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Activated Expression of an Arabidopsis HD-START Protein Confers Drought Tolerance with Improved Root System and Reduced Stomatal Density

机译:拟南芥HD-START蛋白的活化表达具有改善的根系和降低的气孔密度的干旱耐受性

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摘要

Drought is one of the most important environmental constraints limiting plant growth and agricultural productivity. To understand the underlying mechanism of drought tolerance and to identify genes for improving this important trait, we conducted a gain-of-function genetic screen for improved drought tolerance in Arabidopsis thaliana. One mutant with improved drought tolerance was isolated and designated as enhanced drought tolerance1. The mutant has a more extensive root system than the wild type, with deeper roots and more lateral roots, and shows a reduced leaf stomatal density. The mutant had higher levels of abscisic acid and Pro than the wild type and demonstrated an increased resistance to oxidative stress and high levels of superoxide dismutase. Molecular genetic analysis and recapitulation experiments showed that the enhanced drought tolerance is caused by the activated expression of a T-DNA tagged gene that encodes a putative homeodomain-START transcription factor. Moreover, overexpressing the cDNA of the transcription factor in transgenic tobacco also conferred drought tolerance associated with improved root architecture and reduced leaf stomatal density. Therefore, we have revealed functions of the homeodomain-START factor that were gained upon altering its expression pattern by activation tagging and provide a key regulator that may be used to improve drought tolerance in plants.
机译:干旱是限制植物生长和农业生产力的最重要的环境限制之一。为了了解耐旱性的潜在机制并确定改善该重要性状的基因,我们进行了功能获得性遗传筛选,以提高拟南芥的耐旱性。分离出一种具有增强的耐旱性的突变体,并命名为增强的耐旱性1。该突变体比野生型具有更广泛的根系,具有更深的根和更多的侧根,并显示出降低的叶片气孔密度。该突变体具有比野生型更高的脱落酸和脯氨酸水平,并显示出对氧化应激的抗性增强和高水平的超氧化物歧化酶。分子遗传学分析和概括实验表明,增强的耐旱性是由T-DNA标签基因的激活表达引起的,该基因编码一个假定的homeodomain-START转录因子。此外,在转基因烟草中过表达转录因子的cDNA还赋予了其与改善的根部结构和降低的气孔密度相关的耐旱性。因此,我们揭示了通过激活标签改变其表达模式后获得的homeodomain-START因子的功能,并提供了可用于改善植物抗旱性的关键调节剂。

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