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通过对水稻胚乳的代谢工程提高维生素 B1 的积累。

Metabolic engineering of rice endosperm towards higher vitamin B1 accumulation.

机构信息

Laboratory of Functional Plant Biology, Department of Biology, Ghent University, Gent, Belgium.

Laboratory of Toxicology, Department of Bioanalysis, Ghent University, Gent, Belgium.

出版信息

Plant Biotechnol J. 2021 Jun;19(6):1253-1267. doi: 10.1111/pbi.13545. Epub 2021 Feb 11.

Abstract

Rice is a major food crop to approximately half of the human population. Unfortunately, the starchy endosperm, which is the remaining portion of the seed after polishing, contains limited amounts of micronutrients. Here, it is shown that this is particularly the case for thiamin (vitamin B1). Therefore, a tissue-specific metabolic engineering approach was conducted, aimed at enhancing the level of thiamin specifically in the endosperm. To achieve this, three major thiamin biosynthesis genes, THIC, THI1 and TH1, controlled by strong endosperm-specific promoters, were employed to obtain engineered rice lines. The metabolic engineering approaches included ectopic expression of THIC alone, in combination with THI1 (bigenic) or combined with both THI1 and TH1 (trigenic). Determination of thiamin and thiamin biosynthesis intermediates reveals the impact of the engineering approaches on endosperm thiamin biosynthesis. The results show an increase of thiamin in polished rice up to threefold compared to WT, and stable upon cooking. These findings confirm the potential of metabolic engineering to enhance de novo thiamin biosynthesis in rice endosperm tissue and aid in steering future biofortification endeavours.

摘要

大米是全球约一半人口的主要粮食作物。遗憾的是,经过抛光处理后的稻米淀粉胚乳仅含有有限量的微量营养元素。本研究表明,这在硫胺素(维生素 B1)中表现得尤为明显。因此,开展了一种组织特异性的代谢工程方法,旨在专门提高胚乳中硫胺素的水平。为实现这一目标,使用了三个受强胚乳特异性启动子控制的主要硫胺素生物合成基因(THIC、THI1 和 TH1)来获得工程化的水稻品系。代谢工程方法包括单独异位表达 THIC,与 THI1 组合(双基因)或与 THI1 和 TH1 组合(三基因)。硫胺素和硫胺素生物合成中间产物的测定揭示了这些工程方法对胚乳硫胺素生物合成的影响。结果表明,与 WT 相比,抛光米中的硫胺素增加了两倍,并且在烹饪后仍然稳定。这些发现证实了代谢工程在提高水稻胚乳组织中新合成的硫胺素方面的潜力,并有助于指导未来的生物强化工作。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4be/11385036/4aa8e92bf995/PBI-19-1253-g003.jpg

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