纳豆芽孢杆菌富蛋氨酸与赖氨酸融合基因的构建与表达

Zhang Shuang , Luo Chao-chao , Wu Cai-xia , Gao Xue-jun
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摘要

摘要蛋氨酸和赖氨酸是家畜必需的限制性氨基酸,也是饲料生产中进行质量控制和质量评价最需要关注的指标。它们在饲料中的含量直接影响牲畜蛋白质的合成。纳豆芽孢杆菌具有优良的益生菌特性。本实验采用基因工程方法融合PCR技术,将玉米胚乳蛋白中富含蛋氨酸的基因(zein)与辣椒花药中富含赖氨酸的基因(Cflr)连接,将融合基因插入到表达载体pHT43中,构建了重组质粒pHT43/zein-Cflr。将重组质粒转入纳豆芽孢杆菌中,经IPTG诱导表达融合基因。SDS-PAGE分析发现重组菌株在40ku位点有明显的条带。用高效液相色谱法分别检测蛋氨酸和赖氨酸的含量,重组菌株中蛋氨酸和赖氨酸的含量分别比野生菌株高18.37%和24.68%。我们也在传代过程中验证了重组菌的稳定性,发现其稳定性为100%。本研究为重组纳豆芽孢杆菌作为饲料添加剂的应用提供了研究依据。
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Construction and Expression of Methionine-rich and Lysine-rich Fusion Gene in Bacillus natto

Abstract

Methionine and lysine are restrictive essential amino acids of livestock, they are also the most attentive indexes in the feed production to carry out the quality control and quality evaluation. Their contents in feed directly affect livestock protein synthesis. Bacillus natto has excellent probiotic properties. In this experiment, we used the genetic engineering method, fusion PCR technique, to connect methionine-rich gene (zein) from maize endosperm protein with lysine-rich gene (Cflr) from the pepper anther, then the fusion gene was inserted into the expression vector pHT43, and the recombinant plasmid pHT43/zein-Cflr was constructed. The recombinant plasmid was transferred into Bacillus natto, and induced by IPTG for the expression of the fusion gene. We found an apparent band at 40 ku site for the recombinant strain by SDS-PAGE. The contents of methionine and lysine were individually detected with HPLC, the quantities of methionine and lysine in the recombinant strain increased by 18.37% and 24.68% than the wild one, respectively. We also verified the stability of the recombinant bacterium during passaging, and found the stability was 100%. This study provided research-basis for the application of the recombined Bacillus natto as feed additive.

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