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1,8-二羟基萘(DHN)-黑色素使黑色素深色隔孢腔真菌分离株耐受镉。

1,8-dihydroxy naphthalene (DHN) - melanin confers tolerance to cadmium in isolates of melanised dark septate endophytes.

机构信息

Department of Biology, Biotechnical Faculty, University of Ljubljana, Večna pot 111, SI-1000 Ljubljana, Slovenia.

Department of Biology, Biotechnical Faculty, University of Ljubljana, Večna pot 111, SI-1000 Ljubljana, Slovenia.

出版信息

Ecotoxicol Environ Saf. 2021 Oct 1;222:112493. doi: 10.1016/j.ecoenv.2021.112493. Epub 2021 Jul 12.

Abstract

The contribution of 1,8-dihydroxy naphthalene (DHN) melanin to cadmium (Cd) tolerance in two dark septate endophytes (DSE) of the genus Cadophora with different melanin content was investigated in vitro. The DSE isolate Cad#148 with higher melanin content showed higher tolerance to Cd than the less melanised Cad#149. Melanin synthesis was significantly reduced by Cd in both isolates with uninhibited melanin synthesis, in a dose-dependent manner. Inhibition of melanin synthesis by tricyclazole reduced the relative growth of Cad#148 exposed to Cd and did not affect Cad#149. Cd accumulation was not altered by tricyclazole in the two isolates, but it increased catalase and reduced glutathione reductase activity in more melanised Cad#148, indicating higher stress levels. In contrast, in Cad#149 the enzyme activity was less affected by tricyclazole, indicating a more pronounced role of melanin-independent Cd tolerance mechanisms. Cd ligand environment in fungal mycelia was analysed by extended EXAFS (X-ray absorption fine structure). It revealed that Cd was mainly bound to O- and S-ligands, including hydroxyl, carboxyl, phosphate and thiol groups. A similar proportion of S- and O- ligands (~35% and ~65%) were found in both isolates with uninhibited melanin synthesis. Among O-ligands two types with Cd-O-C- and Cd-O-P- coordination were identified. Tricyclazole altered Cd-O- ligand environment in both fungal isolates by reducing the proportion of Cd-O-C- and increasing the proportion of Cd-O-P coordination. DHN-melanin, among other tolerance mechanisms, significantly contributes to Cd tolerance in more melanised DSE fungi by immobilising Cd to hydroxyl groups and maintaining the integrity of the fungal cell wall.

摘要

体外研究了两种不同黑色素含量的拟茎点霉属(Cadophora)深绿隔内生真菌(DSE)中 1,8-二羟基萘(DHN)黑色素对镉(Cd)耐受性的贡献。黑色素含量较高的 DSE 分离株 Cad#148 比黑色素含量较低的 Cad#149 对 Cd 具有更高的耐受性。在两种分离株中,黑色素的合成均被 Cd 显著抑制,且呈剂量依赖性。三环唑抑制黑色素合成,降低了暴露于 Cd 的 Cad#148 的相对生长,但对 Cad#149 没有影响。三环唑对两种分离株的 Cd 积累没有影响,但增加了更黑色素化的 Cad#148 中的过氧化氢酶和还原型谷胱甘肽还原酶的活性,表明其胁迫水平更高。相比之下,在 Cad#149 中,酶活性受三环唑的影响较小,表明黑色素非依赖性 Cd 耐受机制的作用更为明显。通过扩展的 EXAFS(X 射线吸收精细结构)分析了真菌菌丝体中 Cd 的配体环境。结果表明,Cd 主要与 O 和 S 配体结合,包括羟基、羧基、磷酸和巯基。在黑色素合成不受抑制的两种分离株中,S 和 O 配体的比例相似(35%和65%)。在 O 配体中,鉴定出两种类型的 Cd-O-C-和 Cd-O-P 配位。三环唑通过降低 Cd-O-C-的比例和增加 Cd-O-P 配位的比例,改变了两种真菌分离株的 Cd-O-配体环境。DHN-黑色素与其他耐受机制一起,通过将 Cd 固定在羟基上并维持真菌细胞壁的完整性,显著促进了更黑色素化的 DSE 真菌对 Cd 的耐受性。

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