia coli of a plasmid based on RSF1010 and expression of spectinomycin/streptomycin resistance and yemGFP reporter transgenes. Conjugation efficiency was investigated in biparental and triparental matings with and without a “elper”plasmid that carries DNA methyltransferase genes, and with two different conjugal plasmids. We also showed that Leptolyngbya BL0902 is amenable to transposon mutagenesis with a Tn5 derivative. To facilitate genetic manipulation of Leptolyngbya BL0902, a conjugal plasmid vector was engineered to carry a trc promoter upstream of a Gateway recombination cassette. These growth properties and genetic tools position Leptolyngbya BL0902 as a model cyanobacterial production strain.
机译:没有选择当前的蓝细菌模型生物的生长特性或可再生生物质,生物燃料或其他产品的生产潜力。蓝细菌菌株BL0902是通过寻找具有优良生长特性的菌株而出现的。形态学和16S rRNA序列将菌株BL0902置于钩端螺旋体属中。钩端螺旋体BL0902菌株(以下简称Leptolyngbya BL0902)在从22°C到40°C的温度下显示出强劲的生长,并耐受高达0.5 M NaCl,32 mM尿素,高pH和高太阳辐照度。它在室外条件下的生长速度可与节肢螺旋藻(“ pirulina”菌株)相匹敌。钩端螺旋体BL0902积累的脂质含量和单不饱和脂肪酸的比例高于节肢螺旋体菌株。除这些理想的品质外,钩端螺旋体BL0902还可以通过可靠的遗传工程改造我们证明了基于RSF1010的质粒从大肠杆菌的接合转移,以及壮观霉素/链霉素抗性和yemGFP报告基因转基因的表达,研究了双亲和三亲交配中带有或不带有携带DNA的“ elper”质粒的共轭效率。甲基转移酶基因,以及两个不同的结合质粒,我们还显示了钩端螺旋体BL0902可以通过Tn5衍生物进行转座子诱变。为了促进对钩端螺旋体BL0902的遗传操作,设计了一个偶联质粒载体以在Gateway重组上游携带trc启动子卡带。生长特性和遗传工具将Leptolyngbya BL0902定位为蓝藻生产菌株的典范。

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