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Overexpression of the brassinosteroid biosynthetic gene DWF4 in Brassica napus simultaneously increases seed yield and stress tolerance

机译:甘蓝型油菜中油菜素类固醇生物合成基因DWF4的过表达同时提高了种子产量和胁迫耐受性

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摘要

As a resource allocation strategy, plant growth and defense responses are generally mutually antagonistic. Brassinosteroid (BR) regulates many aspects of plant development and stress responses, however, genetic evidence of its integrated effects on plant growth and stress tolerance is lacking. We overexpressed the Arabidopsis BR biosynthetic gene AtDWF4 in the oilseed plant Brassica napus and scored growth and stress response phenotypes. The transgenic B. napus plants, in comparison to wild type, displayed increased seed yield leading to increased overall oil content per plant, higher root biomass and root length, significantly better tolerance to dehydration and heat stress, and enhanced resistance to necrotrophic fungal pathogens Leptosphaeria maculans and Sclerotinia sclerotiorum. Transcriptome analysis supported the integrated effects of BR on growth and stress responses; in addition to BR responses associated with growth, a predominant plant defense signature, likely mediated by BES1/BZR1, was evident in the transgenic plants. These results establish that BR can interactively and simultaneously enhance abiotic and biotic stress tolerance and plant productivity. The ability to confer pleiotropic beneficial effects that are associated with different agronomic traits suggests that BR–related genes may be important targets for simultaneously increasing plant productivity and performance under stress conditions.
机译:作为一种资源分配策略,植物的生长和防御反应通常是相互对立的。油菜素类固醇(BR)调节植物发育和胁迫响应的许多方面,但是,尚缺乏有关其对植物生长和胁迫耐受性的综合影响的遗传证据。我们在油菜植物甘蓝型油菜中过表达了拟南芥BR生物合成基因AtDWF4,并对生长和胁迫反应表型进行了评分。与野生型相比,转基因甘蓝型油菜植物显示出更高的种子产量,从而导致单株植物总油含量增加,根系生物量和根系长度更高,对脱水和热胁迫的耐受性显着提高,对坏死性真菌病原体的抵抗力增强黄斑病菌和核盘菌菌核。转录组分析支持BR对生长和应激反应的综合影响;除了与生长相关的BR反应外,在转基因植物中还很可能是由BES1 / BZR1介导的主要植物防御特征。这些结果表明,BR可以交互且同时增强非生物和生物逆境耐受性以及植物生产力。赋予与多种农艺性状相关的多效性有益效果的能力表明,BR相关基因可能是在胁迫条件下同时提高植物生产力和表现的重要目标。

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