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探索红树林内生菌作为产单宁酶真菌的新来源

Exploration of Mangrove Endophytes as Novel Sources of Tannase Producing Fungi.

作者信息

Kushwaha Vinodkumar, Patil Jitendra R, Nikalje Ganesh Chandrakant, Yadav Lal Sahab

机构信息

Post Graduate Research Laboratory, Department of Botany, Smt. Chandibai Himathmal Mansukhani College of Arts, Science & Commerce, Ulhasnagar 421003, Thane, MS, India.

Department of Botany, Seva Sadan's Ramchand Kimatram Talreja College of Arts, Science & Commerce, Ulhasnagar 421003, Thane, MS, India.

出版信息

J Fungi (Basel). 2025 May 8;11(5):366. doi: 10.3390/jof11050366.

DOI:10.3390/jof11050366
PMID:40422700
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC12112942/
Abstract

Tannase, a highly adaptive biocatalyst, plays a pivotal role in diverse bioconversion reactions in nature. This enzyme exhibits numerous applications across various industrial sectors, including food, pharmaceuticals, chemicals, and beverages. This study aimed to screen and characterize fungal endophytes isolated from mangrove plants for their enzyme tannase-producing ability. Eighty-five filamentous endophytic fungi were isolated from different mangrove samples and subsequently identified. These fungal strains were initially screened using the tannic acid agar plate method. Out of the screened strains, 13 fungal isolates demonstrated tannase production ability. The quantitative estimation of extracellular tannase was performed using the submerged fermentation technique. Among the studied endophytes, eight isolates, namely LV_084 (21.21 IU/mL), LV_074 (15.41 IU/mL), LV_078 (6.98 IU/mL), LV_038 (6.97 IU/mL), LV_077 (6.32 IU/mL), LV_016 and LV_066 (6.37 IU/mL), and LV_060 (6.18 IU/mL) exhibited excellent tannase activity. Among these isolates, LV_084 and LV_074 showed the highest enzyme-producing ability. These isolates were authenticated using ITS rDNA sequencing, followed by BLAST search and phylogenetic analysis. Furthermore, the physical and chemical conditions for the maximum enzyme production were optimized. This is the first report of enzyme tannase production by and .

摘要

单宁酶是一种高度适应性的生物催化剂,在自然界的各种生物转化反应中起着关键作用。这种酶在包括食品、制药、化工和饮料在内的各个工业领域都有众多应用。本研究旨在筛选和鉴定从红树林植物中分离出的真菌内生菌的产单宁酶能力。从不同的红树林样本中分离出85株丝状内生真菌,并随后进行了鉴定。这些真菌菌株最初采用单宁酸琼脂平板法进行筛选。在筛选出的菌株中,有13株真菌分离物表现出单宁酶生产能力。使用深层发酵技术对细胞外单宁酶进行了定量测定。在所研究的内生菌中,8株分离物,即LV_084(21.21 IU/mL)、LV_074(15.41 IU/mL)、LV_078(6.98 IU/mL)、LV_038(6.97 IU/mL)、LV_077(6.32 IU/mL)、LV_016和LV_066(6.37 IU/mL)以及LV_060(6.18 IU/mL)表现出优异的单宁酶活性。在这些分离物中,LV_084和LV_074表现出最高的产酶能力。这些分离物通过ITS rDNA测序进行了鉴定,随后进行了BLAST搜索和系统发育分析。此外,还优化了最大酶产量的物理和化学条件。这是关于 和 产单宁酶的首次报道。

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本文引用的文献

1
Optimization of tannase production by Aspergillus glaucus in solid-state fermentation of black tea waste.青霉在红茶废弃物固态发酵中生产单宁酶的优化。
Bioresour Bioprocess. 2023 Oct 28;10(1):73. doi: 10.1186/s40643-023-00686-9.
2
Characterization and application of tannase and gallic acid produced by co-fungi of Aspergillus niger and Trichoderma viride utilizing agro-residues substrates.利用农业废弃物为基质,研究黑曲霉和绿色木霉共发酵生产单宁酶和没食子酸的特性及其应用。
Sci Rep. 2023 Oct 5;13(1):16755. doi: 10.1038/s41598-023-43955-5.
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Methods used for the study of endophytic fungi: a review on methodologies and challenges, and associated tips.
内生真菌研究方法综述:方法学与挑战及相关技巧。
Arch Microbiol. 2022 Oct 20;204(11):675. doi: 10.1007/s00203-022-03283-0.
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Extracellular Enzyme of Endophytic Fungi Isolated from Leaves as Medicinal Plant.从药用植物叶片中分离出的内生真菌的胞外酶
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Biotechnological potential of fungi from a mangrove ecosystem: Enzymes, salt tolerance and decolorization of a real textile effluent.红树林生态系统真菌的生物技术潜力:酶、耐盐性和真丝废水的脱色。
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Diversity and antimicrobial activity of endophytic fungi isolated from Securinega suffruticosa in the Yellow River Delta.从黄河三角洲苦皮藤内生真菌的多样性和抗菌活性。
PLoS One. 2020 Mar 10;15(3):e0229589. doi: 10.1371/journal.pone.0229589. eCollection 2020.
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Interactive Tree Of Life (iTOL) v4: recent updates and new developments.交互式生命树 (iTOL) v4:最新更新和新发展。
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Recent trends and advancements in microbial tannase-catalyzed biotransformation of tannins: a review.微生物单宁酶催化单宁生物转化的最新趋势和进展:综述。
Int Microbiol. 2018 Dec;21(4):175-195. doi: 10.1007/s10123-018-0027-9. Epub 2018 Aug 13.
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