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Expression of a fungal sterol desaturase improves tomato drought tolerance pathogen resistance and nutritional quality

机译:真菌固醇去饱和酶的表达提高了番茄的耐旱性病原体抗性和营养品质

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摘要

Crop genetic engineering mostly aims at improving environmental stress (biotic and abiotic) tolerance as well as nutritional quality. Empowering a single crop with multiple traits is highly demanding and requires manipulation of more than one gene. However, we report improved drought tolerance and fungal resistance along with the increased iron and polyunsaturated fatty acid content in tomato by expressing a single gene encoding C-5 sterol desaturase (FvC5SD) from an edible fungus Flammulina velutipes. FvC5SD is an iron binding protein involved in ergosterol biosynthesis. Morphological and biochemical analyses indicated ≈23% more epicuticular wax deposition in leaves of transgenic plants that provides an effective waterproof barrier resulting in improved protection from drought and infection by phytopathogenic fungus Sclerotinia sclerotiorum. Furthermore, the transgenic fruits have improved nutritional value attributed to enhanced level of beneficial PUFA and 2-3 fold increase in total iron content. This strategy can be extended to other economically important crops.
机译:作物基因工程的主要目标是提高环境胁迫(生物和非生物)的耐受性以及营养质量。使单一作物具有多种性状的能力要求很高,并且需要操纵多个基因。但是,我们报道了通过从食用菌金针菇表达一个编码C-5固醇去饱和酶(FvC5SD)的单一基因,提高了番茄的耐旱性和抗真菌性,同时增加了铁和多不饱和脂肪酸的含量。 FvC5SD是一种参与麦角固醇生物合成的铁结合蛋白。形态和生化分析表明,转基因植物叶片中的表皮蜡沉积增加了约23%,这提供了有效的防水屏障,从而提高了对干旱和植物病原菌菌核盘菌感染的保护。此外,转基因水果具有更高的营养价值,这归因于有益PUFA的水平提高以及总铁含量提高了2-3倍。该策略可以扩展到其他具有重要经济意义的作物。

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