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Physiological traits of the symbiotic bacterium Teredinibacter turnerae isolated from the mangrove shipworm Neoteredo reynei

机译:从红树林ship虫新特雷多菌中分离出来的共生细菌Teredinibacter turnerae的生理特性

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摘要

Nutrition in the Teredinidae family of wood-boring mollusks is sustained by cellulolytic/nitrogen fixing symbiotic bacteria of the Teredinibacter clade. The mangrove Teredinidae Neoteredo reynei is popularly used in the treatment of infectious diseases in the north of Brazil. In the present work, the symbionts of N. reynei, which are strictly confined to the host's gills, were conclusively identified as Teredinibacter turnerae. Symbiont variants obtained in vitro were able to grow using casein as the sole carbon/nitrogen source and under reduced concentrations of NaCl. Furthermore, cellulose consumption in T. turnerae was clearly reduced under low salt concentrations. As a point of interest, we hereby report first hand that T. turnerae in fact exerts antibiotic activity. Furthermore, this activity was also affected by NaCl concentration. Finally, T. turnerae was able to inhibit the growth of Gram-negative and Gram-positive bacteria, this including strains of Sphingomonas sp., Stenotrophomonas maltophilia, Bacillus cereus and Staphylococcus sciuri. Our findings introduce new points of view on the ecology of T. turnerae, and suggest new biotechnological applications for this marine bacterium.
机译:Teredinidae枯燥的软体动物家族的营养是通过Teredinibacter进化枝的纤维素分解/固氮共生细菌来维持的。红树林Teredinidae Neoteredo reynei在巴西北部广泛用于治疗传染病。在目前的工作中,严格限制在宿主腮中的雷氏猪笼草共生菌最终被确定为特里尼氏菌。体外获得的共生体变体能够使用酪蛋白作为唯一的碳/氮源并在降低的NaCl浓度下生长。此外,在低盐浓度下,豆科植物纤维素的消耗明显减少。有趣的是,我们特此报告Turn。a。turnerae实际上发挥抗生素活性。此外,该活性还受到NaCl浓度的影响。最终,T。turnerae能够抑制革兰氏阴性和革兰氏阳性细菌的生长,其中包括鞘氨醇单胞菌,嗜麦芽单胞菌,嗜酸芽孢杆菌和葡萄球菌。我们的发现介绍了对转角藻生态学的新观点,并提出了该海洋细菌的新生物技术应用。

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