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首页> 外文期刊>Bioresources and Bioprocessing >Cultural optimization and metal effects of Shewanella xiamenensis BC01 growth and swarming motility
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Cultural optimization and metal effects of Shewanella xiamenensis BC01 growth and swarming motility

机译:厦门希瓦氏菌BC01生长和繁殖力的培养优化和金属效应。

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Background: Shewanella species belonging to dissimilatory metal bacteria were found to decolorize most textile dyes and had also attracted great interests in regard to bioremediation. However, studies have rarely been reported on Shewanella xiamenensis BC01, which was isolated as a biodecolorization and bioelectricity strain recently. In this study, the effect of cultivation conditions on S. xiamenensis BC01 was studied to explore how environmental conditions may influence S. xiamenensis growth and swarming motility. Results: Shewanella xiamenensis BC01 grew over a wide range of pH (5.0-9.0) and mild temperatures (25-42℃). The optimal conditions for cell growth were using Luria-Bertani (LB) as medium with shaking at 150 rpm, 37℃, and pH 8.0 which had been confirmed by shift pH and temperature. S. xiamenensis BC01 was able to resist 1 mM concentrations of various metal ions, i.e., Ca~(2+), Mg~(2+), Cu~(2+), Zn~(2+), Mn~(2+), Fe~(3+), and Al~(3+), respectively. As shown in scanning electron microscopy (SEM) analyses, cell morphologies were slightly changed under metal stress. Swarming motility showed that the velocity ranking at 80 μM and 1 mM of metal was Al Cr LB Zn Fe Cu and Mg Mn Ca, respectively. Conclusions: This study evaluates the impact of cultivation methods and metal ions on the activity of S. xiamenensis BC01 and provides an alternative to bioremediation of heavy metal-containing wastewaters by utilizing this strain.
机译:背景:发现属于异化金属细菌的希瓦氏菌物种使大多数纺织品染料脱色,并且在生物修复方面也引起了极大兴趣。然而,关于厦门希瓦氏菌BC01的研究很少报道,该细菌最近被分离为生物脱色和生物电菌株。在这项研究中,研究了栽培条件对厦门链球菌BC01的影响,以探索环境条件如何影响厦门链球菌的生长和成群运动。结果:厦门希瓦氏菌BC01在较宽的pH(5.0-9.0)和温和的温度(25-42℃)范围内生长。细胞生长的最佳条件是使用Luria-Bertani(LB)作为培养基,在150 rpm,37℃和pH 8.0的条件下摇动,这已经通过改变pH和温度来确定。厦门链霉菌BC01能够抵抗1 mM浓度的各种金属离子,例如Ca〜(2 +),Mg〜(2 +),Cu〜(2 +),Zn〜(2 +),Mn〜(2 +),Fe〜(3+)和Al〜(3+)。如扫描电子显微镜(SEM)分析所示,在金属应力下,细胞形态略有变化。成群运动表明,金属在80μM和1 mM处的速度等级分别为Al> Cr> LB> Zn> Fe> Cu和Mg> Mn>Ca。结论:本研究评估了栽培方法和金属离子对厦门链球菌BC01活性的影响,并为利用该菌株生物修复含重金属废水提供了一种替代方法。

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