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首页> 外文期刊>Plant Biotechnology Journal >Arabidopsis EDT1 / HDG11 improves drought and salt tolerance in cotton and poplar and increases cotton yield in the field
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Arabidopsis EDT1 / HDG11 improves drought and salt tolerance in cotton and poplar and increases cotton yield in the field

机译:拟南芥EDT1 / HDG11提高了棉花和杨树的耐旱和耐盐性,并提高了田间棉花产量

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Drought and salinity are two major environmental factors limiting crop production worldwide. Improvement of drought and salt tolerance of crops with transgenic approach is an effective strategy to meet the demand of the ever?¢????growing world population. Arabidopsis ENHANCED DROUGHT TOLERANCE1/HOMEODOMAIN GLABROUS11 ( AtEDT1/HDG11 ), a homeodomain?¢????START transcription factor, has been demonstrated to significantly improve drought tolerance in Arabidopsis , tobacco, tall fescue and rice. Here we report that AtHDG11 also confers drought and salt tolerance in upland cotton ( Gossypium hirsutum ) and woody plant poplar ( Populus tomentosa Carr.). Our results showed that both the transgenic cotton and poplar exhibited significantly enhanced tolerance to drought and salt stress with well?¢????developed root system. In the leaves of the transgenic cotton plants, proline content, soluble sugar content and activities of reactive oxygen species?¢????scavenging enzymes were significantly increased after drought and salt stress compared with wild type. Leaf stomatal density was significantly reduced, whereas stomatal and leaf epidermal cell size were significantly increased in both the transgenic cotton and poplar plants. More importantly, the transgenic cotton showed significantly improved drought tolerance and better agronomic performance with higher cotton yield in the field both under normal and drought conditions. These results demonstrate that AtHDG11 is not only a promising candidate for crops improvement but also for woody plants.
机译:干旱和盐分是限制全球农作物产量的两个主要环境因素。用转基因方法改善农作物的干旱和耐盐性是满足不断增长的世界人口需求的有效策略。拟南芥增强的干旱耐受性1 /同源异型GLABROUS11(AtEDT1 / HDG11)是同源域的起始转录因子,已证明可显着提高拟南芥,烟草,高羊茅和水稻的耐旱性。在这里,我们报道AtHDG11还赋予陆地棉(Gossypium hirsutum)和木本植物杨树(Populus tomentosa Carr。)耐旱和耐盐的作用。我们的结果表明,转基因棉花和杨树对根系的干旱和盐胁迫表现出显着增强的耐受性,根系发达。与野生型相比,干旱和盐胁迫后,转基因棉花的叶片中脯氨酸含量,可溶性糖含量和活性氧清除酶的活性均显着增加。在转基因棉花和杨树植物中,叶片气孔密度显着降低,而气孔和叶片表皮细胞大小显着增加。更重要的是,在正常和干旱条件下,转基因棉花在田间均表现出明显提高的抗旱性和更好的农艺性能,并具有更高的棉花产量。这些结果表明,AtHDG11不仅是作物改良的有希望的候选者,而且还是木本植物的候选者。

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