Hou Yunnan, Cheng Keke, Li Zehua, Ma Xiaohui, Wei Yahong, Zhang Lei, Wang Yao
College of Life Sciences, Northwest A&F University, Yangling, Shaanxi, China.
College of Life Sciences, Northwest A&F University, Yangling, Shaanxi, China; State Key Laboratory of Crop Stress Biology for Arid Areas, Northwest A&F University, Yangling, Shaanxi, China; Biomass Energy Center for Arid and Semi-Arid Lands, Northwest A&F University, Yangling, Shaanxi, China.
PLoS One. 2015 Oct 27;10(10):e0140962. doi: 10.1371/journal.pone.0140962. eCollection 2015.
In the present study, we evaluated a bacterium that was isolated from waste water for its ability to take up cadmium and manganese. The strain, identified both biochemically and by its 16S rRNA gene sequence as Klebsiella, was named Yangling I2 and was found to be highly resistant to heavy metals. Surface characterization of the bacterium via SEM revealed gross morphological changes, with cells appearing as biconcave discs after metal exposure rather than their typical rod shape. The effects of pH, temperature, heavy metal concentration, agitation and biomass concentration on the uptake of Cd(II) and Mn(II) was measured using atomic absorption spectrophotometry. The results showed that the biosorption was most affected by pH and incubation temperature, being maximized at pH 5.0 and 30°C, with absorption capacities of 170.4 and 114.1 mg/g for Cd(II) and Mn(II), respectively. Two models were investigated to compare the cells' capacity for the biosorption of Cd and Mn, and the Langmuir model based on fuzzy linear regression was found to be close to the observed absorption curves and yield binding constants of 0.98 and 0.86 for Cd and Mn, respectively. This strain of Klebsiella has approximately ten times the absorption capacity reported for other strains and is promising for the removal of heavy metals from waste water.
在本研究中,我们评估了从废水中分离出的一种细菌摄取镉和锰的能力。该菌株经生化鉴定和16S rRNA基因序列鉴定为克雷伯氏菌,命名为杨凌I2,发现其对重金属具有高度抗性。通过扫描电子显微镜对该细菌进行表面表征,结果显示其形态发生了显著变化,金属暴露后细胞呈现双凹圆盘状,而非典型的杆状。使用原子吸收分光光度法测量了pH值、温度、重金属浓度、搅拌和生物量浓度对Cd(II)和Mn(II)摄取的影响。结果表明,生物吸附受pH值和培养温度的影响最大,在pH 5.0和30°C时达到最大值,Cd(II)和Mn(II)的吸附容量分别为170.4和114.1 mg/g。研究了两种模型来比较细胞对Cd和Mn的生物吸附能力,发现基于模糊线性回归的朗缪尔模型与观察到的吸附曲线接近,Cd和Mn的结合常数分别为0.98和0.86。这种克雷伯氏菌菌株的吸附能力约为其他菌株报道值的十倍,有望用于从废水中去除重金属。