Scale-up of Dunaliella salina cultivation: from strain selection to open ponds

被引:23
作者
Borovkov, Andrei B. [1 ]
Gudvilovich, Irina N. [1 ]
Avsiyan, Anna L. [1 ]
机构
[1] RAS, AO Kovalevsky Inst Biol Southern Seas, Dept Biotechnol & Phytoresources, Moscow, Russia
基金
俄罗斯基础研究基金会;
关键词
Dunaliella salina; Pilot-scale cultivation; Productivity; Greenhouse unit; beta-Carotene; Carotenoids/chlorophyll a ratio; BETA-CAROTENE; OUTDOOR CULTIVATION; MASS-CULTURE; GROWTH; LIGHT; MICROALGAE; PRODUCTIVITY; HALOTOLERANT; CHLOROPHYTA; BIOMASS;
D O I
10.1007/s10811-020-02104-5
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
The microalga Dunaliella salina was studied at the main stages of transition from laboratory to pilot-scale cultivation: strain selection, nutrient medium selection, estimation of influence of physicochemical factors on accumulation of carotenoids and evaluation of the selected strain growing technology at pilot conditions. Dunaliella salina strain IBSS-2 was recognized as promising for commercial cultivation due to the combination of high-production characteristics, environmental stress resistance, and relative easiness of transition to the carotenogenesis stage. The influence of stress factors on the D. salina culture productivity in two nutrient media was estimated. It was shown that light effect combined with nutrients deficiency is the key factor for beta-carotene accumulation. The influence of increased irradiance caused the increase of carotenoid content in D. salina cells up to 8%, and increasing irradiance and salinity resulted in carotenoid productivity going up 1.5 times. Testing of D. salina pilot cultivation system demonstrated that productivity at the first cultivation stage was about 6 g m(-2) day(-1) in both batch and semicontinuous mode. During pilot D. salina cultivation in Crimea, the culture transition to the carotenogenesis stage was achieved both in summer and autumn. The concentration of carotenoids in the ponds was 200 and 600 mg m(-2) with a carotenoid/chlorophyll a (Car/Chl a) ratio of 7 and 4.5 in summer and autumn, respectively. The possibility to use natural population of D. salina cells from salterns as inoculum and brine as a nutrient medium base was demonstrated. The study results suggest that the proposed approach can be recommended for D. salina commercial cultivation.
引用
收藏
页码:1545 / 1558
页数:14
相关论文
共 43 条
[1]   TECHNOLOGICAL APPLICATION OF MICROALGAE IN POWER INDUSTRY AND ENVIRONMENTAL PROTECTION [J].
Abdulagatov, Ilmutdin M. ;
Alkhasov, Alibek B. ;
Dogeev, Gasan D. ;
Tumalaev, Nariman R. ;
Aliev, Rasul M. ;
Badavov, Gasan B. ;
Aliev, Aslan M. ;
Salikhova, Asiyat S. .
SOUTH OF RUSSIA-ECOLOGY DEVELOPMENT, 2018, 13 (01) :166-183
[2]   Calibration of a productivity model for the microalgae Dunaliella salina accounting for light and temperature [J].
Bechet, Quentin ;
Moussion, Philippe ;
Bernard, Olivier .
ALGAL RESEARCH-BIOMASS BIOFUELS AND BIOPRODUCTS, 2017, 21 :156-160
[3]  
Ben-Amotz Ami, 2009, P189, DOI 10.1201/b10300-9
[4]   ACCUMULATION OF BETA-CAROTENE IN HALOTOLERANT ALGAE - PURIFICATION AND CHARACTERIZATION OF BETA-CAROTENE-RICH GLOBULES FROM DUNALIELLA-BARDAWIL (CHLOROPHYCEAE) [J].
BENAMOTZ, A ;
KATZ, A ;
AVRON, M .
JOURNAL OF PHYCOLOGY, 1982, 18 (04) :529-537
[5]   NEW MODE OF DUNALIELLA BIOTECHNOLOGY - 2-PHASE GROWTH FOR BETA-CAROTENE PRODUCTION [J].
BENAMOTZ, A .
JOURNAL OF APPLIED PHYCOLOGY, 1995, 7 (01) :65-68
[7]   Concomitant effects of light and temperature diel variations on the growth rate and lipid production of Dunaliella salina [J].
Bonnefond, H. ;
Moelants, N. ;
Talec, A. ;
Bernard, O. ;
Sciandra, A. .
ALGAL RESEARCH-BIOMASS BIOFUELS AND BIOPRODUCTS, 2016, 14 :72-78
[8]  
Borovkov A. B., 2013, Hydrobiological Journal, V49, P75
[9]  
Borovkov A.B., 2012, BIOTEKHNOLOGIYA, V5, P105
[10]  
Borovkov A. V., 2015, Hydrobiological Journal, V51, P69, DOI 10.1615/HydrobJ.v51.i3.50