Growth enhance Polymeric substances from phototrophic bacteria for marine finish Larvaculture system
Study was under taken to isolate phototrophic bacteria from local microhabitat, production of polymeric substances from selected isolate and to evaluate the possibility to be used aquaculture feed additive in marine finfish larvae. Phototrophic bacterium Afifella marina was isolated from local mangr...
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Format: | Research Report |
Language: | English |
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Universiti Malaysia Sabah
2014
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Online Access: | https://eprints.ums.edu.my/id/eprint/22857/1/Growth%20enhance%20Polymeric%20substances%20from%20phototrophic%20bacteria%20for%20marine%20finish%20Larvaculture%20system.pdf |
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author | Sujjat Al-Azad Sitti Raehanah Muhammad Shaleh Julian Ransangan |
author_facet | Sujjat Al-Azad Sitti Raehanah Muhammad Shaleh Julian Ransangan |
author_sort | Sujjat Al-Azad |
collection | UMS |
description | Study was under taken to isolate phototrophic bacteria from local microhabitat, production of polymeric substances from selected isolate and to evaluate the possibility to be used aquaculture feed additive in marine finfish larvae. Phototrophic bacterium Afifella marina was isolated from local mangrove mud. The highest dry cell weight of 4.98 gIl was achieved at 3000 lux, while the highest carotenoid production of 0.78 mglg dry cell weight was recorded at 2500 lux illumination light intensity. It was also found that
extracellular nucleic acid yields of 7.48 mglg dry cell weight and proteolytic activities of 76.6±1 .2 U were the highest in Afifella marina recorded at 5000 lux and 3000 lux illumination of light intensity respectively. Current study was also found that no significant differences in dry cell weight, extracellular nucleic acids production and proteolytic activities between 24h (24L100) and 18h (18U60) of photoperiods. The biomasses of Afifella marina were used to encapsulate Artemia and feeding trial conducted in sea bass (Lates calcarifer) larvae. Increment in the highest growth in length of 166% and survival of 67.5% was observed in the diet composed of Artemia encapsulated with Afifella marina. |
first_indexed | 2024-03-06T03:00:07Z |
format | Research Report |
id | ums.eprints-22857 |
institution | Universiti Malaysia Sabah |
language | English |
last_indexed | 2024-03-06T03:00:07Z |
publishDate | 2014 |
publisher | Universiti Malaysia Sabah |
record_format | dspace |
spelling | ums.eprints-228572019-07-19T07:00:19Z https://eprints.ums.edu.my/id/eprint/22857/ Growth enhance Polymeric substances from phototrophic bacteria for marine finish Larvaculture system Sujjat Al-Azad Sitti Raehanah Muhammad Shaleh Julian Ransangan SH Aquaculture. Fisheries. Angling Study was under taken to isolate phototrophic bacteria from local microhabitat, production of polymeric substances from selected isolate and to evaluate the possibility to be used aquaculture feed additive in marine finfish larvae. Phototrophic bacterium Afifella marina was isolated from local mangrove mud. The highest dry cell weight of 4.98 gIl was achieved at 3000 lux, while the highest carotenoid production of 0.78 mglg dry cell weight was recorded at 2500 lux illumination light intensity. It was also found that extracellular nucleic acid yields of 7.48 mglg dry cell weight and proteolytic activities of 76.6±1 .2 U were the highest in Afifella marina recorded at 5000 lux and 3000 lux illumination of light intensity respectively. Current study was also found that no significant differences in dry cell weight, extracellular nucleic acids production and proteolytic activities between 24h (24L100) and 18h (18U60) of photoperiods. The biomasses of Afifella marina were used to encapsulate Artemia and feeding trial conducted in sea bass (Lates calcarifer) larvae. Increment in the highest growth in length of 166% and survival of 67.5% was observed in the diet composed of Artemia encapsulated with Afifella marina. Universiti Malaysia Sabah 2014 Research Report NonPeerReviewed text en https://eprints.ums.edu.my/id/eprint/22857/1/Growth%20enhance%20Polymeric%20substances%20from%20phototrophic%20bacteria%20for%20marine%20finish%20Larvaculture%20system.pdf Sujjat Al-Azad and Sitti Raehanah Muhammad Shaleh and Julian Ransangan (2014) Growth enhance Polymeric substances from phototrophic bacteria for marine finish Larvaculture system. (Unpublished) |
spellingShingle | SH Aquaculture. Fisheries. Angling Sujjat Al-Azad Sitti Raehanah Muhammad Shaleh Julian Ransangan Growth enhance Polymeric substances from phototrophic bacteria for marine finish Larvaculture system |
title | Growth enhance Polymeric substances from phototrophic bacteria for marine finish Larvaculture system |
title_full | Growth enhance Polymeric substances from phototrophic bacteria for marine finish Larvaculture system |
title_fullStr | Growth enhance Polymeric substances from phototrophic bacteria for marine finish Larvaculture system |
title_full_unstemmed | Growth enhance Polymeric substances from phototrophic bacteria for marine finish Larvaculture system |
title_short | Growth enhance Polymeric substances from phototrophic bacteria for marine finish Larvaculture system |
title_sort | growth enhance polymeric substances from phototrophic bacteria for marine finish larvaculture system |
topic | SH Aquaculture. Fisheries. Angling |
url | https://eprints.ums.edu.my/id/eprint/22857/1/Growth%20enhance%20Polymeric%20substances%20from%20phototrophic%20bacteria%20for%20marine%20finish%20Larvaculture%20system.pdf |
work_keys_str_mv | AT sujjatalazad growthenhancepolymericsubstancesfromphototrophicbacteriaformarinefinishlarvaculturesystem AT sittiraehanahmuhammadshaleh growthenhancepolymericsubstancesfromphototrophicbacteriaformarinefinishlarvaculturesystem AT julianransangan growthenhancepolymericsubstancesfromphototrophicbacteriaformarinefinishlarvaculturesystem |