Elucidation of synbiotic diet comprising of Lactobacillus plantarum L20 and Sargassum polycystum on gastrointestinal microbiota, tissue structures and AHPND associated dysbiosis susceptibility in black tiger shrimp ( Penaeus monodon) )
This study investigates the effect of a synbiotic combination comprising of Lactobacillus plantarum L20 and Sargassum polycystum on gastrointestinal microbiota, tissue structures and AHPND infection in black tiger shrimp, P. monodon. . The shrimp were randomly distributed into synbiotic (feed that w...
Published in: | AQUACULTURE |
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Main Authors: | , , , , , , , , , , , , , |
Format: | Article |
Language: | English |
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2025
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Online Access: | https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001276915100001 |
author |
Chin Yong Kit; Azzam-Sayuti Mohamad; Mohamad Aslah; Haifa-Haryani Wan Omar; Ahmad Mohd Ihsanuddin; Nazarudin Muhammad Farhan; Ali Nur Shidaa Mohd; Ida-Muryany Md Yasin; Karim Murni Marlina Abd; Annas Salleh; Norhariani Mohd Nor; Amal Mohammad Noor Azmai; Ina-Salwany Md Yasin |
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Chin Yong Kit; Azzam-Sayuti Mohamad; Mohamad Aslah; Haifa-Haryani Wan Omar; Ahmad Mohd Ihsanuddin; Nazarudin Muhammad Farhan; Ali Nur Shidaa Mohd; Ida-Muryany Md Yasin; Karim Murni Marlina Abd; Annas Salleh; Norhariani Mohd Nor; Amal Mohammad Noor Azmai; Ina-Salwany Md Yasin Elucidation of synbiotic diet comprising of Lactobacillus plantarum L20 and Sargassum polycystum on gastrointestinal microbiota, tissue structures and AHPND associated dysbiosis susceptibility in black tiger shrimp ( Penaeus monodon) ) Fisheries; Marine & Freshwater Biology |
author_facet |
Chin Yong Kit; Azzam-Sayuti Mohamad; Mohamad Aslah; Haifa-Haryani Wan Omar; Ahmad Mohd Ihsanuddin; Nazarudin Muhammad Farhan; Ali Nur Shidaa Mohd; Ida-Muryany Md Yasin; Karim Murni Marlina Abd; Annas Salleh; Norhariani Mohd Nor; Amal Mohammad Noor Azmai; Ina-Salwany Md Yasin |
author_sort |
Chin |
spelling |
Chin, Yong Kit; Azzam-Sayuti, Mohamad; Mohamad, Aslah; Haifa-Haryani, Wan Omar; Ahmad, Mohd Ihsanuddin; Nazarudin, Muhammad Farhan; Ali, Nur Shidaa Mohd; Ida-Muryany, Md Yasin; Karim, Murni Marlina Abd; Annas, Salleh; Norhariani, Mohd Nor; Amal, Mohammad Noor Azmai; Ina-Salwany, Md Yasin Elucidation of synbiotic diet comprising of Lactobacillus plantarum L20 and Sargassum polycystum on gastrointestinal microbiota, tissue structures and AHPND associated dysbiosis susceptibility in black tiger shrimp ( Penaeus monodon) ) AQUACULTURE English Article This study investigates the effect of a synbiotic combination comprising of Lactobacillus plantarum L20 and Sargassum polycystum on gastrointestinal microbiota, tissue structures and AHPND infection in black tiger shrimp, P. monodon. . The shrimp were randomly distributed into synbiotic (feed that was incorporated with 108 8 CFU/g of L. plantarum L20 and 2% S. polycystum) ) and control group (feed that was incorporated with PBS). After 35 days of feeding trial, all groups were subjected to an AHPND-causing V. parahaemolyticus S2-4 immersion challenge at 6 x 105 5 CFU/mL. The shrimp gastrointestinal tract from both groups were collected from the feeding trial and challenge test and subjected to high throughput 16S rRNA amplicon sequencing and histopathological analysis. Following 35th day of feeding trial, there were growth enhancement in shrimp, but no significant differences (p p > 0.05) in alpha and beta diversities in gastrointestinal microbiota for both groups. However, synbiotic group exhibited a differential abundance of beneficial bacteria, including Lactobacillaceae and Lactiplantibacillus, which were not observed in the control group. Following 60 h post-challenge, there was improvement in shrimp survival in synbiotic group, with slightly significant differences (p p < 0.05) were observed in alpha diversity and but no significant differences (p p > 0.05) were observed in beta diversity. Synbiotic group demonstrated negative correlation between the gastrointestinal microbiota with Vibrionaceae, enriched potential metabolic pathway of energy generation and microbiota proliferation, and protected gastrointestinal tract structure during the study. The findings suggest that synbiotic diet comprising of L. plantarum L20 and S. polycystum improve growth performance, disease resistance and gastrointestinal structure protection through enhancement of few beneficial bacteria group abundance, despite insignificantly changes of gastrointestinal microbiota with control diet in the shrimp. ELSEVIER 0044-8486 1873-5622 2025 594 10.1016/j.aquaculture.2024.741339 Fisheries; Marine & Freshwater Biology WOS:001276915100001 https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001276915100001 |
title |
Elucidation of synbiotic diet comprising of Lactobacillus plantarum L20 and Sargassum polycystum on gastrointestinal microbiota, tissue structures and AHPND associated dysbiosis susceptibility in black tiger shrimp ( Penaeus monodon) ) |
title_short |
Elucidation of synbiotic diet comprising of Lactobacillus plantarum L20 and Sargassum polycystum on gastrointestinal microbiota, tissue structures and AHPND associated dysbiosis susceptibility in black tiger shrimp ( Penaeus monodon) ) |
title_full |
Elucidation of synbiotic diet comprising of Lactobacillus plantarum L20 and Sargassum polycystum on gastrointestinal microbiota, tissue structures and AHPND associated dysbiosis susceptibility in black tiger shrimp ( Penaeus monodon) ) |
title_fullStr |
Elucidation of synbiotic diet comprising of Lactobacillus plantarum L20 and Sargassum polycystum on gastrointestinal microbiota, tissue structures and AHPND associated dysbiosis susceptibility in black tiger shrimp ( Penaeus monodon) ) |
title_full_unstemmed |
Elucidation of synbiotic diet comprising of Lactobacillus plantarum L20 and Sargassum polycystum on gastrointestinal microbiota, tissue structures and AHPND associated dysbiosis susceptibility in black tiger shrimp ( Penaeus monodon) ) |
title_sort |
Elucidation of synbiotic diet comprising of Lactobacillus plantarum L20 and Sargassum polycystum on gastrointestinal microbiota, tissue structures and AHPND associated dysbiosis susceptibility in black tiger shrimp ( Penaeus monodon) ) |
container_title |
AQUACULTURE |
language |
English |
format |
Article |
description |
This study investigates the effect of a synbiotic combination comprising of Lactobacillus plantarum L20 and Sargassum polycystum on gastrointestinal microbiota, tissue structures and AHPND infection in black tiger shrimp, P. monodon. . The shrimp were randomly distributed into synbiotic (feed that was incorporated with 108 8 CFU/g of L. plantarum L20 and 2% S. polycystum) ) and control group (feed that was incorporated with PBS). After 35 days of feeding trial, all groups were subjected to an AHPND-causing V. parahaemolyticus S2-4 immersion challenge at 6 x 105 5 CFU/mL. The shrimp gastrointestinal tract from both groups were collected from the feeding trial and challenge test and subjected to high throughput 16S rRNA amplicon sequencing and histopathological analysis. Following 35th day of feeding trial, there were growth enhancement in shrimp, but no significant differences (p p > 0.05) in alpha and beta diversities in gastrointestinal microbiota for both groups. However, synbiotic group exhibited a differential abundance of beneficial bacteria, including Lactobacillaceae and Lactiplantibacillus, which were not observed in the control group. Following 60 h post-challenge, there was improvement in shrimp survival in synbiotic group, with slightly significant differences (p p < 0.05) were observed in alpha diversity and but no significant differences (p p > 0.05) were observed in beta diversity. Synbiotic group demonstrated negative correlation between the gastrointestinal microbiota with Vibrionaceae, enriched potential metabolic pathway of energy generation and microbiota proliferation, and protected gastrointestinal tract structure during the study. The findings suggest that synbiotic diet comprising of L. plantarum L20 and S. polycystum improve growth performance, disease resistance and gastrointestinal structure protection through enhancement of few beneficial bacteria group abundance, despite insignificantly changes of gastrointestinal microbiota with control diet in the shrimp. |
publisher |
ELSEVIER |
issn |
0044-8486 1873-5622 |
publishDate |
2025 |
container_volume |
594 |
container_issue |
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doi_str_mv |
10.1016/j.aquaculture.2024.741339 |
topic |
Fisheries; Marine & Freshwater Biology |
topic_facet |
Fisheries; Marine & Freshwater Biology |
accesstype |
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id |
WOS:001276915100001 |
url |
https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001276915100001 |
record_format |
wos |
collection |
Web of Science (WoS) |
_version_ |
1809679298136637440 |