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首页> 外文期刊>Plant Biotechnology Journal >Cytokinin-mediated source/sink modifications improve drought tolerance and increase grain yield in rice under water-stress
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Cytokinin-mediated source/sink modifications improve drought tolerance and increase grain yield in rice under water-stress

机译:细胞素介导源/水槽改善改善水分胁迫下水稻籽粒产量提高干旱耐受性并提高粮食产量

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Drought is the major environmental factor limiting crop productivity worldwide. We hypothesized that it is possible to enhance drought tolerance by delaying stress-induced senescence through the stress-induced synthesis of cytokinins in crop-plants. We generated transgenic rice (Oryza sativa) plants expressing an isopentenyltransferase (IPT) gene driven by PSUBSARK/SUB, a stress- and maturation-induced promoter. Plants were tested for drought tolerance at two yield-sensitive developmental stages: pre- and post-anthesis. Under both treatments, the transgenic rice plants exhibited delayed response to stress with significantly higher grain yield (GY) when compared to wild-type plants. Gene expression analysis revealed a significant shift in expression of hormone-associated genes in the transgenic plants. During water-stress (WS), PSUBSARK/SUB::IPT plants displayed increased expression of brassinosteroid-related genes and repression of jasmonate-related genes. Changes in hormone homeostasis were associated with resource(s) mobilization during stress. The transgenic plants displayed differential expression of genes encoding enzymes associated with hormone synthesis and hormone-regulated pathways. These changes and associated hormonal crosstalk resulted in the modification of source/sink relationships and a stronger sink capacity of the PSUBSARK/SUB::IPT plants during WS. As a result, the transgenic plants had higher GY with improved quality (nutrients and starch content).
机译:干旱是全球范围内限制作物生产力的主要环境因素。我们假设通过延迟通过应激诱导的作物 - 植物中的细胞分裂素的合成延迟应力诱导的衰老,可以提高耐旱性。我们产生的转基因水稻(Oryza sativa)植物表达由P sark ,应力和成熟诱导的启动子驱动的异戊基转移酶(IPT)基因。在两个产率敏感的发育阶段测试植物的耐旱性:预先和后性化。在两种治疗中,与野生型植物相比,转基因水稻植物表现出对具有显着提高谷物产量(GY)的胁迫的延迟反应。基因表达分析显示转基因植物中激素相关基因表达的显着变化。在水分应激(WS)期间,P Sark :: IPT植物显示出芸苔类固醇相关基因和抑制茉莉酸二族相关基因的表达。激素稳态的变化与压力期间的资源调动有关。转基因植物显示编码与激素合成和激素调节途径相关的酶的差异表达。这些变化和相关的荷尔蒙串扰导致源/下沉关系的修改以及在WS期间P Sark :: IPT工厂的更强的沉降能力。结果,转基因植物具有更高的质量(营养物和淀粉含量)具有更高的GY。

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