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从超镁铁质土壤中分离出的耐镍外生菌根白囊耙齿菌中镍(Ni)外流的证据。

Evidence of nickel (Ni) efflux in Ni-tolerant ectomycorhizal Pisolithus albus isolated from ultramafic soil.

作者信息

Majorel Clarisse, Hannibal Laure, Ducousso Marc, Lebrun Michel, Jourand Philippe

出版信息

Environ Microbiol Rep. 2014 Oct;6(5):510-8. doi: 10.1111/1758-2229.12176.

Abstract

Nickel (Ni)-tolerant ectomycorrhizal Pisolithus albus was isolated from extreme ultramafic soils that are naturally rich in heavy metals. This study aimed to identify the specific molecular mechanisms associated with the response of P. albus to nickel. In presence of high concentration of nickel, P. albus Ni-tolerant isolate showed a low basal accumulation of nickel in its fungal tissues and was able to perform a metal efflux mechanism. Three genes putatively involved in metal efflux were identified from the P. albus transcriptome, and their overexpression was confirmed in the mycelium that was cultivated in vitro in the presence of nickel and in fungal tissues that were sampled in situ. Cloning these genes in yeast provided significant advantages in terms of nickel tolerance (+ 31% Ni EC50) and growth (+ 83% μ) compared with controls. Furthermore, nickel efflux was also detected in the transformed yeast cells. Protein sequence analysis indicated that the genes encoded a P-type-ATPase, an ABC transporter and a major facilitator superfamily permease (MFS). This study sheds light on a global mechanism of metal efflux by P. albus cells that supports nickel tolerance. These specific responses to nickel might contribute to the fungal adaptation in ultramafic soil.

摘要

耐镍外生菌根真菌豆包块菌是从天然富含重金属的极端超镁铁质土壤中分离出来的。本研究旨在确定与豆包块菌对镍的反应相关的具体分子机制。在高浓度镍存在的情况下,耐镍的豆包块菌分离株在其真菌组织中的镍基础积累量较低,并且能够执行金属外排机制。从豆包块菌转录组中鉴定出三个可能参与金属外排的基因,并且在镍存在下体外培养的菌丝体以及原位采样的真菌组织中证实了它们的过表达。与对照相比,在酵母中克隆这些基因在耐镍性(镍EC50提高31%)和生长(μ提高83%)方面具有显著优势。此外,在转化的酵母细胞中也检测到了镍外排。蛋白质序列分析表明,这些基因编码一种P型ATP酶、一种ABC转运蛋白和一种主要促进剂超家族通透酶(MFS)。本研究揭示了豆包块菌细胞支持耐镍性的金属外排全局机制。这些对镍的特异性反应可能有助于真菌在超镁铁质土壤中的适应性。

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