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在温暖干燥的环境下,表达向日葵转录因子 HB4 的大豆表现出良好的田间性能。

Successful field performance in warm and dry environments of soybean expressing the sunflower transcription factor HB4.

机构信息

Instituto de Agrobiotecnología del Litoral, Universidad Nacional del Litoral - CONICET, Facultad de Bioquímica y Ciencias Biológicas, Santa Fe, Argentina.

INDEAR/BIOCERES, Rosario, Argentina.

出版信息

J Exp Bot. 2020 May 30;71(10):3142-3156. doi: 10.1093/jxb/eraa064.

Abstract

Soybean yield is limited primarily by abiotic constraints. No transgenic soybean with improved abiotic stress tolerance is commercially available. We transformed soybean plants with genetic constructs able to express the sunflower transcription factor HaHB4, which confers drought tolerance to Arabidopsis and wheat. One line (b10H) carrying the sunflower promoter was chosen among three independent lines because it exhibited the best performance in seed yield, and was evaluated in the greenhouse and in 27 field trials in different environments in Argentina. In greenhouse experiments, transgenic plants showed increased seed yield under stress conditions together with greater epicotyl diameter, larger xylem area, and increased water use efficiency compared with controls. They also exhibited enhanced seed yield in warm and dry field conditions. This response was accompanied by an increase in seed number that was not compensated by a decrease in individual seed weight. Transcriptome analysis of plants from a field trial with maximum difference in seed yield between genotypes indicated the induction of genes encoding redox and heat shock proteins in b10H. Collectively, our results indicate that soybeans transformed with HaHB4 are expected to have a reduced seed yield penalty when cultivated in warm and dry conditions, which constitute the best target environments for this technology.

摘要

大豆产量主要受非生物胁迫的限制。目前还没有具有改善非生物胁迫耐受性的转基因大豆可供商业使用。我们通过遗传构建体转化了大豆植株,这些构建体能表达向日葵转录因子 HaHB4,它能赋予拟南芥和小麦耐旱性。在三个独立的转化系中,选择了携带向日葵启动子的 b10H 系,因为它在种子产量方面表现最好,并在温室和阿根廷不同环境的 27 个田间试验中进行了评估。在温室实验中,与对照相比,转基因植株在胁迫条件下表现出更高的种子产量,同时具有更大的下胚轴直径、更大的木质部面积和更高的水分利用效率。它们在温暖干燥的田间条件下也表现出更高的种子产量。这种响应伴随着种子数量的增加,而单个种子重量没有减少。在种子产量基因型间差异最大的田间试验中对植株进行的转录组分析表明,b10H 中编码氧化还原和热休克蛋白的基因被诱导。总之,我们的研究结果表明,转化了 HaHB4 的大豆在温暖干燥的条件下种植时,种子产量的损失预计会减少,而这些条件是该技术的最佳目标环境。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eda4/7260725/2caf465a7827/eraa064f0001.jpg

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