Institute of Crop Science, Chinese Academy of Agricultural Sciences (CAAS)/National Key Facility for Crop Gene Resources and Genetic Improvement, Key Laboratory of Biology and Genetic Improvement of Triticeae Crops, Ministry of Agriculture, Beijing, 100081, China.
Wheat Research Institute, Henan Academy of Agricultural Sciences, Zhengzhou, Henan, 450002, China.
Sci Rep. 2020 Mar 19;10(1):5020. doi: 10.1038/s41598-020-62052-5.
Lack of potassium in soil limits crop yield. Increasing yield and conserving potassium ore requires improving K use efficiency (KUE). Many genes influence KUE in plants, but it is not clear how these genes function in the field. We identified the V-type H-pyrophosphatase gene EdVP1 from Elymus dahurica. Gene expression analysis showed that EdVP1 was induced by low potassium stress. Protein subcellular localization analysis demonstrated that EdVP1 localized on the plasma membrane. We overexpressed EdVP1 in two wheat varieties and conducted K tolerance experiments across years. Yield per plant, grain number per spike, plant height, and K uptake of four transgenic wheat lines increased significantly compared with WT; results from two consecutive years showed that EdVP1 significantly increased yield and KUE of transgenic wheat. Pot experiments showed that transgenic plants had significantly longer shoots and roots, and higher K accumulation in shoots and roots and H-PPase activity in shoots than WT under low K. A fluidity assay of potassium ion in EdVP1 transgenic plant roots showed that potassium ion influx and H outflow in transgenic plants were higher than WT. Overexpressing EdVP1 significantly improved yield and KUE of transgenic wheat and was related to higher K uptake capacity in root.
土壤中钾的缺乏限制了作物的产量。提高产量和保护钾矿需要提高钾利用效率(KUE)。许多基因影响植物的 KUE,但这些基因在田间的作用尚不清楚。我们从披碱草属中鉴定出 V 型 H-焦磷酸酶基因 EdVP1。基因表达分析表明,EdVP1 受低钾胁迫诱导。蛋白亚细胞定位分析表明,EdVP1 定位于质膜上。我们在两个小麦品种中过表达了 EdVP1,并进行了多年的耐钾实验。与 WT 相比,四个转基因小麦品系的单株产量、穗粒数、株高和 K 吸收量显著增加;连续两年的结果表明,EdVP1 显著提高了转基因小麦的产量和 KUE。盆栽实验表明,在低钾条件下,转基因植株的地上部和根部长势明显较长,地上部和根中的 K 积累和 H-PPase 活性显著高于 WT。EdVP1 转基因植物根系钾离子流动性测定表明,转基因植物的钾离子内流和 H 外流高于 WT。过表达 EdVP1 显著提高了转基因小麦的产量和 KUE,这与根中更高的 K 吸收能力有关。