Peca Loredana, Kós P B, Vass I
Institute of Plant Biology, Biological Research Center, Hungarian Academy of Sciences, Szeged, Hungary.
Acta Biol Hung. 2007;58 Suppl:11-22. doi: 10.1556/ABiol.58.2007.Suppl.2.
Aiming at developing cyanobacterial-based biosensors for heavy metal detection, expression of heavy metal inducible genes of the cyanobacterium Synechocystis PCC 6803 was investigated by quantitative RT-PCR upon 15 minutes exposure to biologically relevant concentrations of Co2+, Zn2+, Ni2+, Cd2+, Cr6+, As3+ and As5+. The ziaA gene, which encodes a Zn2+-transporting P-type ATPase showed a markedly increased mRNA level after incubation with Cd2+ and arsenic ions, besides the expected induction by Zn2+ ions. The Co2+ efflux system-encoding gene coaT was strongly induced by Co2+ and Zn2+ ions, moderately induced by As3+ ions, and induced at a relatively low level by Cd2+ and As5+ ions. Expression of nrsB, which encodes a part of a putative Ni2+ efflux system was highly induced by Ni2+ salts and at a low extent by Co2+ and Zn2+ salts. The arsB gene, which encodes a putative arsenite-specific efflux pump was highly induced by As3+ and As5+ ions, while other metal salts provoked insignificant transcript level increase. The transcript of chrA, in spite of the high sequence similarity of its protein product with several bacterial chromate transporters, shows no induction upon Cr6+ salt exposure. We conclude that due to the largely unspecific heavy metal response of the studied genes only nrsB and arsB are potential candidates for biosensing applications for detection of Ni2+ and arsenic pollutants, respectively.
旨在开发用于重金属检测的基于蓝藻的生物传感器,在将集胞藻PCC 6803暴露于生物相关浓度的Co2+、Zn2+、Ni2+、Cd2+、Cr6+、As3+和As5+ 15分钟后,通过定量逆转录聚合酶链反应(qRT-PCR)研究了该蓝藻重金属诱导基因的表达。编码Zn2+转运P型ATP酶的ziaA基因,除了受到Zn2+离子的预期诱导外,在与Cd2+和砷离子孵育后,mRNA水平显著增加。编码Co2+外排系统的基因coaT受到Co2+和Zn2+离子的强烈诱导,受到As3+离子的中度诱导,受到Cd2+和As5+离子的相对低水平诱导。编码假定的Ni2+外排系统一部分的nrsB的表达受到Ni2+盐的高度诱导,受到Co2+和Zn2+盐的低水平诱导。编码假定的亚砷酸盐特异性外排泵的arsB基因受到As3+和As5+离子的高度诱导,而其他金属盐引起的转录水平增加不显著。chrA的转录本,尽管其蛋白质产物与几种细菌铬酸盐转运蛋白具有高度序列相似性,但在暴露于Cr6+盐时未显示诱导作用。我们得出结论,由于所研究基因的重金属反应在很大程度上是非特异性的,只有nrsB和arsB分别是用于检测Ni2+和砷污染物的生物传感应用的潜在候选基因。