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Down-regulation of CBP80 gene expression as a strategy to engineer a drought-tolerant potato

机译:下调CBp80基因表达作为设计耐旱马铃薯的策略

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摘要

Developing new strategies for crop plants to respond to drought is crucial for their innovative breeding. The down-regulation of nuclear cap-binding proteins in Arabidopsis renders plants drought tolerant. The CBP80 gene in the potato cultivar Desiree was silenced using artificial microRNAs. Transgenic plants displayed a higher tolerance to drought, ABA-hypersensitive stomatal closing, an increase in leaf stomata and trichome density, and compact cuticle structures with a lower number of microchannels. These findings were correlated with a higher tolerance to water stress. The level of miR159 was decreased, and the levels of its target mRNAs MYB33 and MYB101 increased in the transgenic plants subjected to drought. Similar trends were observed in an Arabidopsis cbp80 mutant. The evolutionary conservation of CBP80, a gene that plays a role in the response to drought, suggests that it is a candidate for genetic manipulations that aim to obtain improved water-deficit tolerance of crop plants.
机译:为作物植物制定应对干旱的新策略对于其创新育种至关重要。拟南芥中核帽结合蛋白的下调使植物具有耐旱性。使用人工microRNA沉默马铃薯栽培种Desiree中的CBP80基因。转基因植物显示出更高的耐旱性,ABA超敏气孔关闭,叶片气孔和毛状体密度的增加以及具有较少微通道数量的致密表皮结构。这些发现与对水分胁迫的较高耐受性相关。在遭受干旱的转基因植物中,miR159的水平降低,而其目标mRNA MYB33和MYB101的水平升高。在拟南芥cbp80突变体中观察到类似的趋势。 CBP80(一种在干旱响应中起作用的基因)的进化保守性表明,它是旨在提高农作物对水分缺乏的耐受性的遗传操作的候选者。

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