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Wheat grain yield on saline soils is improved by an ancestral Na+ transporter gene

机译:Na +转运基因提高了盐渍土上小麦的产量

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The ability of wheat to maintain a low sodium concentration ([Na+]) in leaves correlates with improved growth under saline conditions(1,2). This trait, termed Na+ exclusion, contributes to the greater salt tolerance of bread wheat relative to durum wheat(3,4). To improve the salt tolerance of durum wheat, we explored natural diversity in shoot Na+ exclusion within ancestral wheat germplasm. Previously, we showed that crossing of Nax2, a gene locus in the wheat relative Triticum monococcum into a commercial durum wheat (Triticum turgidum ssp. durum var. Tamaroi) reduced its leaf [Na+] (ref. 5). Here we show that a gene in the Nax2 locus, TmHKT1; 5-A, encodes a Na+-selective transporter located on the plasma membrane of root cells surrounding xylem vessels, which is therefore ideally localized to withdraw Na+ from the xylem and reduce transport of Na+ to leaves. Field trials on saline soils demonstrate that the presence of TmHKT1; 5-A significantly reduces leaf [Na+] and increases durum wheat grain yield by 25% compared to near-isogenic lines without the Nax2 locus.
机译:小麦保持叶片中低钠浓度([Na +])的能力与盐分条件下生长的改善有关(1,2)。相对于硬粒小麦,这种被称为Na +排斥的性状有助于提高面包小麦的耐盐性(3,4)。为了提高硬粒小麦的耐盐性,我们探索了祖先小麦种质中芽Na +排阻的自然多样性。以前,我们证明了将Nax2(小麦亲缘种小麦的一个基因座)与商品硬质小麦(Triticum turgidum ssp.durum var.Tamaroi)杂交减少了其叶片[Na +](参考文献5)。在这里,我们显示了Nax2基因座TmHKT1中的一个基因。 5-A,编码位于木质部血管周围根细胞质膜上的Na +选择性转运蛋白,因此理想地定位为从木质部中抽出Na +并减少Na +向叶的转运。在盐渍土壤上的田间试验表明,存在TmHKT1。与没有Nax2基因座的近等基因系相比,5-A显着降低了叶片[Na +]的含量并使硬质小麦籽粒的产量提高了25%。

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