Bankar Ashok, Zinjarde Smita, Shinde Manisha, Gopalghare Gita, Ravikumar Ameeta
Institute of Bioinformatics and Biotechnology, Savitribai Phule Pune University, Pune, Maharashtra, India.
MES Abasaheb Garware College Affiliated to Savitribai Phule Pune University, Karve Road, Pune, Maharashtra, 411004, India.
Extremophiles. 2018 Jul;22(4):617-628. doi: 10.1007/s00792-018-1022-y. Epub 2018 Mar 29.
Heavy metal tolerance of two marine strains of Yarrowia lipolytica was tested on solid yeast extract peptone dextrose agar plates. Based on minimum inhibitory concentration esteems, it is inferred that the two strains of Y. lipolytica were tolerant to heavy metals such as Pb(II), Cr(III), Zn(II), Cu(II), As(V), and Ni(II) ions. The impact of various heavy metal concentrations on the growth kinetics of Y. lipolytica was likewise assessed. With increased heavy metal concentration, the specific growth rate was reduced with delayed doubling time. Furthermore, biofilm development of both yeasts on the glass surfaces and in microtitre plates was assessed in presence of different heavy metals. In microtitre plates, a short lag phase of biofilm formation was noticed without the addition of heavy metals in yeast nitrogen base liquid media. A lag phase was extended over increasing metal concentrations of media. Heavy metals like Cr(VI), Cd(II), and As(V) are contrastingly influenced on biofilms' formation of microtitre plates. Other heavy metals did not much influence on biofilms development. Thus, biofilm formation is a strategy of Y. lipolytica under stress of heavy metals has significance in bioremediation process for recovery of heavy metals from contaminated environment.
在固体酵母提取物蛋白胨葡萄糖琼脂平板上测试了两株解脂耶氏酵母海洋菌株对重金属的耐受性。根据最低抑菌浓度估值,推断这两株解脂耶氏酵母对铅(II)、铬(III)、锌(II)、铜(II)、砷(V)和镍(II)等离子等重金属具有耐受性。同样评估了不同重金属浓度对解脂耶氏酵母生长动力学的影响。随着重金属浓度的增加,比生长速率降低,倍增时间延迟。此外,在不同重金属存在的情况下,评估了两种酵母在玻璃表面和微量滴定板中的生物膜形成情况。在微量滴定板中,在酵母氮基液体培养基中不添加重金属的情况下,观察到生物膜形成的滞后期较短。随着培养基中金属浓度的增加,滞后期延长。铬(VI)、镉(II)和砷(V)等重金属对微量滴定板生物膜的形成有相反的影响。其他重金属对生物膜的形成影响不大。因此,生物膜形成是解脂耶氏酵母在重金属胁迫下的一种策略,在从污染环境中回收重金属的生物修复过程中具有重要意义。