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在低氮磷浓度下培养的新型长形球藻(绿藻门,绿藻纲)菌株的脂肪酸含量和组成。

Fatty Acid Content and Profile of the Novel Strain of Coccomyxa elongata (Trebouxiophyceae, Chlorophyta) Cultivated at Reduced Nitrogen and Phosphorus Concentrations.

机构信息

К.A. Timiryazev Institute of Plant Physiology RAS, IPP RAS, Moscow, 127276, Russia.

Bohdan Khmelnytskyi Melitopol State Pedagogical University, 72312, Melitopol, Ukraine.

出版信息

J Phycol. 2019 Oct;55(5):1154-1165. doi: 10.1111/jpy.12903. Epub 2019 Aug 28.

Abstract

A novel freshwater strain of Coccomyxa elongata (MZ-Ch64) was isolated from the Zaporizhia region, Ukraine. The identification was based on the phylogenetic analysis of SSU rDNA gene and ITS1-5.8S rDNA-ITS2 region and predicted secondary structure of the ITS2. Phylogenetic analysis placed this strain in the Coccomyxa group, within the class Trebouxiophyceae. The novel strain MZ-Ch64 formed a strongly supported lineage closest with C. elongata. The MZ-Ch64 strain differed from the morphological description of the species by the size of vegetative cells and absence of small mucilaginous caps at one end of the cell. A number of experiments with different concentrations of phosphate and nitrate were conducted to evaluate changes in the resulting fatty acid profiles and biomass productivity. The fatty acid profile and total fatty acids varied significantly under different nutrient deficiencies. The dominant fatty acid during cultivation on standard BBM medium, as well as in phosphorus-depleted conditions, was oleic acid (to 48.0%-54.6% of total fatty acids). Absence of nitrogen alone, and absence of both nitrogen and phosphorus, led to an increase of palmitic acid (to 24.7%-25.6%), cis-7-hexadecenoic acid (to 14.8%) and α-linolenic acid (to 9.1%-10.1%) in comparison with the control sample. The greatest variation was found for oleic acid (31.9%-54.6%). Thus, this strain can be considered as a potential producer of oleic acid or cis-7-hexadecenoic and α-linolenic acids for biotechnological applications.

摘要

一种新型淡水衣藻(MZ-Ch64)菌株从乌克兰扎波罗热地区分离得到。鉴定基于 SSU rDNA 基因和 ITS1-5.8S rDNA-ITS2 区的系统发育分析和 ITS2 预测的二级结构。系统发育分析将该菌株置于衣藻组内,属于绿藻纲。新型 MZ-Ch64 菌株与长形衣藻形成了一个强有力的支持系统发育枝。与该物种的形态描述相比,MZ-Ch64 菌株的区别在于营养细胞的大小和细胞一端缺少小的粘性帽。进行了一系列不同浓度磷酸盐和硝酸盐的实验,以评估脂肪酸谱和生物量生产力的变化。在不同的营养缺乏条件下,脂肪酸谱和总脂肪酸发生了显著变化。在标准 BBM 培养基上培养以及在磷缺乏条件下,脂肪酸谱的优势脂肪酸是油酸(占总脂肪酸的 48.0%-54.6%)。单独缺乏氮,以及同时缺乏氮和磷,导致棕榈酸(增加到 24.7%-25.6%)、顺式-7-十六烯酸(增加到 14.8%)和α-亚麻酸(增加到 9.1%-10.1%)增加,与对照样品相比。油酸的变化最大(31.9%-54.6%)。因此,该菌株可以被认为是生物技术应用中油酸或顺式-7-十六烯酸和α-亚麻酸的潜在生产菌株。

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