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Combining chemical and genetic approaches to increase drought resistance in plants

机译:结合化学和遗传方法提高植物的抗旱性

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Drought stress is a major threat to crop production, but effective methods to mitigate the adverse effects of drought are not available. Here, we report that adding fluorine atoms in the benzyl ring of the abscisic acid (ABA) receptor agonist AM1 optimizes its binding to ABA receptors by increasing the number of hydrogen bonds between the compound and the surrounding amino acid residues in the receptor ligand-binding pocket. The new chemicals, known as AMFs, have long-lasting effects in promoting stomatal closure and inducing the expression of stress-responsive genes. Application of AMFs or transgenic overexpression of the receptor PYL2 in Arabidopsis and soybean plants confers increased drought resistance. The greatest increase in drought resistance is achieved when AMFs are applied to the PYL2-overexpression transgenic plants. Our results demonstrate that the combining of potent chemicals with transgenic overexpression of an ABA receptor is very effective in helping plants combat drought stress.
机译:干旱胁迫是对作物生产的主要威胁,但尚无减轻干旱不利影响的有效方法。在这里,我们报道在脱落酸(ABA)受体激动剂AM1的苄基环中添加氟原子可通过增加化合物与受体配体结合中周围氨基酸残基之间的氢键数量来优化其与ABA受体的结合口袋。被称为AMF的新化学物质在促进气孔闭合和诱导应激反应基因的表达方面具有长期作用。在拟南芥和大豆植物中施用AMF或受体PYL2的转基因过表达可提高抗旱性。将AMFs应用于过表达PYL2的转基因植物时,可最大程度提高抗旱性。我们的结果表明,强效化学物质与ABA受体的转基因过表达相结合,在帮助植物对抗干旱胁迫方面非常有效。

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