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Metal induction of a Pisolithus albus metallothionein and its potential involvement in heavy metal tolerance during mycorrhizal symbiosis

机译:Pisolithus albus金属硫蛋白的金属诱导及其在菌根共生过程中可能对重金属的耐受性

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摘要

Metallothioneins (MTs) are small, cysteine-rich peptides involved in intracellular sequestration of heavy metals in eukaryotes. We examined the role in metal homeostasis and detoxification of an MT from the ectomycorrhizal fungus Pisolithus albus (PaMT1). PaMT1 encodes a 35 amino acid-long polypeptide, with 7 cysteine residues; most of them part of a C-x-C motif found in other known basidiomycete MTs. The expression levels of PaMT1 increased as a function of increased external Cu and Cd concentrations and were higher with Cu than with Cd. Heterologous complementation assays in metal-sensitive yeast mutants indicated that PaMT1 encodes a polypeptide capable of conferring higher tolerance to both Cu and Cd. Eucalyptus tereticornis plantlets colonized with P.albus grown in the presence of Cu and Cd showed better growth compared with those with non-mycorrhizal plants. Higher PaMT1 expression levels were recorded in mycorrhizal plants grown in the presence of Cu and Cd compared with those in control mycorrhizal plants not exposed to heavy metals. These data provide the first evidence to our knowledge that fungal MTs could protect ectomycorrhizal fungi from heavy metal stress and in turn help the plants to establish in metal-contaminated sites.
机译:金属硫蛋白(MTs)是小的,富含半胱氨酸的肽,参与真核生物中重金属的细胞内螯合。我们研究了金属的动态平衡和MT的根除菌根真菌Pisolithus albus(PaMT1)的MT的解毒作用。 PaMT1编码一个35个氨基酸长的多肽,带有7个半胱氨酸残基;它们中的大多数是在其他已知的担子菌MT中发现的C-x-C基序的一部分。 PaMT1的表达水平随外部Cu和Cd浓度的增加而增加,而Cu的表达水平高于Cd。金属敏感的酵母突变体中的异源互补测定表明,PaMT1编码能够赋予对Cu和Cd更高耐受性的多肽。与无菌根植物相比,在Cu和Cd存在下生长的P.albus定殖的桉树小苗显示出更好的生长。与未暴露于重金属的对照菌根植物相比,在Cu和Cd存在下生长的菌根植物中PaMT1表达水平更高。这些数据为我们的知识提供了第一个证据,即真菌MTs可以保护外生菌根真菌免受重金属胁迫,进而帮助植物在金属污染的地区定殖。

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