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Impact of ancestral wheat sodium exclusion genes Nax1 and Nax2 on grain yield of durum wheat on saline soils.

机译:盐碱土上祖先小麦钠排除基因 Nax1 和 Nax2 对硬粒小麦籽粒产量的影响。

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摘要

Nax1 and Nax2 are two genetic loci that control the removal of Na+ from the xylem and thereby help to exclude Na+ from leaves of plants in saline soil. They originate in the wheat ancestral relative Triticum monococcum L. and are not present in modern durum or bread wheat. The Nax1 and Nax2 loci carry TmHKT1;4-A2 and TmHKT1;5-A, respectively, which are the candidate genes for these functions. This paper describes the development of near-isogenic breeding lines suitable for assessing the impact of the Nax loci and their performance in controlled environment and fields of varying salinity. In young plants grown in 150 mM NaCl, Nax1 reduced the leaf Na+ concentration by 3-fold, Nax2 by 2-fold and both Nax1 and Nax2 together by 4-fold. In 250 mM NaCl, Nax1 promoted leaf longevity and greater photosynthesis and stomatal conductance. In the uppermost leaf, the Na+-excluding effect of the Nax loci was much stronger. In the field, Na+ in the flag leaf was reduced 100-fold by Nax1 and 4-fold by Nax2; however, Nax1 lines yielded 5-10% less than recurrent parent (cv. Tamaroi) in saline soil. In contrast, Nax2 lines had no yield penalty and at high salinity they yielded close to 25% more than Tamaroi, indicating this material is suitable for breeding commercial durum wheat with improved yield on saline soils.
机译:Nax1 和 Nax2 是两个遗传位点,它们控制木质部中Na + 的去除,从而有助于排除Na + 来自盐渍土壤中植物的叶子。它们起源于小麦祖先的小麦(Triticum monococcum L.),在现代硬粒小麦或面包小麦中不存在。 Nax1 和 Nax2 位点分别携带 TmHKT1; 4-A2 和 TmHKT1; 5-A 这些功能的候选基因。本文介绍了近等基因育种系的发展,这些系适合评估 Nax 基因座的影响及其在受控环境和不同盐度领域的表现。在150 mM NaCl中生长的年轻植物中, Nax1 使叶片Na + 浓度降低3倍, Nax2 降低2倍,并且两者均< i> Nax1 和 Nax2 一起缩小了4倍。在250 mM NaCl中, Nax1 可提高叶片寿命,并提高光合作用和气孔导度。在最上面的叶子中, Nax 位点的Na + 排除效果更强。在田间,旗叶中的Na + 被 Nax1 降低了100倍,而 Nax2 降低了4倍;然而,在盐渍土上, Nax1 品系的产量比轮回亲本(C. Tamaroi)低5-10%。相反, Nax2 品系没有产量损失,并且在高盐度下它们的产量比Tamaroi高近25%,这表明该材料适合在盐渍土上改良商品硬质小麦。

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