Secondary Metabolites, Biological Activities, and Industrial and Biotechnological Importance of Aspergillus sydowii

Author:

Ibrahim Sabrin12ORCID,Mohamed Shaimaa3,Alsaadi Baiaan4,Althubyani Maryam4,Awari Zainab5,Hussein Hazem6,Aljohani Abrar7,Albasri Jumanah8,Faraj Salha9,Mohamed Gamal10ORCID

Affiliation:

1. Preparatory Year Program, Department of Chemistry, Batterjee Medical College, Jeddah 21442, Saudi Arabia

2. Department of Pharmacognosy, Faculty of Pharmacy, Assiut University, Assiut 71526, Egypt

3. Faculty of Dentistry, British University, El Sherouk City, Cairo 11837, Egypt

4. Department of Clinical Service, Pharmaceutical Care Services, King Salman Medical City, MOH, Al Madinah Al Munawwarah 11176, Saudi Arabia

5. Pharmaceutical Care Services, King Salman Medical City, MOH, Al Madinah Al Munawwarah 11176, Saudi Arabia

6. Preparatory Year Program, Batterjee Medical College, Jeddah 21442, Saudi Arabia

7. Pharmaceutical Care Services, Medina Cardiac Center, MOH, Al Madinah Al Munawwarah 11176, Saudi Arabia

8. Pharmacy Department, Home Health Care, MOH, Al Madinah Al Munawwarah 11176, Saudi Arabia

9. Pharmacy Department, King Salman Medical City, MOH, Almadinah Almunawarah 11176, Saudi Arabia

10. Department of Natural Products and Alternative Medicine, Faculty of Pharmacy, King Abdulaziz University, Jeddah 21589, Saudi Arabia

Abstract

Marine-derived fungi are renowned as a source of astonishingly significant and synthetically appealing metabolites that are proven as new lead chemicals for chemical, pharmaceutical, and agricultural fields. Aspergillus sydowii is a saprotrophic, ubiquitous, and halophilic fungus that is commonly found in different marine ecosystems. This fungus can cause aspergillosis in sea fan corals leading to sea fan mortality with subsequent changes in coral community structure. Interestingly, A. sydowi is a prolific source of distinct and structurally varied metabolites such as alkaloids, xanthones, terpenes, anthraquinones, sterols, diphenyl ethers, pyrones, cyclopentenones, and polyketides with a range of bioactivities. A. sydowii has capacity to produce various enzymes with marked industrial and biotechnological potential, including α-amylases, lipases, xylanases, cellulases, keratinases, and tannases. Also, this fungus has the capacity for bioremediation as well as the biocatalysis of various chemical reactions. The current work aimed at focusing on the bright side of this fungus. In this review, published studies on isolated metabolites from A. sydowii, including their structures, biological functions, and biosynthesis, as well as the biotechnological and industrial significance of this fungus, were highlighted. More than 245 compounds were described in the current review with 134 references published within the period from 1975 to June 2023.

Publisher

MDPI AG

Subject

Drug Discovery,Pharmacology, Toxicology and Pharmaceutics (miscellaneous),Pharmaceutical Science

Reference134 articles.

1. Natural Products of the Fungal Genus Humicola: Diversity, Biological Activity, and Industrial Importance;Ibrahim;Curr. Microbiol.,2021

2. Genus Thielavia: Phytochemicals, Industrial Importance and Biological Relevance;Ibrahim;Nat. Prod. Res.,2022

3. Biologically Active Fungal Depsidones: Chemistry, Biosynthesis, Structural Characterization, and Bioactivities;Ibrahim;Fitoterapia,2018

4. γ-Butyrolactones from Aspergillus Species: Structures, Biosynthesis, and Biological Activities;Ibrahim;Nat. Prod. Commun.,2017

5. The Importance of Fungi and Mycology for Addressing Major Global Challenges;Lange;IMA Fungus,2014

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