Assessment of Metal Elements and Biochemical Constituents of Wild Turkey Tail (Trametes versicolor) Mushrooms Collected from the Shivalik Foothills of the Himalayas, India

Author:

Mostafa Yasser S.1,Širić Ivan2ORCID,Alamri Saad A. M.1,Alrumman Sulaiman A.1ORCID,Kumar Pankaj34ORCID,Abou Fayssal Sami56ORCID,Zjalić Slaven7ORCID,Singh Rattan8,Eid Ebrahem M.9ORCID

Affiliation:

1. Biology Department, College of Science, King Khalid University, Abha 61321, Saudi Arabia

2. University of Zagreb, Faculty of Agriculture, Svetosimunska 25, 10000 Zagreb, Croatia

3. Agro-Ecology and Pollution Research Laboratory, Department of Zoology and Environmental Science, Gurukula Kangri (Deemed to Be University), Haridwar 249404, India

4. Research and Development Division, Society for AgroEnvironmental Sustainability, Dehradun 248007, India

5. Department of Agronomy, Faculty of Agronomy, University of Forestry, 10 Kliment Ohridski Blvd, 1797 Sofia, Bulgaria

6. Department of Plant Production, Faculty of Agriculture, Lebanese University, Beirut 1302, Lebanon

7. Department of Ecology, Agronomy and Aquaculture, University of Zadar, 23000 Zadar, Croatia

8. Department of Food Technology, Guru Jambeshwar University of Science & Technology, Hisar 125001, India

9. Botany Department, Faculty of Science, Kafrelsheikh University, Kafr El-Sheikh 33516, Egypt

Abstract

Wild medicinal mushrooms are known to contain significant amounts of essential biochemical compounds with potential health benefits. Therefore, this study aimed to investigate the metal elements and biochemical constituents of wild turkey tail (Trametes versicolor) mushrooms collected from the Shivalik foothills of the Himalayas, India. Mushroom samples were purposefully collected from eleven (11) sampling sites located in three (3) districts of North Indian states (Uttar Pradesh and Uttarakhand). The results of this study indicated that wild T. versicolor showed the presence of eight metal elements (Cd: 0.011–0.139, Cr: 0.225–0.680, Cu: 1.073–3.108, Fe: 4.273–8.467, Mn: 2.157–3.892, Zn: 3.069–4.478, Ni: 0.065–0.186, and Co: 0.035–0.120 mg/kg). The samples also showed a significant presence of total phenolics (51.81–70.13 mg GAE/g), flavonoids (9.02–14.01 mg QE/mg), lycopene (0.02–0.08 mg/g), and β-carotene (0.31–0.72 mg/g). The proximate analysis also showed that T. versicolor is a good source of carbohydrate (38.33%–41.94%), protein (8.12%–11.06%), fat (0.93%–1.26%), moisture (63.80%–70.64%), dietary fiber (9.59%–14.30%), and total ash (2.42%–3.48%). In addition, gas chromatography (GC-FID) analysis revealed the presence of the five most dominant fatty acids, including linoleic acid (18:2n6c), palmitic acid (C16:0), oleic acid (18:1n9c), linolenic acid (18:3n3), and stearic acid (C18:0). Principal component analysis (PCA) and hierarchical cluster analysis (HCA) were helpful in identifying variations and similarities among different constituents of T. versicolor at selected sampling sites. Due to its low metal element content and rich biochemical profile, T. versicolor was highlighted in this research for its significant potential as a functional food or nutraceutical ingredient. This work promotes its sustainable use in the healthcare and food industries and lays the groundwork for further research into its therapeutic applications.

Funder

King Khalid University

Publisher

MDPI AG

Subject

Forestry

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