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利用果实特异性 E8 启动子驱动枯草芽孢杆菌植酸酶基因表达提高黄瓜果实中的矿物质、代谢物和植物营养素。

Expression of B. subtilis Phytase gene driven by fruit specific E8 promoter for enhanced minerals, metabolites and phytonutrient in cucumber fruit.

机构信息

Division of Plant Omics, CSIR-Central Salt and Marine Chemicals Research Institute (CSIR-CSMCRI), Council of Scientific and Industrial Research (CSIR), Gijubhai Badheka Marg, Bhavnagar 364 002, Gujarat, India; Academy of Scientific and Innovative Research (AcSIR), Ghaziabad 201002, India.

Division of Plant Omics, CSIR-Central Salt and Marine Chemicals Research Institute (CSIR-CSMCRI), Council of Scientific and Industrial Research (CSIR), Gijubhai Badheka Marg, Bhavnagar 364 002, Gujarat, India.

出版信息

Food Res Int. 2022 Jun;156:111138. doi: 10.1016/j.foodres.2022.111138. Epub 2022 Mar 19.

Abstract

The fruit nutrigenomics is an interesting and important research area towards nutrition enhancement. The phytic acid is one of the major antinutrient compound, present in seeded fruits and crops. It hinders the absorption of iron (Fe), zinc (Zn), magnesium (Mg), potassium (K) and calcium (Ca), causing mineral deficiencies. In the present study, the BsPhy gene was overexpressed in the cucumber fruits using the tomato fruit specific E8 and constitutive CaMV 35S promoter. The E8 promoter imparted heterologous expression of GUS gene in cucumber fruits, furthermore, the fruit specific expression of E8 promoter with BsPhy gene was confirmed in transgenics (E8::BsPhy) using anti rabbit-phytase antibody. The physio-biochemical analysis of transgenics revealed, maximum phytase activity in E8::BsPhy cucumber fruits at 10 days after anthesis (DAA) compared to 35S::BsPhy and wild-type (WT) fruits. Consequently, E8::BsPhy fruits also showed increased amount of inorganic phosphorus (Pi), total phosphorus (P), minerals (Zn, Fe, Mg, K, Ca), total carotenoid and other macronutrients at 10 DAA compared to 35S::BsPhy fruits. The metabolite profiling of fruits (10 DAA) showed increased sugars, amino acids, sugar acids and polyols, in both E8::BsPhy and 35S::BsPhy transgenics suggesting higher phytate metabolism, compared to WT fruits. Interestingly, both the transgenic fruits showed higher fruit biomass and yield along with improved nutritional quality, which can be attributed to increased P and Zn contents in transgenic fruits, compared to WT fruits. Our findings reveal that the BsPhy gene enhances minerals and macronutrients in transgenic cucumber fruits making it nutritious and healthy.

摘要

果壳营养基因组学是一个有趣且重要的研究领域,它旨在增强营养。植酸是一种主要的抗营养化合物,存在于有种子的水果和作物中。它会阻碍铁(Fe)、锌(Zn)、镁(Mg)、钾(K)和钙(Ca)的吸收,导致矿物质缺乏。在本研究中,通过使用番茄果实特异性 E8 和组成型 CaMV 35S 启动子,在黄瓜果实中过表达了 BsPhy 基因。E8 启动子在黄瓜果实中赋予了 GUS 基因的异源表达,此外,通过抗兔植酸酶抗体,在转基因(E8::BsPhy)中证实了 E8 启动子与 BsPhy 基因的果实特异性表达。对转基因的生理生化分析表明,与 35S::BsPhy 和野生型(WT)果实相比,在授粉后 10 天(DAA)时,E8::BsPhy 黄瓜果实中的植酸酶活性最高。因此,E8::BsPhy 果实中也显示出与 35S::BsPhy 果实相比,无机磷(Pi)、总磷(P)、矿物质(Zn、Fe、Mg、K、Ca)、总类胡萝卜素和其他大量营养素的含量增加。果实的代谢物分析(10 DAA)表明,与 WT 果实相比,在 E8::BsPhy 和 35S::BsPhy 转基因中,增加了糖、氨基酸、糖酸和多元醇,这表明植酸盐代谢更高。有趣的是,与 WT 果实相比,两种转基因果实都表现出更高的果实生物量和产量,同时改善了营养品质,这归因于转基因果实中 P 和 Zn 含量的增加。我们的研究结果表明,BsPhy 基因增强了转基因黄瓜果实中的矿物质和大量营养素,使其具有营养和健康的特性。

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