利用化学诱变剂和氨基酸抑制剂制造单细胞产蛋白枯草芽孢杆菌突变体。

IF 2.3 Q2 BIOLOGY
Scientifica Pub Date : 2024-11-29 eCollection Date: 2024-01-01 DOI:10.1155/sci5/8968295
Indra Berzina, Martins Kalnins, Zane Geiba, Svetlana Raita, Jelizaveta Palcevska, Taras Mika, Kriss Spalvins
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引用次数: 0

摘要

由于人口增长和气候变化,人们越来越需要替代食物和蛋白质来源,以减少蛋白质短缺和食品工业对环境的影响。单细胞蛋白(scp)具有部分或完全替代植物和动物来源的膳食蛋白的潜力。枯草芽孢杆菌由于其生长速度快,能够从其生物量中获得高蛋白和必需氨基酸(AA)含量,是一种有吸引力的SCP生产细菌。它也能够利用广泛的基板。通过诱变可以进一步提高枯草芽孢杆菌的吸引力和效率。本研究通过实验验证了一种提高蛋白质和AA含量的突变菌株的新方法。该方法是基于应用AA抑制剂的选择性压力,以确保具有增强的蛋白质和/或AA合成能力的突变体的生长。对于AA抑制剂,采用三种除草剂:草铵膦(GA)、l -甲硫氨酸亚砜(MSO)和S-(2-氨基乙基)- l -半胱氨酸(AEC)。首先,确定AA抑制剂完全抑制野生型(WT)枯草芽孢杆菌菌株的剂量。然后,用EMS化学诱变剂处理枯草芽孢杆菌,并在含有AA抑制剂抑制剂量的培养基上培养诱变体。选择生长样本,分析和比较。GA的最佳抑制浓度为0.05 ~ 0.4 M, MSO为0.01 ~ 0.05 M, AEC为0.2 M。在生物量提高7.1倍、蛋白质浓度提高1.5倍、AA含量提高1.2倍、必需AA指数提高1.2倍的条件下,筛选出表现最佳的突变体。使用MSO和AEC也成功地选择了增强突变体。这项研究证明了使用AA抑制剂选择具有改进蛋白和AA谱的突变体的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Creating Single-Cell Protein-Producing Bacillus subtilis Mutants Using Chemical Mutagen and Amino Acid Inhibitors.

Due to population growth and climate changes, there is a rising need for alternative food and protein sources to reduce protein scarcity and the environmental impact of food industries. Single-cell proteins (SCPs) have the potential to partially or fully substitute plant- and animal-derived dietary proteins. Bacillus subtilis is an appealing bacterium for SCP production because of its fast growth and ability to obtain high protein and essential amino acid (AA) content in its biomass. It is also capable of utilizing a wide range of substrates. B. subtilis attractiveness and efficiency can be further enhanced using mutagenesis. In this study, a novel approach to creating mutant strains with enhanced protein and AA content was experimentally validated. The method is based on the application of AA inhibitors for selective pressure to ensure the growth of mutants with enhanced protein and/or AA synthesis capacity. For AA inhibitors, three herbicides were used: glufosinate-ammonium (GA), L-methionine sulfoximine (MSO), and S-(2-aminoethyl)-L-cysteine (AEC). Initially, AA inhibitor doses for the complete inhibition of wild-type (WT) B. subtilis strain were determined. Then, B. subtilis was treated with EMS chemical mutagen and created mutants were cultivated on a medium containing inhibitory dose of AA inhibitors. Growing samples were selected, analyzed, and compared. The optimal inhibitory concentrations of herbicides for mutant selection were 0.05-0.4 M for GA, 0.01-0.05 M for MSO, and 0.2 M for AEC. The best-performing mutants were selected when using GA-improvement of 7.1 times higher biomass content, 1.5 times higher protein concentration, 1.2 times higher AA content, and 1.2 times higher essential AA index was achieved in comparison with WT B. subtilis. Enhanced mutants were also successfully selected when using MSO and AEC. This study demonstrates the potential of using AA inhibitors for the selection of mutants with improved protein and AA profiles.

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来源期刊
Scientifica
Scientifica BIOLOGY-
CiteScore
6.70
自引率
0.00%
发文量
43
审稿时长
21 weeks
期刊介绍: Scientifica is a peer-reviewed, Open Access journal that publishes research articles, review articles, and clinical studies covering a wide range of subjects in the life sciences, environmental sciences, health sciences, and medicine. The journal is divided into the 65 subject areas.
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