Melanin production and laccase mediated oxidative stress alleviation during fungal-fungal interaction among basidiomycete fungi.

IF 5.2 1区 生物学 Q1 MYCOLOGY Ima Fungus Pub Date : 2021-11-09 DOI:10.1186/s43008-021-00082-y
Samim Dullah, Dibya Jyoti Hazarika, Gunajit Goswami, Tanushree Borgohain, Alokesh Ghosh, Madhumita Barooah, Ashok Bhattacharyya, Robin Chandra Boro
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Abstract

Fungal-fungal interaction often leads to the change in metabolite profile of both the interacting fungus which may have potential implication in industry or agriculture. In the present study, we performed two sets of fungal-fungal interaction-Trametes coccinea (F3) with Leiotrametes lactinea (F9) and T. coccinea (F3) with T. versicolor (F1) to understand the changes in the metabolite profile during the interaction process and how this process impacts the hyphal/mycelial morphology of the participating fungi. The metabolites produced during interaction of T. coccinea (F3) with L. lactinea (F9) and T. coccinea (F3) with T. versicolor (F1) was analysed through liquid chromatography coupled to mass spectroscopy (LC-MS). Most of the metabolites secreted or produced during interaction are associated with defensive response. Further, visualization with scanning electron microscopy revealed that interaction between the tested fungi led to the changes in the hyphal morphology. The bipartite fungal interaction resulted in the production of a dark brown colour pigment-melanin as confirmed by the LC-MS, FTIR and NMR analysis. Moreover, the fungal-fungal interaction also led to increase in the production of laccase, a group of multicopper oxidases involved in detoxification of toxic compounds. Further, increased activity of superoxide dismutase, an enzyme that catalyzes the dismutation of the superoxide anion to hydrogen peroxide was also recorded during fungal-fungal interaction. Quantitative real-time PCR revealed upregulation of lcc1 (encoding a laccase enzyme) and few other stress related genes of T. versicolor during its hyphal interaction with T. coccinea, suggesting a direct correlation between laccase production and melanin production.

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基生真菌与真菌相互作用过程中黑色素的产生和漆酶介导的氧化应激缓解。
真菌与真菌之间的相互作用通常会导致相互作用真菌的代谢物谱发生变化,这可能会对工业或农业产生潜在影响。在本研究中,我们进行了两组真菌与真菌的相互作用--椰子栉菌(F3)与乳酸菌(F9)以及椰子栉菌(F3)与花色栉菌(F1),以了解在相互作用过程中代谢物谱的变化以及这一过程如何影响参与真菌的菌丝形态。通过液相色谱-质谱联用技术(LC-MS)分析了球孢子菌(F3)与 L. lactinea(F9)以及球孢子菌(F3)与 T. versicolor(F1)相互作用过程中产生的代谢物。在相互作用过程中分泌或产生的大多数代谢物都与防御反应有关。此外,通过扫描电子显微镜观察发现,受试真菌之间的相互作用导致了菌丝形态的变化。经 LC-MS、傅立叶变换红外光谱和核磁共振分析证实,双分化真菌相互作用产生了深棕色色素-黑色素。此外,真菌与真菌的相互作用还导致漆酶产量的增加,漆酶是一组多铜氧化酶,参与有毒化合物的解毒。此外,在真菌与真菌相互作用过程中,超氧化物歧化酶的活性也有所增加,这种酶催化超氧阴离子歧化为过氧化氢。定量实时聚合酶链式反应(real-time PCR)显示,在 T. versicolor 与 T. coccinea 的芽孢相互作用过程中,lcc1(编码漆酶)和其他一些与压力有关的基因上调,这表明漆酶的产生与黑色素的产生直接相关。
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来源期刊
Ima Fungus
Ima Fungus Agricultural and Biological Sciences-Agricultural and Biological Sciences (miscellaneous)
CiteScore
11.00
自引率
3.70%
发文量
18
审稿时长
20 weeks
期刊介绍: The flagship journal of the International Mycological Association. IMA Fungus is an international, peer-reviewed, open-access, full colour, fast-track journal. Papers on any aspect of mycology are considered, and published on-line with final pagination after proofs have been corrected; they are then effectively published under the International Code of Nomenclature for algae, fungi, and plants. The journal strongly supports good practice policies, and requires voucher specimens or cultures to be deposited in a public collection with an online database, DNA sequences in GenBank, alignments in TreeBASE, and validating information on new scientific names, including typifications, to be lodged in MycoBank. News, meeting reports, personalia, research news, correspondence, book news, and information on forthcoming international meetings are included in each issue
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