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首页> 外文期刊>Applied and Environmental Microbiology >Spirochaeta coccoides sp. nov., a Novel Coccoid Spirochete from the Hindgut of the Termite Neotermes castaneus
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Spirochaeta coccoides sp. nov., a Novel Coccoid Spirochete from the Hindgut of the Termite Neotermes castaneus

机译:Spirochaeta coccoides sp。十一月,来自白蚁新白蚁castaneus的后肠的新型球状螺旋藻

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A novel spirochete strain, SPN1, was isolated from the hindgut contents of the termite Neotermes castaneus. The highest similarities (about 90%) of the strain SPN1 16S rRNA gene sequence are with spirochetes belonging to the genus Spirochaeta, and thus, the isolate could not be assigned to the so-called termite clusters of the treponemes or to a known species of the genus Spirochaeta. Therefore, it represents a novel species, which was named Spirochaeta coccoides. In contrast to all other known validly described spirochete species, strain SPN1 shows a coccoid morphology and is immotile. The isolated strain is obligately anaerobic and ferments different mono-, di-, and oligosaccharides by forming formate, acetate, and ethanol as the main fermentation end products. Furthermore, strain SPN1 is able to grow anaerobically with yeast extract as the sole carbon and energy source. The fastest growth was obtained at 30°C, the temperature at which the termites were also grown. The cells possess different enzymatic activities that are involved in the degradation of lignocellulose in the termite hindgut, such as β-d-glucosidase, α-l-arabinosidase, and β-d-xylosidase. Therefore, they may play an important role in the digestion of breakdown products from cellulose and hemicellulose in the termite gut.
机译:从白蚁Neotermes castaneus的后肠中分离出一种新的螺旋体菌株SPN1。菌株SPN1 16S rRNA基因序列的最高相似性(约90%)与属于Spirochaeta属的螺旋体有关,因此不能将该分离物归类为所谓的端粒白蚁簇或已知物种。 Spirochaeta属。因此,它代表了一个新的物种,被命名为Spirochaeta coccoides。与所有其他已知的有效描述的螺旋体物种相反,SPN1菌株呈类球体形态,不运动。分离出的菌株专为厌氧菌,通过形成甲酸盐,乙酸盐和乙醇作为主要发酵终产物来发酵不同的单糖,二糖和寡糖。此外,菌株SPN1能够以酵母菌提取物作为唯一碳源和能源来厌氧生长。在30°C(白蚁也生长的温度)下获得了最快的生长。这些细胞具有与白蚁后肠中木质纤维素降解有关的不同酶促活性,例如β-d-葡萄糖苷酶,α-1-阿拉伯糖苷酶和β-d-木糖苷酶。因此,它们可能在白蚁肠中纤维素和半纤维素的分解产物的消化中起重要作用。

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