Yield improvement of Gracilaria tenuistipitata by optimizing different aspects in coast of cox's bazar, Bangladesh

This research was designed to find out the effect of different factors such as influence of lunar cycle, harvesting interval, rope type and seeding gap on the production of G. tenuistipitata in coast of Cox's Bazar. Duration of these experiments were sixty days and all the parameters were recor...

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Published inScientific reports Vol. 12; no. 1; p. 4174
Main Authors Bokhtiar, S M, Ali, M A, Chowdhury, M A Z, Ahmed, K U, Hassan, M K, Ahmed, M, Bhuiyan, M S, Mashuk, O F, Rahman, M M, Salam, M A, Rafiquzzaman, S M, Hossain, Md Faruque
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Published England Nature Publishing Group 09.03.2022
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Abstract This research was designed to find out the effect of different factors such as influence of lunar cycle, harvesting interval, rope type and seeding gap on the production of G. tenuistipitata in coast of Cox's Bazar. Duration of these experiments were sixty days and all the parameters were recorded fortnightly. Monitoring of water quality parameters indicated that salinity, temperature, transparency, pH and DO were suitable for seaweed cultivation. In determining lunar cycle effect, results envisaged that fresh yield was 14.43% increased when seeding and harvesting time was selected considering the moon cycle. Regarding the selection of harvesting interval, it was found that T (30 days interval) was the best to harvest the seaweed whereas T (40 days interval) showed decreasing trend in production. Our study also found that semi floating single line showed better yield performance compared to semi floating double line system. In case of influence on seeding gap, it has been found that 20 cm gap between two seed showed the highest yields followed by 10 cm, 30 cm and 40 cm, respectively. Overall, it can be concluded that yield of G. tenuistipitata in coast of Cox's Bazar could be improved considering those factors.
AbstractList This research was designed to find out the effect of different factors such as influence of lunar cycle, harvesting interval, rope type and seeding gap on the production of G. tenuistipitata in coast of Cox’s Bazar. Duration of these experiments were sixty days and all the parameters were recorded fortnightly. Monitoring of water quality parameters indicated that salinity, temperature, transparency, pH and DO were suitable for seaweed cultivation. In determining lunar cycle effect, results envisaged that fresh yield was 14.43% increased when seeding and harvesting time was selected considering the moon cycle. Regarding the selection of harvesting interval, it was found that T 3 (30 days interval) was the best to harvest the seaweed whereas T 4 (40 days interval) showed decreasing trend in production. Our study also found that semi floating single line showed better yield performance compared to semi floating double line system. In case of influence on seeding gap, it has been found that 20 cm gap between two seed showed the highest yields followed by 10 cm, 30 cm and 40 cm, respectively. Overall, it can be concluded that yield of G. tenuistipitata in coast of Cox’s Bazar could be improved considering those factors.
Abstract This research was designed to find out the effect of different factors such as influence of lunar cycle, harvesting interval, rope type and seeding gap on the production of G. tenuistipitata in coast of Cox’s Bazar. Duration of these experiments were sixty days and all the parameters were recorded fortnightly. Monitoring of water quality parameters indicated that salinity, temperature, transparency, pH and DO were suitable for seaweed cultivation. In determining lunar cycle effect, results envisaged that fresh yield was 14.43% increased when seeding and harvesting time was selected considering the moon cycle. Regarding the selection of harvesting interval, it was found that T3 (30 days interval) was the best to harvest the seaweed whereas T4 (40 days interval) showed decreasing trend in production. Our study also found that semi floating single line showed better yield performance compared to semi floating double line system. In case of influence on seeding gap, it has been found that 20 cm gap between two seed showed the highest yields followed by 10 cm, 30 cm and 40 cm, respectively. Overall, it can be concluded that yield of G. tenuistipitata in coast of Cox’s Bazar could be improved considering those factors.
This research was designed to find out the effect of different factors such as influence of lunar cycle, harvesting interval, rope type and seeding gap on the production of G. tenuistipitata in coast of Cox’s Bazar. Duration of these experiments were sixty days and all the parameters were recorded fortnightly. Monitoring of water quality parameters indicated that salinity, temperature, transparency, pH and DO were suitable for seaweed cultivation. In determining lunar cycle effect, results envisaged that fresh yield was 14.43% increased when seeding and harvesting time was selected considering the moon cycle. Regarding the selection of harvesting interval, it was found that T3 (30 days interval) was the best to harvest the seaweed whereas T4 (40 days interval) showed decreasing trend in production. Our study also found that semi floating single line showed better yield performance compared to semi floating double line system. In case of influence on seeding gap, it has been found that 20 cm gap between two seed showed the highest yields followed by 10 cm, 30 cm and 40 cm, respectively. Overall, it can be concluded that yield of G. tenuistipitata in coast of Cox’s Bazar could be improved considering those factors.
Abstract This research was designed to find out the effect of different factors such as influence of lunar cycle, harvesting interval, rope type and seeding gap on the production of G. tenuistipitata in coast of Cox’s Bazar. Duration of these experiments were sixty days and all the parameters were recorded fortnightly. Monitoring of water quality parameters indicated that salinity, temperature, transparency, pH and DO were suitable for seaweed cultivation. In determining lunar cycle effect, results envisaged that fresh yield was 14.43% increased when seeding and harvesting time was selected considering the moon cycle. Regarding the selection of harvesting interval, it was found that T 3 (30 days interval) was the best to harvest the seaweed whereas T 4 (40 days interval) showed decreasing trend in production. Our study also found that semi floating single line showed better yield performance compared to semi floating double line system. In case of influence on seeding gap, it has been found that 20 cm gap between two seed showed the highest yields followed by 10 cm, 30 cm and 40 cm, respectively. Overall, it can be concluded that yield of G. tenuistipitata in coast of Cox’s Bazar could be improved considering those factors.
This research was designed to find out the effect of different factors such as influence of lunar cycle, harvesting interval, rope type and seeding gap on the production of G. tenuistipitata in coast of Cox's Bazar. Duration of these experiments were sixty days and all the parameters were recorded fortnightly. Monitoring of water quality parameters indicated that salinity, temperature, transparency, pH and DO were suitable for seaweed cultivation. In determining lunar cycle effect, results envisaged that fresh yield was 14.43% increased when seeding and harvesting time was selected considering the moon cycle. Regarding the selection of harvesting interval, it was found that T (30 days interval) was the best to harvest the seaweed whereas T (40 days interval) showed decreasing trend in production. Our study also found that semi floating single line showed better yield performance compared to semi floating double line system. In case of influence on seeding gap, it has been found that 20 cm gap between two seed showed the highest yields followed by 10 cm, 30 cm and 40 cm, respectively. Overall, it can be concluded that yield of G. tenuistipitata in coast of Cox's Bazar could be improved considering those factors.
ArticleNumber 4174
Author Bhuiyan, M S
Mashuk, O F
Bokhtiar, S M
Salam, M A
Hossain, Md Faruque
Hassan, M K
Ahmed, M
Ali, M A
Rahman, M M
Chowdhury, M A Z
Rafiquzzaman, S M
Ahmed, K U
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BackLink https://www.ncbi.nlm.nih.gov/pubmed/35264683$$D View this record in MEDLINE/PubMed
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CitedBy_id crossref_primary_10_1016_j_algal_2024_103404
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crossref_primary_10_1016_j_focha_2024_100655
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Cites_doi 10.1266/ggs.74.189
10.1016/j.rsma.2019.100959
10.1007/BF03053436
10.2112/SI86-038.1
10.2216/15-90.1
10.1007/978-3-642-28451-9_22
10.1046/j.1529-8817.2003.02092.x
10.3329/bjz.v45i1.34192
10.1016/j.foodhyd.2015.05.004
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10.1134/S1063074010040012
10.1016/B978-008045405-4.00066-5
10.1016/j.aquaculture.2005.08.029
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    fullname: ME Hoq
– volume: 38
  start-page: 1
  year: 2020
  ident: 8040_CR15
  publication-title: Bangladesh J.
  contributor:
    fullname: MH Imran
– ident: 8040_CR38
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Snippet This research was designed to find out the effect of different factors such as influence of lunar cycle, harvesting interval, rope type and seeding gap on the...
Abstract This research was designed to find out the effect of different factors such as influence of lunar cycle, harvesting interval, rope type and seeding...
Abstract This research was designed to find out the effect of different factors such as influence of lunar cycle, harvesting interval, rope type and seeding...
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StartPage 4174
SubjectTerms Agricultural production
Agricultural research
Algae
Bangladesh
Coasts
Experiments
Farming
Gracilaria
Harvest
Influence
Lunar rhythm
Nitrates
Salinity
Seaweed
Seaweeds
Seeding
Seeds
Water monitoring
Water quality
Water quality management
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Title Yield improvement of Gracilaria tenuistipitata by optimizing different aspects in coast of cox's bazar, Bangladesh
URI https://www.ncbi.nlm.nih.gov/pubmed/35264683
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https://search.proquest.com/docview/2638726609
https://pubmed.ncbi.nlm.nih.gov/PMC8907302
https://doaj.org/article/316561d75cb5408db3f3bd9d586303e5
Volume 12
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