首页> 外文期刊>Acta Botanica Brasilica >Metabolic responses and ?2-carotene production by the unicellular green alga Dunaliella salina exposed to leaf extracts
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Metabolic responses and ?2-carotene production by the unicellular green alga Dunaliella salina exposed to leaf extracts

机译:暴露于叶提取物的单细胞绿藻杜氏盐藻的代谢反应和β2-胡萝卜素的产生

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The present work investigated the effects of aqueous extracts of eucalyptus ( Eucalyptus globulus ) and elderberry ( Sambucus ebulus ) leaves on ?2-carotene productivity in Dunaliella salina , a green microalga. Leaf extracts from eucalyptus have greater amounts of phenolics and flavonoids, as well as greater ferric reducing antioxidant potential than elderberry. The extracts of both species greatly inhibited growth of algal suspensions. However, chlorophyll and ?2-carotene concentration increased in cells treated with leaf extracts, and the highest values were detected in 1 % eucalyptus and 2 % elderberry extracts. Fresh weight, total sugar, and protein content significantly increased following exposure of cells to different doses of leaf extracts. However, in doses containing more than 2 % eucalyptus, the upward trend for total sugar and protein ceased and remained statistically unchanged. These results suggest that metabolic modifications enable D. salina cells to tolerate the stress induced by the leaf extracts through allocating carbon flux to the synthesis of osmolytes and putative antioxidant molecules (e.g. sugars and ?2-carotene). Therefore, the use of leaf extracts holds potential to be a promising and effective way to improve D. salina cultivation for ?2-carotene production and other biotechnological and industrial applications.
机译:本工作调查了绿色微藻杜氏藻(Dunaliella salina)中桉树(Eucalyptus globulus)和接骨木浆果(接骨木(Sambucus ebulus))的水提物对β2-胡萝卜素生产力的影响。与接骨木浆果相比,桉树的叶提取物具有更大的酚类和类黄酮含量,以及更高的三氧化二铁还原性抗氧化能力。两种物种的提取物都极大地抑制了藻类悬浮液的生长。但是,用叶提取物处理的细胞中的叶绿素和β2-胡萝卜素浓度增加,在1%的桉树提取物和2%的接骨木浆果提取物中检测到最高值。将细胞暴露于不同剂量的叶提取物后,鲜重,总糖和蛋白质含量显着增加。然而,在含有超过2%桉树的剂量中,总糖和蛋白质的上升趋势停止了,并且在统计学上没有变化。这些结果表明,通过将碳通量分配给渗透压剂和推定的抗氧化剂分子(例如糖和β2-胡萝卜素)的合成,代谢修饰使盐藻得以耐受叶提取物诱导的胁迫。因此,使用叶提取物具有潜力,成为改善α2-胡萝卜素生产及其他生物技术和工业应用中盐藻的栽培的有前途和有效的方法。

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