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表达从头合成蛋白MB-16的转基因大豆中蛋白质质量的改善

Improved protein quality in transgenic soybean expressing a de novo synthetic protein, MB-16.

作者信息

Zhang Yunfang, Schernthaner Johann, Labbé Natalie, Hefford Mary A, Zhao Jiping, Simmonds Daina H

机构信息

Eastern Cereals and Oilseed Research Centre, Agriculture and Agri-Food Canada, Ottawa, ON, K1A0C6, Canada.

出版信息

Transgenic Res. 2014 Jun;23(3):455-67. doi: 10.1007/s11248-013-9777-5. Epub 2014 Jan 17.

Abstract

To improve soybean [Glycine max (L.) Merrill] seed nutritional quality, a synthetic gene, MB-16 was introduced into the soybean genome to boost seed methionine content. MB-16, an 11 kDa de novo protein enriched in the essential amino acids (EAAs) methionine, threonine, lysine and leucine, was originally developed for expression in rumen bacteria. For efficient seed expression, constructs were designed using the soybean codon bias, with and without the KDEL ER retention sequence, and β-conglycinin or cruciferin seed specific protein storage promoters. Homozygous lines, with single locus integrations, were identified for several transgenic events. Transgene transmission and MB-16 protein expression were confirmed to the T5 and T7 generations, respectively. Quantitative RT-PCR analysis of developing seed showed that the transcript peaked in growing seed, 5-6 mm long, remained at this peak level to the full-sized green seed and then was significantly reduced in maturing yellow seed. Transformed events carrying constructs with the rumen bacteria codon preference showed the same transcription pattern as those with the soybean codon preference, but the transcript levels were lower at each developmental stage. MB-16 protein levels, as determined by immunoblots, were highest in full-sized green seed but the protein virtually disappeared in mature seed. However, amino acid analysis of mature seed, in the best transgenic line, showed a significant increase of 16.2 and 65.9 % in methionine and cysteine, respectively, as compared to the parent. This indicates that MB-16 elevated the sulfur amino acids, improved the EAA seed profile and confirms that a de novo synthetic gene can enhance the nutritional quality of soybean.

摘要

为提高大豆[Glycine max (L.) Merrill]种子的营养品质,将一个合成基因MB - 16导入大豆基因组以提高种子蛋氨酸含量。MB - 16是一种11 kDa的从头合成蛋白,富含必需氨基酸(EAA)蛋氨酸、苏氨酸、赖氨酸和亮氨酸,最初是为在瘤胃细菌中表达而开发的。为实现高效的种子表达,构建体设计采用了大豆密码子偏好性,有或没有KDEL内质网滞留序列,以及β - 伴大豆球蛋白或十字花科植物种子特异性蛋白储存启动子。针对几个转基因事件鉴定出了单一位点整合的纯合系。分别在T5和T7代确认了转基因传递和MB - 16蛋白表达。对发育中的种子进行的定量RT - PCR分析表明,转录本在长度为5 - 6毫米的生长种子中达到峰值,在全尺寸绿色种子阶段保持在该峰值水平,然后在成熟黄色种子中显著降低。携带具有瘤胃细菌密码子偏好性构建体的转化事件与具有大豆密码子偏好性的事件显示出相同的转录模式,但在每个发育阶段转录水平较低。通过免疫印迹测定的MB - 16蛋白水平在全尺寸绿色种子中最高,但在成熟种子中该蛋白几乎消失。然而,对最佳转基因系的成熟种子进行氨基酸分析表明,与亲本相比,蛋氨酸和半胱氨酸分别显著增加了16.2%和65.9%。这表明MB - 16提高了含硫氨基酸水平,改善了种子必需氨基酸谱,并证实了一个从头合成基因可以提高大豆的营养品质。

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