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Potential of New Isolates of Dunaliella Salina for Natural β-Carotene Production

机译:杜氏盐藻新分离株对天然β-胡萝卜素生产的潜力

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摘要

The halotolerant microalga Dunaliella salina has been widely studied for natural β-carotene production. This work shows biochemical characterization of three newly isolated Dunaliella salina strains, DF15, DF17, and DF40, compared with D. salina CCAP 19/30 and D. salina UTEX 2538 (also known as D. bardawil). Although all three new strains have been genetically characterized as Dunaliella salina strains, their ability to accumulate carotenoids and their capacity for photoprotection against high light stress are different. DF15 and UTEX 2538 reveal great potential for producing a large amount of β-carotene and maintained a high rate of photosynthesis under light of high intensity; however, DF17, DF40, and CCAP 19/30 showed increasing photoinhibition with increasing light intensity, and reduced contents of carotenoids, in particular β-carotene, suggesting that the capacity of photoprotection is dependent on the cellular content of carotenoids, in particular β-carotene. Strong positive correlations were found between the cellular content of all-trans β-carotene, 9-cis β-carotene, all-trans α-carotene and zeaxanthin but not lutein in the D. salina strains. Lutein was strongly correlated with respiration in photosynthetic cells and strongly related to photosynthesis, chlorophyll and respiration, suggesting an important and not hitherto identified role for lutein in coordinated control of the cellular functions of photosynthesis and respiration in response to changes in light conditions, which is broadly conserved in Dunaliella strains. Statistical analysis based on biochemical data revealed a different grouping strategy from the genetic classification of the strains. The significance of these data for strain selection for commercial carotenoid production is discussed.
机译:卤代微藻杜氏盐藻已经被广泛研究用于天然β-胡萝卜素的生产。这项工作显示了三种新分离出的杜氏盐藻盐藻菌株DF15,DF17和DF40的生化特性,与D. salina CCAP 19/30和D. salina UTEX 2538(也称为D. bardawil)相比。尽管所有这三种新菌株在遗传上都被定性为杜氏盐藻,但它们积累类胡萝卜素的能力和针对高光胁迫的光防护能力却有所不同。 DF15和UTEX 2538在产生大量β-胡萝卜素方面显示出巨大潜力,并在高强度光下保持较高的光合作用速率。然而,DF17,DF40和CCAP 19/30显示随着光强度的增加而增加的光抑制作用以及类胡萝卜素(尤其是β-胡萝卜素)的含量降低,表明光保护能力取决于类胡萝卜素的细胞含量,尤其是β-胡萝卜素。在D. salina菌株中,发现全反式β-胡萝卜素,9-顺式β-胡萝卜素,全反式α-胡萝卜素和玉米黄质而不是叶黄素的细胞含量之间存在强正相关。叶黄素与光合细胞中的呼吸作用密切相关,与光合作用,叶绿素和呼吸作用密切相关,这表明叶黄素在协调控制光合作用和呼吸作用于光照条件变化的细胞功能中起着重要的作用,而迄今为止尚未确定。在杜氏藻中广泛保守。基于生化数据的统计分析揭示了与菌株的遗传分类不同的分组策略。讨论了这些数据对于商业类胡萝卜素生产菌株选择的意义。

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