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麦角硫因通过基因表达提高种子产量和花的数量。 (注:原文中“in.”后面内容缺失,此译文为根据现有内容尽量完整翻译)

Ergothioneine Improves Seed Yield and Flower Number through Gene Expression in .

作者信息

Koshiyama Tatsuyuki, Higashiyama Yukihiro, Mochizuki Izumi, Yamada Tetsuya, Kanekatsu Motoki

机构信息

New Business Division, Kureha Corporation, Chuo-ku, Tokyo 103-8552, Japan.

United Graduate School of Agricultural Science, Tokyo University of Agriculture and Technology, Fuchu, Tokyo 183-8509, Japan.

出版信息

Plants (Basel). 2024 Sep 5;13(17):2487. doi: 10.3390/plants13172487.

Abstract

Biostimulants are a new category of materials that improve crop productivity by maximizing their natural abilities. Out of these biostimulants, those that increase seed production are considered to be particularly important as they contribute directly to the increase in the yield of cereals and legumes. Ergothioneine (EGT) is a natural, non-protein amino acid with antioxidant effects that is used in pharmaceuticals, cosmetics, and foods. However, EGT has not been used in agriculture. This study investigated the effect of EGT on seed productivity in . Compared with an untreated control, the application of EGT increased the seed yield by 66%. However, EGT had no effect on seed yield when applied during or after bolting and did not promote the growth of vegetative organs. On the other hand, both the number of flowers and the transcript levels of (), a key gene involved in flowering, were increased significantly by the application of EGT. The results suggest that EGT improves seed productivity by increasing flower number through the physiological effects of the FT protein. Furthermore, the beneficial effect of EGT on flower number is expected to make it a potentially useful biostimulant not only in crops where seeds are harvested, but also in horticultural crops such as ornamental flowering plants, fruits, vegetables.

摘要

生物刺激素是一类新型物质,通过最大限度地发挥作物的自然能力来提高作物生产力。在这些生物刺激素中,那些能增加种子产量的被认为尤为重要,因为它们直接有助于提高谷物和豆类的产量。麦角硫因(EGT)是一种具有抗氧化作用的天然非蛋白质氨基酸,用于制药、化妆品和食品中。然而,EGT尚未用于农业领域。本研究调查了EGT对[具体作物]种子生产力的影响。与未处理的对照相比,施用EGT使种子产量提高了66%。然而,在抽薹期或抽薹期之后施用EGT对种子产量没有影响,并且EGT也不会促进营养器官的生长。另一方面,施用EGT显著增加了花朵数量以及开花关键基因[具体基因]的转录水平。结果表明,EGT通过FT蛋白的生理作用增加花的数量,从而提高种子生产力。此外,EGT对花数量的有益影响有望使其不仅在收获种子的作物中,而且在观赏花卉、水果、蔬菜等园艺作物中成为一种潜在有用的生物刺激素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/583f/11397572/7c02a6b16e3c/plants-13-02487-g001.jpg

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