Extraction, phytochemical characterization, and antifungal activity of Salvia rosmarinus extract

Author:

Aamer Helmy A.1,Al-Askar Abdulaziz A.2,Gaber Mahmoud A.3,El-Tanbouly Rania4,Abdelkhalek Ahmed5,Behiry Said6,Elsharkawy Mohsen M.7,Kowalczewski Przemysław Łukasz8,El-Messeiry Sarah9

Affiliation:

1. Department of Chemistry and Technology of Pesticide, Agriculture Faculty (El-Shatby), Alexandria University , Alexandria 21545 , Egypt

2. Department of Botany and Microbiology, College of Science, King Saud University , P.O. Box 2455 , Riyadh 11451 , Saudi Arabia

3. Department of Plant Pathology, Faculty of Agriculture (El-Shatby), Alexandria University , Alexandria 21545 , Egypt

4. Department of Floriculture, Ornamental Horticulture and Landscape Design, Faculty of Agriculture (El-Shatby), Alexandria University , Alexandria 21545 , Egypt

5. Plant Protection and Biomolecular Diagnosis Department, Arid Lands Cultivation Research Institute, City of Scientific Research and Technological Applications , Alexandria 21934 , Egypt

6. Agricultural Botany Department, Faculty of Agriculture (Saba Basha), Alexandria University , Alexandria 21531 , Egypt

7. Department of Agricultural Botany, Faculty of Agriculture, Kafrelsheikh University , Kafrelsheikh 33516 , Egypt

8. Department of Food Technology of Plant Origin, Poznań University of Life Sciences , Poznań , Poland

9. Department of Genetics, Faculty of Agriculture (El-Shatby), Alexandria University , Alexandria 21545 , Egypt

Abstract

Abstract In the current study, we used high-performance liquid chromatography (HPLC) and gas chromatography–mass spectrometry (GC–MS) to investigate and analyze the methanolic extract of Salvia rosmarinus leaves. HPLC analysis showed that the extract revealed a diverse array of polyphenolic compounds, including apigenin, catechin, chlorogenic acid, cinnamic acid, caffeic acid, coumaric acid, daidzein, ellagic acid, ferulic acid, gallic acid, hesperetin, kaempferol, methyl gallate, naringenin, pyrocatechol, quercetin, rutin, syringic acid, and vanillin. Furthermore, three fungal isolates from symptomatic strawberry plants were obtained and identified as Botrytis cinerea (OR116486), Fusarium oxysporum (OR116505), and Rhizoctonia solani (OR116525). The extract’s antifungal activity was evaluated at concentrations of 0, 50, 150, 200, and 300 µg/mL. At 200 µg/mL, the extract showed growth inhibition percentages of 74.56, 58.19, and 56.67% for R. solani, F. oxysporum, and B. cinerea, respectively, while at 300 µg/mL, all the tested fungi were completely suppressed. The GC–MS analysis revealed that the major compounds of the methanolic extract identified based on their retention times and relative peak areas (%) included β-caryophyllene (12.06%), germacrene d (13.55%), caryophyllene oxide (3.13%), methyl palmitate (5.26%), hexadecanoic acid (4.9%), and methyl stearate (6.02%). These results show rosemary extract’s potential as a source of natural antifungal agents against plant photogenic fungi. As a result, it provides a safer alternative to the current protective approaches for plant disease management.

Publisher

Walter de Gruyter GmbH

Subject

Materials Chemistry,General Chemistry

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