Elicitation of Cryptic Secondary Metabolites and Antibacterial Activities from Mangrove and Cave Soil Actinomycetes

Actinomycetes’ secondary metabolites have received considerable attention due to their many beneficial biological activities. However, many biosynthetic gene clusters in actinomycetes remain silent as they are not transcribed under standard laboratory conditions. Therefore, this study aims to introd...

Full description

Bibliographic Details
Published in:Pertanika Journal of Science and Technology
Main Author: Razi I.A.N.A.; Ghani N.A.; Sadiran S.H.; Ariffin S.; Mohamad S.A.S.; Low A.L.M.
Format: Article
Language:English
Published: Universiti Putra Malaysia Press 2024
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85194173194&doi=10.47836%2fpjst.32.3.17&partnerID=40&md5=0ab77a93dcd93650a69affed2ecb1195
id 2-s2.0-85194173194
spelling 2-s2.0-85194173194
Razi I.A.N.A.; Ghani N.A.; Sadiran S.H.; Ariffin S.; Mohamad S.A.S.; Low A.L.M.
Elicitation of Cryptic Secondary Metabolites and Antibacterial Activities from Mangrove and Cave Soil Actinomycetes
2024
Pertanika Journal of Science and Technology
32
3
10.47836/pjst.32.3.17
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85194173194&doi=10.47836%2fpjst.32.3.17&partnerID=40&md5=0ab77a93dcd93650a69affed2ecb1195
Actinomycetes’ secondary metabolites have received considerable attention due to their many beneficial biological activities. However, many biosynthetic gene clusters in actinomycetes remain silent as they are not transcribed under standard laboratory conditions. Therefore, this study aims to introduce antibiotic elicitors to activate cryptic secondary metabolites in soil actinomycetes and screen them for antibacterial potential. A total of 20 cave and 10 mangrove soil actinomycete isolates were exposed to streptomycin or erythromycin at subinhibitory concentration (0.5–1048 μg/mL) in minimal media. The ethyl acetate extracts were subjected to high-performance liquid chromatography (HPLC) profiling to observe the effect of elicitors towards secondary metabolite production. As a result, 61.7% of the isolates showed a positive impact (appearance of ‘new’/increase in metabolite production) when elicitors were supplemented. These changes were more pronounced in erythromycin-induced media (63.3%) than in streptomycin (60.0%). Two isolates (CS3PT50 and CS3PT53) exhibited significant changes in the profile, with additional peaks detected at 210 and 245 nm, which may indicate the production of new metabolites. More antibacterial activities were observed from stimulated (26.7%) as opposed to non-stimulated isolates (10.0%), including 6 new activities, 1 improved, and 1 decrease in inhibitory. Furthermore, isolate CS3PT53 (0.5 mg/disc) displayed broad-spectrum activities, inhibiting S. aureus ATCC 25923 and S. Typhimurium ATCC 14028. The hit actinomycete isolates belonged to the genus Streptomyces (55.6%), Norcardia (22.2%), Norcardiopsis, and Saccharomonospora (11.1%). Overall, this study demonstrated that incorporating antibiotic elicitor at subinhibitory concentration could effectively trigger the production of cryptic secondary metabolites with antibacterial properties in soil actinomycetes. © Universiti Putra Malaysia Press.
Universiti Putra Malaysia Press
1287680
English
Article
All Open Access; Hybrid Gold Open Access
author Razi I.A.N.A.; Ghani N.A.; Sadiran S.H.; Ariffin S.; Mohamad S.A.S.; Low A.L.M.
spellingShingle Razi I.A.N.A.; Ghani N.A.; Sadiran S.H.; Ariffin S.; Mohamad S.A.S.; Low A.L.M.
Elicitation of Cryptic Secondary Metabolites and Antibacterial Activities from Mangrove and Cave Soil Actinomycetes
author_facet Razi I.A.N.A.; Ghani N.A.; Sadiran S.H.; Ariffin S.; Mohamad S.A.S.; Low A.L.M.
author_sort Razi I.A.N.A.; Ghani N.A.; Sadiran S.H.; Ariffin S.; Mohamad S.A.S.; Low A.L.M.
title Elicitation of Cryptic Secondary Metabolites and Antibacterial Activities from Mangrove and Cave Soil Actinomycetes
title_short Elicitation of Cryptic Secondary Metabolites and Antibacterial Activities from Mangrove and Cave Soil Actinomycetes
title_full Elicitation of Cryptic Secondary Metabolites and Antibacterial Activities from Mangrove and Cave Soil Actinomycetes
title_fullStr Elicitation of Cryptic Secondary Metabolites and Antibacterial Activities from Mangrove and Cave Soil Actinomycetes
title_full_unstemmed Elicitation of Cryptic Secondary Metabolites and Antibacterial Activities from Mangrove and Cave Soil Actinomycetes
title_sort Elicitation of Cryptic Secondary Metabolites and Antibacterial Activities from Mangrove and Cave Soil Actinomycetes
publishDate 2024
container_title Pertanika Journal of Science and Technology
container_volume 32
container_issue 3
doi_str_mv 10.47836/pjst.32.3.17
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85194173194&doi=10.47836%2fpjst.32.3.17&partnerID=40&md5=0ab77a93dcd93650a69affed2ecb1195
description Actinomycetes’ secondary metabolites have received considerable attention due to their many beneficial biological activities. However, many biosynthetic gene clusters in actinomycetes remain silent as they are not transcribed under standard laboratory conditions. Therefore, this study aims to introduce antibiotic elicitors to activate cryptic secondary metabolites in soil actinomycetes and screen them for antibacterial potential. A total of 20 cave and 10 mangrove soil actinomycete isolates were exposed to streptomycin or erythromycin at subinhibitory concentration (0.5–1048 μg/mL) in minimal media. The ethyl acetate extracts were subjected to high-performance liquid chromatography (HPLC) profiling to observe the effect of elicitors towards secondary metabolite production. As a result, 61.7% of the isolates showed a positive impact (appearance of ‘new’/increase in metabolite production) when elicitors were supplemented. These changes were more pronounced in erythromycin-induced media (63.3%) than in streptomycin (60.0%). Two isolates (CS3PT50 and CS3PT53) exhibited significant changes in the profile, with additional peaks detected at 210 and 245 nm, which may indicate the production of new metabolites. More antibacterial activities were observed from stimulated (26.7%) as opposed to non-stimulated isolates (10.0%), including 6 new activities, 1 improved, and 1 decrease in inhibitory. Furthermore, isolate CS3PT53 (0.5 mg/disc) displayed broad-spectrum activities, inhibiting S. aureus ATCC 25923 and S. Typhimurium ATCC 14028. The hit actinomycete isolates belonged to the genus Streptomyces (55.6%), Norcardia (22.2%), Norcardiopsis, and Saccharomonospora (11.1%). Overall, this study demonstrated that incorporating antibiotic elicitor at subinhibitory concentration could effectively trigger the production of cryptic secondary metabolites with antibacterial properties in soil actinomycetes. © Universiti Putra Malaysia Press.
publisher Universiti Putra Malaysia Press
issn 1287680
language English
format Article
accesstype All Open Access; Hybrid Gold Open Access
record_format scopus
collection Scopus
_version_ 1809677881205325824