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尖叶蓼和南美合萌的内生真菌群落受土壤汞污染影响。

Endophytic fungal communities of Polygonum acuminatum and Aeschynomene fluminensis are influenced by soil mercury contamination.

作者信息

Pietro-Souza William, Mello Ivani Souza, Vendruscullo Suzana Junges, Silva Gilvan Ferreira da, Cunha Cátia Nunes da, White James Francis, Soares Marcos Antônio

机构信息

Department of Botany and Ecology, Laboratory of Biotechnology and Microbial Ecology, Institute of Biosciences, Federal University of Mato Grosso, Cuiabá, Mato Grosso, Brazil.

Department of Botany and Ecology, Institute of Biosciences, Federal University of Mato Grosso, Brazil.

出版信息

PLoS One. 2017 Jul 25;12(7):e0182017. doi: 10.1371/journal.pone.0182017. eCollection 2017.

Abstract

The endophytic fungal communities of Polygonum acuminatum and Aeschynomene fluminensis were examined with respect to soil mercury (Hg) contamination. Plants were collected in places with and without Hg+2 for isolation and identification of their endophytic root fungi. We evaluated frequency of colonization, number of isolates and richness, indices of diversity and similarity, functional traits (hydrolytic enzymes, siderophores, indoleacetic acid, antibiosis and metal tolerance) and growth promotion of Aeschynomene fluminensis inoculated with endophytic fungi on soil with mercury. The frequency of colonization, structure and community function, as well as the abundant distribution of taxa of endophytic fungi were influenced by mercury contamination, with higher endophytic fungi in hosts in soil with mercury. The presence or absence of mercury in the soil changes the profile of the functional characteristics of the endophytic fungal community. On the other hand, tolerance of lineages to multiple metals is not associated with contamination. A. fluminensis depends on its endophytic fungi, since plants free of endophytic fungi grew less than expected due to mercury toxicity. In contrast plants containing certain endophytic fungi showed good growth in soil containing mercury, even exceeding growth of plants cultivated in soil without mercury. The data obtained confirm the hypothesis that soil contamination by mercury alters community structure of root endophytic fungi in terms of composition, abundance and species richness. The inoculation of A. fluminensis with certain strains of stress tolerant endophytic fungi contribute to colonization and establishment of the host and may be used in processes that aim to improve phytoremediation of soils with toxic concentrations of mercury.

摘要

针对土壤汞(Hg)污染情况,对尖叶蓼和河生合萌的内生真菌群落进行了研究。在有汞离子和无汞离子的地方采集植物,用于分离和鉴定其内生根真菌。我们评估了接种内生真菌的河生合萌在含汞土壤上的定殖频率、分离物数量和丰富度、多样性和相似性指数、功能特性(水解酶、铁载体、吲哚乙酸、抗菌作用和金属耐受性)以及生长促进情况。汞污染影响了内生真菌的定殖频率、结构和群落功能,以及内生真菌类群的丰富分布,汞污染土壤中的宿主植物含有更多的内生真菌。土壤中汞的存在与否改变了内生真菌群落功能特征的概况。另一方面,谱系对多种金属的耐受性与污染无关。河生合萌依赖其内生真菌,因为不含内生真菌的植物由于汞毒性生长低于预期。相比之下,含有某些内生真菌的植物在含汞土壤中生长良好,甚至超过了在无汞土壤中种植的植物的生长。所获得的数据证实了以下假设:汞对土壤的污染在组成、丰度和物种丰富度方面改变了根内生真菌的群落结构。用某些耐胁迫内生真菌菌株接种河生合萌有助于宿主的定殖和建立,可用于旨在改善汞浓度有毒土壤植物修复的过程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7013/5526616/ae716017fa99/pone.0182017.g001.jpg

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