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Expression of an Arabidopsis vacuolar H+-pyrophosphatase gene (AVP1) in cotton improves drought- and salt tolerance and increases fibre yield in the field conditions

机译:拟拟拟拟拟亚磷酸磷酸酶基因(AVP1)的表达改善了干旱和耐盐性,并增加了现场条件下的纤维产量

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摘要

The Arabidopsis gene AVP1 encodes a vacuolar pyrophosphatase that functions as a proton pump on the vacuolar membrane. Overexpression of AVP1 in Arabidopsis, tomato and rice enhances plant performance under salt and drought stress conditions, because up-regulation of the type I H+-PPase from Arabidopsis may result in a higher proton electrochemical gradient, which facilitates enhanced sequestering of ions and sugars into the vacuole, reducing water potential and resulting in increased drought-and salt tolerance when compared to wild-type plants. Furthermore, over-expression of AVP1 stimulates auxin transport in the root system and leads to larger root systems, which helps transgenic plants absorb water more efficiently under drought conditions. Using the same approach, AVP1-expressing cotton plants were created and tested for their performance under high-salt and reduced irrigation conditions. The AVP1-expressing cotton plants showed more vigorous growth than wild-type plants in the presence of 200 mM NaCl under hydroponic growth conditions. The soil-grown AVP1-expressing cotton plants also displayed significantly improved tolerance to both drought and salt stresses in greenhouse conditions. Furthermore, the fibre yield of AVP1-expressing cotton plants is at least 20% higher than that of wild-type plants under dry-land conditions in the field. This research indicates that AVP1 has the potential to be used for improving crop's drought- and salt tolerance in areas where water and salinity are limiting factors for agricultural productivity.
机译:Arabidopsis Gene AVP1编码真空焦磷酸酶,其用作真空膜上的质子泵​​。拟南芥中AVP1的过度表达,番茄和水稻提高盐和干旱胁迫条件下的植物性能,因为从拟南芥的I型H + -ppase的上调可能导致更高的质子电化学梯度,这有利于增强离子和糖的血液螯合与野生型植物相比,液泡,降低水势并导致干旱和耐盐性增加。此外,AVP1的过表达刺激根系中的植物素转运,并导致较大的根系,这有助于转基因植物在干旱条件下更有效地吸收水。使用相同的方法,在高盐和降低的灌溉条件下创建和测试表达AVP1的棉花植物。 AVP1表达棉花植物在水培生长条件下在200mM NaCl存在下比野生型植物更加剧烈生长。土壤生长的AVP1表达的棉花植物也显示出对温室条件下的干旱和盐胁迫显着提高的耐受性。此外,AVP1表达棉花植物的纤维产率比该领域的干陆条件下的野生型植物高至少20%。该研究表明,AVP1有可能用于改善水和盐度是农业生产力的限制因素的影响。

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