Effects of light intensity and the remaining nitrate concentration on the beta-carotene accumulation of a wild Dunaliella salina strain isolated from the saline soil
An isolated <em>Dunaliella salina</em> strain from northern Thailand was cultured in modified Johnson’s medium in column photobioreactor. The beta-carotene accumulation mainly depended on the quantities of cells entering into carotenogenesis condition that was significantly enhanced by h...
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doaj-7a3eb63068e5479bb685febd7bae69db2021-05-03T04:28:40ZengMDPI AGMicrobiology Research2036-74732036-74812015-12-016110.4081/mr.2015.62333273Effects of light intensity and the remaining nitrate concentration on the beta-carotene accumulation of a wild Dunaliella salina strain isolated from the saline soilZhe Wu0Rokeya Akter1Wallop Arirob2Niran Juntawong3Chunhong Ma4Promchup Duangmanee5Faculty of Science, Kasetsart University, Thailand; Institute of Genetics and Physiology, Hebei Academy of Agriculture and Forestry Sciences, Plant Genetic Engineering Center of Hebei ProvinceFaculty of Science, Kasetsart UniversityFaculty of Science, Kasetsart UniversityFaculty of Science, Kasetsart UniversityInstitute of Genetics and Physiology, Hebei Academy of Agriculture and Forestry Sciences, Plant Genetic Engineering Center of Hebei ProvinceFaculty of Science, Kasetsart UniversityAn isolated <em>Dunaliella salina</em> strain from northern Thailand was cultured in modified Johnson’s medium in column photobioreactor. The beta-carotene accumulation mainly depended on the quantities of cells entering into carotenogenesis condition that was significantly enhanced by high started KNO3 concentration. Low remaining nitrate concentration in the culture of each cell (RNCC) was suitable for algae to accumulate beta-carotene. Following the cultivation time extended, RNCC of all cultures decreased and tended to the same level (10-20 pg/cell) although the biomass or betacarotene content in the culture was higher in high started KNO3 concentration. High light intensity restrained the growth especially in low KNO3 concentration but improved betacarotene accumulation and RNCC. The highest biomass and beta-carotene dry weight (DW) were 2.25 g L-1 and 79.2 mg g-1 DW respectively. Above results indicated that increasing the biomass and as early as possible to strengthen the stress on each cell was important to improve the final beta-carotene yield.http://www.pagepress.org/journals/index.php/mr/article/view/6233Biomassbeta-caroteneDunaliella salinalight stressnitrate limitation |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Zhe Wu Rokeya Akter Wallop Arirob Niran Juntawong Chunhong Ma Promchup Duangmanee |
spellingShingle |
Zhe Wu Rokeya Akter Wallop Arirob Niran Juntawong Chunhong Ma Promchup Duangmanee Effects of light intensity and the remaining nitrate concentration on the beta-carotene accumulation of a wild Dunaliella salina strain isolated from the saline soil Microbiology Research Biomass beta-carotene Dunaliella salina light stress nitrate limitation |
author_facet |
Zhe Wu Rokeya Akter Wallop Arirob Niran Juntawong Chunhong Ma Promchup Duangmanee |
author_sort |
Zhe Wu |
title |
Effects of light intensity and the remaining nitrate concentration on the beta-carotene accumulation of a wild Dunaliella salina strain isolated from the saline soil |
title_short |
Effects of light intensity and the remaining nitrate concentration on the beta-carotene accumulation of a wild Dunaliella salina strain isolated from the saline soil |
title_full |
Effects of light intensity and the remaining nitrate concentration on the beta-carotene accumulation of a wild Dunaliella salina strain isolated from the saline soil |
title_fullStr |
Effects of light intensity and the remaining nitrate concentration on the beta-carotene accumulation of a wild Dunaliella salina strain isolated from the saline soil |
title_full_unstemmed |
Effects of light intensity and the remaining nitrate concentration on the beta-carotene accumulation of a wild Dunaliella salina strain isolated from the saline soil |
title_sort |
effects of light intensity and the remaining nitrate concentration on the beta-carotene accumulation of a wild dunaliella salina strain isolated from the saline soil |
publisher |
MDPI AG |
series |
Microbiology Research |
issn |
2036-7473 2036-7481 |
publishDate |
2015-12-01 |
description |
An isolated <em>Dunaliella salina</em> strain from northern Thailand was cultured in modified Johnson’s medium in column photobioreactor. The beta-carotene accumulation mainly depended on the quantities of cells entering into carotenogenesis condition that was significantly enhanced by high started KNO3 concentration. Low remaining nitrate concentration in the culture of each cell (RNCC) was suitable for algae to accumulate beta-carotene. Following the cultivation time extended, RNCC of all cultures decreased and tended to the same level (10-20 pg/cell) although the biomass or betacarotene content in the culture was higher in high started KNO3 concentration. High light intensity restrained the growth especially in low KNO3 concentration but improved betacarotene accumulation and RNCC. The highest biomass and beta-carotene dry weight (DW) were 2.25 g L-1 and 79.2 mg g-1 DW respectively. Above results indicated that increasing the biomass and as early as possible to strengthen the stress on each cell was important to improve the final beta-carotene yield. |
topic |
Biomass beta-carotene Dunaliella salina light stress nitrate limitation |
url |
http://www.pagepress.org/journals/index.php/mr/article/view/6233 |
work_keys_str_mv |
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