Centro de Investigación en Ciencia Aplicada y Tecnología Avanzada, Instituto Politécnico Nacional, Querétaro, Mexico.
School of Engineering and Sciences, Tecnologico de Monterrey, Campus Querétaro, Querétaro, Mexico.
J Basic Microbiol. 2020 Jan;60(1):22-26. doi: 10.1002/jobm.201900323. Epub 2019 Nov 6.
Metals are among the most prevalent pollutants released into the environment. For these reasons, the use of biomarkers for environmental monitoring of individuals and populations exposed to metal pollution has gained considerable attention, offering fast and sensitive detection of chemical stress in organisms. There are different metal resistance genes in bacteria that can be used as biomarkers, including cation diffusion facilitators carrying metal ions; the prototype is the cobalt-zinc-cadmium transporter (czcD). The present study reports the expression changes in the czcD gene in Bacillus megaterium and Microbacterium liquefaciens under nickel and vanadium exposure by real-time polymerase chain reaction. The nickel-vanadium-resistant strains of B. megaterium and M. liquefaciens used in this study were isolated from mine tailings in Guanajuato, Mexico. The czcD gene showed high expression under exposure to 200 ppm of Ni and 200 ppm of V during the logarithmic growth phase of M. liquefaciens in PHGII liquid media. In contrast, no changes were observed in B. megaterium during logarithmic and stationary growth, perhaps due to the gene having differential expression during the growth phases. The expression profiles obtained for czcD show the possibility of using this gene from M. liquefaciens as a biomarker of nickel and vanadium pollution in microorganisms.
金属是释放到环境中的最普遍的污染物之一。出于这些原因,使用生物标志物来监测暴露于金属污染的个体和人群的环境,已经引起了相当大的关注,它可以快速、敏感地检测生物体的化学应激。细菌中有不同的金属抗性基因可用作生物标志物,包括携带金属离子的阳离子扩散促进剂;原型是钴-锌-镉转运体(czcD)。本研究通过实时聚合酶链反应报告了在镍和钒暴露下巨大芽孢杆菌和液化微杆菌中 czcD 基因的表达变化。本研究中使用的耐镍-钒的巨大芽孢杆菌和液化微杆菌菌株是从墨西哥瓜纳华托州的矿山尾矿中分离出来的。在 PHGII 液体培养基中,液化微杆菌对数生长期暴露于 200ppm 的 Ni 和 200ppm 的 V 时,czcD 基因表现出高表达。相比之下,在对数生长期和静止生长期,巨大芽孢杆菌没有观察到变化,这可能是由于该基因在不同的生长阶段有差异表达。获得的 czcD 表达谱表明,液化微杆菌中的该基因有可能作为微生物中镍和钒污染的生物标志物。