Impact of Irpex lenis and Schizophyllum commune endophytic fungi on Perilla frutescens: enhancing nutritional uptake, phytochemicals, and antioxidant potential.

IF 4.3 2区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Microbial Cell Factories Pub Date : 2024-08-10 DOI:10.1186/s12934-024-02491-1
Kiran Sharma, Rachna Verma, Dinesh Kumar, Vinod Kumar
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Abstract

Background: Endophytic fungi (EF) reside within plants without causing harm and provide benefits such as enhancing nutrients and producing bioactive compounds, which improve the medicinal properties of host plants. Selecting plants with established medicinal properties for studying EF is important, as it allows a deeper understanding of their influence. Therefore, the study aimed to investigate the impact of EF after inoculating the medicinal plant Perilla frutescens, specifically focusing on their role in enhancing medicinal properties.

Results: In the current study, the impact of two EF i.e., Irpex lenis and Schizophyllum commune isolated from A. bracteosa was observed on plant Perilla frutescens leaves after inoculation. Plants were divided into four groups i.e., group A: the control group, group B: inoculated with I. lenis; group C: inoculated with S. commune and group D: inoculated with both the EF. Inoculation impact of I. lenis showed an increase in the concentration of chlorophyll a (5.32 mg/g), chlorophyll b (4.46 mg/g), total chlorophyll content (9.78 mg/g), protein (68.517 ± 0.77 mg/g), carbohydrates (137.886 ± 13.71 mg/g), and crude fiber (3.333 ± 0.37%). Furthermore, the plants inoculated with I. lenis showed the highest concentrations of P (14605 mg/kg), Mg (4964.320 mg/kg), Ca (27389.400 mg/kg), and Mn (86.883 mg/kg). The results of the phytochemical analysis also indicated an increased content of total flavonoids (2.347 mg/g), phenols (3.086 mg/g), tannins (3.902 mg/g), and alkaloids (1.037 mg/g) in the leaf extract of P. frutescens inoculated with I. lenis. Thus, overall the best results of inoculation were observed in Group B i.e. inoculated with I. lenis. GC-MS analysis of methanol leaf extract showed ten bioactive constituents, including 9-Octadecenoic acid (Z)-, methyl ester, and hexadecanoic acid, methyl ester as major constituents found in all the groups of P. frutescens leaves. The phenol (gallic acid) and flavonoids (rutin, kaempferol, and quercetin) were also observed to increase after inoculation by HPTLC analysis. The enhancement in the phytochemical content was co-related with improved anti-oxidant potential which was analyzed by DPPH (% Inhibition: 83.45 µg/ml) and FRAP (2.980 µM Fe (II) equivalent) assay as compared with the control group.

Conclusion: Inoculation with I. lenis significantly enhances the uptake of nutritional constituents, phytochemicals, and antioxidant properties in P. frutescens, suggesting its potential to boost the therapeutic properties of host plants.

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Irpex lenis 和 Schizophyllum commune 内生真菌对紫苏的影响:提高营养吸收、植物化学物质和抗氧化潜力。
背景:内生真菌(EF)寄居在植物体内,不会对植物造成危害,还能提供养分和产生生物活性化合物等益处,从而改善寄主植物的药用特性。选择具有既定药用特性的植物来研究内生真菌非常重要,因为这样可以更深入地了解它们的影响。因此,本研究旨在调查接种药用植物紫苏后 EF 的影响,特别关注其在提高药用价值方面的作用:在本研究中,观察了两种 EF(即从 A. bracteosa 分离出的 Irpex lenis 和 Schizophyllum commune)在接种后对植物紫苏叶的影响。植物被分为四组,即 A 组:对照组;B 组:接种了丝核菌;C 组:接种了 S. commune;D 组:接种了两种 EF。从接种影响来看,叶绿素 a(5.32 毫克/克)、叶绿素 b(4.46 毫克/克)、总叶绿素含量(9.78 毫克/克)、蛋白质(68.517 ± 0.77 毫克/克)、碳水化合物(137.886 ± 13.71 毫克/克)和粗纤维(3.333 ± 0.37%)的浓度均有所增加。此外,接种了雷尼氏菌的植株中 P(14605 毫克/千克)、Mg(4964.320 毫克/千克)、Ca(27389.400 毫克/千克)和 Mn(86.883 毫克/千克)的含量最高。植物化学分析结果还表明,接种了莱尼丝藻的 P. frutescens 的叶提取物中总黄酮(2.347 毫克/克)、酚(3.086 毫克/克)、单宁(3.902 毫克/克)和生物碱(1.037 毫克/克)的含量均有所增加。因此,总体而言,B 组(即接种 I. lenis)的接种效果最好。甲醇叶提取物的气相色谱-质谱(GC-MS)分析表明,在所有组的洋二仙草叶中发现了 10 种生物活性成分,包括 9-十八碳烯酸(Z)-,甲酯和十六碳烯酸,甲酯是主要成分。通过 HPTLC 分析,还观察到酚类(没食子酸)和黄酮类(芦丁、山柰酚和槲皮素)在接种后有所增加。与对照组相比,植物化学成分含量的增加与抗氧化潜力的提高有关:接种蛇麻属植物能明显增强洋二仙草(P. frutescens)对营养成分、植物化学物质和抗氧化特性的吸收,这表明蛇麻属植物具有提高宿主植物治疗特性的潜力。
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来源期刊
Microbial Cell Factories
Microbial Cell Factories 工程技术-生物工程与应用微生物
CiteScore
9.30
自引率
4.70%
发文量
235
审稿时长
2.3 months
期刊介绍: Microbial Cell Factories is an open access peer-reviewed journal that covers any topic related to the development, use and investigation of microbial cells as producers of recombinant proteins and natural products, or as catalyzers of biological transformations of industrial interest. Microbial Cell Factories is the world leading, primary research journal fully focusing on Applied Microbiology. The journal is divided into the following editorial sections: -Metabolic engineering -Synthetic biology -Whole-cell biocatalysis -Microbial regulations -Recombinant protein production/bioprocessing -Production of natural compounds -Systems biology of cell factories -Microbial production processes -Cell-free systems
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