在田间条件下稳定表达的生物工程莴苣中叶酸含量的提高。

IF 2.7 3区 生物学 Q2 BIOCHEMICAL RESEARCH METHODS
Lídia N Queiroz, Tatiane R Monteiro, Ana C M M Gomes, Glaucia B Cabral, Francisco J L Aragão
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引用次数: 0

摘要

叶酸(维生素B9)是一种必需的营养素,在各种身体机能中起着至关重要的作用。它的缺乏会导致健康问题,如巨幼细胞性贫血、发育中的胎儿神经管缺陷和心血管疾病的风险增加。因此,人们对通过经典育种和分子育种提高粮食作物中叶酸含量感兴趣。由于叶酸是一种对热敏感的水溶性维生素,我们选择在生菜中操纵其合成途径,生菜通常用于沙拉和三明治,不经过热处理,这使得它成为通过生物强化向人群提供叶酸的良好载体。利用拟南芥的gtp -环水解酶I和氨基脱氧choris酸合成酶编码序列,构建了转基因莴苣植株。植物在温室条件下栽培,并进行了两次田间试验。结果表明,转基因植株的叶酸含量是非转基因莴苣植株的3.4倍,是被认为是叶酸含量最丰富的植物之一的菠菜的1.9倍。在田间条件下培养高代纯合子植株2年,结果表明叶酸生物强化是稳定的。一份叶酸生物强化生菜可以提供每日推荐摄入量的36%到64%。这项技术是生产叶酸生物强化商业品种的基础,可以帮助减少隐性饥饿,减少胎儿畸形和其他疾病的病例数量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhanced folate content in bioengineered lettuce stably expressed under field conditions.

Folate (vitamin B9) is an essential nutrient that plays a crucial role in various bodily functions. Its deficiency can lead to health issues, such as megaloblastic anemia, neural tube defects in the developing fetus and increased risk of cardiovascular diseases. Consequently, there is interest in increasing folate content in food crops by classical and molecular breeding. Since folate is a water-soluble vitamin that is sensitive to heat, we chose to manipulate its synthesis pathway in lettuce, which is often used for salads and sandwiches, without heat treatment, which makes it a good vehicle for making folate available to the population via biofortification. Transgenic lettuce plants were generated to express the GTP-cyclohydrolase I and aminodeoxychorismate synthase coding sequences from Arabidopsis thaliana. Plants were cultivated under greenhouse conditions and two field trials were carried out. Results have shown that transgenic lines presented up to 3.4 times more folate than the non-transgenic lettuce plants and 1.9 times more folate than spinach, considered one of the plants richest in folates. Advanced generations of homozygous plants were cultivated under field conditions for two years and the results showed that folate-biofortification was stable. A folate-biofortified lettuce serving would provide about 36 to 64% of the recommended daily intake. This technology is a foundation to produce folate-biofortified commercial varieties that can help to reduce hidden hunger, decreasing the number of cases of fetus malformations and other diseases.

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来源期刊
Transgenic Research
Transgenic Research 生物-生化研究方法
CiteScore
5.40
自引率
0.00%
发文量
38
审稿时长
4-8 weeks
期刊介绍: Transgenic Research focusses on transgenic and genome edited higher organisms. Manuscripts emphasizing biotechnological applications are strongly encouraged. Intellectual property, ethical issues, societal impact and regulatory aspects also fall within the scope of the journal. Transgenic Research aims to bridge the gap between fundamental and applied science in molecular biology and biotechnology for the plant and animal academic and associated industry communities. Transgenic Research publishes -Original Papers -Reviews: Should critically summarize the current state-of-the-art of the subject in a dispassionate way. Authors are requested to contact a Board Member before submission. Reviews should not be descriptive; rather they should present the most up-to-date information on the subject in a dispassionate and critical way. Perspective Reviews which can address new or controversial aspects are encouraged. -Brief Communications: Should report significant developments in methodology and experimental transgenic higher organisms
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