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[具体名称1]与[具体名称2]的真菌-真菌关联以及共生真菌的耐镉特性

Fungus-Fungus Association of and and Cadmium Resistance Characteristics of Symbiotic Fungus .

作者信息

Tian Zhen, Wang Yunan, Zhuang Yongliang, Mao Chunze, Shi Yujia, Sun Liping

机构信息

Faculty of Food Science and Engineering, Kunming University of Science and Technology, No. 727, Jingming South Road, Chenggong District, Kunming 650500, China.

出版信息

J Fungi (Basel). 2022 May 27;8(6):578. doi: 10.3390/jof8060578.

Abstract

Fungi bioaccumulation of heavy metals is a promising approach to remediate polluted soil and water. could accumulate high amounts of Cd, even in a natural habitat with low Cd contents. This study found a symbiotic association of with a fungus. The symbiotic fungus was isolated and identified as . The isolated strain had a strong ability to tolerate Cd. The minimum inhibitory concentration of Cd of fungal growth was 200 mg·L. The Cd bioaccumulation capacity of the fungus reached 10.03 mg·g. The biomass production of the fungus was promoted by 20 mg·L Cd. However, high concentrations of Cd suppressed fungal growth and significantly altered the morphology and fine texture of fungal hyphae and chlamydospores. The immobilization effects of the cell wall and acid compounds and antioxidant enzymes were employed by the fungus to alleviate the toxic effects of Cd. The results not only demonstrate a new insight into the Cd bioconcentration mechanisms of but also provide a potential bioremediation fungus for Cd contamination.

摘要

真菌对重金属的生物累积是一种修复污染土壤和水体的很有前景的方法。(该真菌)即使在镉含量低的自然栖息地也能累积大量的镉。本研究发现(某种植物)与一种真菌存在共生关系。这种共生真菌被分离出来并鉴定为(具体真菌名称未给出)。分离出的菌株具有很强的耐镉能力。镉对真菌生长的最低抑制浓度为200毫克·升。该真菌的镉生物累积能力达到10.03毫克·克。20毫克·升的镉促进了该真菌的生物量生产。然而,高浓度的镉抑制了真菌生长,并显著改变了真菌菌丝和厚垣孢子的形态及精细结构。该真菌利用细胞壁、酸性化合物和抗氧化酶的固定化作用来减轻镉的毒性作用。这些结果不仅为(某种植物)的镉生物浓缩机制提供了新的见解,也为镉污染提供了一种潜在的生物修复真菌。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2378/9225628/a6e56f1d7419/jof-08-00578-g001.jpg

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