Sharples J M, Meharg A A, Chambers S M, Cairney J W
Mycorrhiza Research Group, School of Science, University of Western Sydney, P.O. Box 10, Kingswood NSW 2747, Australia.
Plant Physiol. 2000 Nov;124(3):1327-34. doi: 10.1104/pp.124.3.1327.
Arsenate resistance is exhibited by the ericoid mycorrhizal fungus Hymenoscyphus ericae collected from As-contaminated mine soils. To investigate the mechanism of arsenate resistance, uptake kinetics for arsenate (H(2)AsO(4)(-)), arsenite (H(3)AsO(3)), and phosphate (H(2)PO(4)(-)) were determined in both arsenate-resistant and -non-resistant H. ericae. The uptake kinetics of H(2)AsO(4)(-), H(3)AsO(3), and H(2)PO(4)(-) in both resistant and non-resistant isolates were similar. The presence of 5.0 microM H(2)PO(4)(-) repressed uptake of H(2)AsO(4)(-) and exposure to 0.75 mM H(2)AsO(4)(-) repressed H(2)PO(4)(-) uptake in both H. ericae. Mine site H. ericae demonstrated an enhanced As efflux mechanism in comparison with non-resistant H. ericae and lost approximately 90% of preloaded cellular As (1-h uptake of 0.22 micromol g(-1) dry weight h(-1) H(2)AsO(4)(-)) over a 5-h period in comparison with non-resistant H. ericae, which lost 40% of their total absorbed H(2)AsO(4)(-). As lost from the fungal tissue was in the form of H(3)AsO(3). The results of the present study demonstrate an enhanced H(3)AsO(3) efflux system operating in mine site H. ericae as a mechanism for H(2)AsO(4)(-) resistance. The ecological significance of this mechanism of arsenate resistance is discussed.
从受砷污染的矿质土壤中采集的类欧石楠菌根真菌欧石楠小皮伞表现出抗砷酸盐的特性。为了研究抗砷酸盐的机制,测定了抗砷酸盐和不抗砷酸盐的欧石楠小皮伞对砷酸盐(H₂AsO₄⁻)、亚砷酸盐(H₃AsO₃)和磷酸盐(H₂PO₄⁻)的吸收动力学。抗砷酸盐和不抗砷酸盐的菌株对H₂AsO₄⁻、H₃AsO₃和H₂PO₄⁻的吸收动力学相似。5.0微摩尔/升的H₂PO₄⁻会抑制H₂AsO₄⁻的吸收,而暴露于0.75毫摩尔/升的H₂AsO₄⁻会抑制欧石楠小皮伞对H₂PO₄⁻的吸收。与不抗砷酸盐的欧石楠小皮伞相比,矿区的欧石楠小皮伞表现出更强的砷外排机制,在5小时内,矿区的欧石楠小皮伞损失了约90%预先加载的细胞内砷(1小时吸收0.22微摩尔/克干重·小时的H₂AsO₄⁻),而不抗砷酸盐的欧石楠小皮伞只损失了其吸收的H₂AsO₄⁻总量的40%。从真菌组织中流失的砷是以H₃AsO₃的形式存在。本研究结果表明,矿区的欧石楠小皮伞中存在一种增强的H₃AsO₃外排系统,这是其抗H₂AsO₄⁻的一种机制。文中还讨论了这种抗砷酸盐机制的生态意义。