首页> 外文期刊>Transgenic research >Phenotyping soybean plants transformed with rd29A:AtDREB1A for drought tolerance in the greenhouse and field.
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Phenotyping soybean plants transformed with rd29A:AtDREB1A for drought tolerance in the greenhouse and field.

机译:对用rd29A:AtDREB1A转化的大豆植物进行表型分析,以证明其在温室和田间的耐旱性。

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The development of drought tolerant plants is a high priority because the area suffering from drought is expected to increase in the future due to global warming. One strategy for the development of drought tolerance is to genetically engineer plants with transcription factors (TFs) that regulate the expression of several genes related to abiotic stress defense responses. This work assessed the performance of soybean plants overexpressing the TF DREB1A under drought conditions in the field and in the greenhouse. Drought was simulated in the greenhouse by progressively drying the soil of pot cultures of the P58 and P1142 lines. In the field, the performance of the P58 line and of 09D-0077, a cross between the cultivars BR16 and P58, was evaluated under four different water regimes: irrigation, natural drought (no irrigation) and water stress created using rain-out shelters in the vegetative or reproductive stages. Although the dehydration-responsive element-binding protein (DREB) plants did not outperform the cultivar BR16 in terms of yield, some yield components were increased when drought was introduced during the vegetative stage, such as the number of seeds, the number of pods with seeds and the total number of pods. The greenhouse data suggest that the higher survival rates of DREB plants are because of lower water use due to lower transpiration rates under well watered conditions. Further studies are needed to better characterize the soil and atmospheric conditions under which these plants may outperform the non-transformed parental plants.
机译:耐旱植物的开发是当务之急,因为受全球变暖的影响,预计未来干旱地区的面积将增加。开发耐旱性的一种策略是用转录因子(TFs)对植物进行基因工程改造,该转录因子可调节与非生物胁迫防御反应相关的几种基因的表达。这项工作评估了田间和温室中干旱条件下过量表达TF DREB1A的大豆植物的表现。通过逐步干燥P58和P1142品系盆栽土壤来模拟温室中的干旱。在田间,在四种不同的水分状况下对P58系列和BR16和P58品种之间的杂交品种09D-0077的性能进行了评估:灌溉,自然干旱(不灌溉)和使用防雨棚造成的水分胁迫在营养或生殖阶段。尽管脱水反应性元素结合蛋白(DREB)植物在产量上并没有超过BR16品种,但是在营养期引入干旱时,某些产量成分会增加,例如种子数量,带有荚果的豆荚数量。种子和豆荚的总数。温室数据表明,DREB植物的较高存活率是由于在灌溉条件良好的条件下较低的蒸腾速率导致了用水量的减少。需要进一步研究以更好地表征土壤和大气条件,在这些条件下这些植物的表现可能优于未转化的亲本植物。

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