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Development of salt-resistant maize hybrids: The combination of physiological strategies using conventional breeding methods

机译:抗盐玉米杂交种的开发:采用常规育种方法的生理策略组合

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According to the two-phase model of growth response to salt stress by Munns, there are two major physiological problems that may limit crop performance under saline conditions. In a first phase, osmotic problems reduce extension growth so that plants show stunted growth and look dark-green in color. In a second phase, ion toxicity develops and growth of sensitive plants is severely inhibited. Based on physiological knowledge, a breeding program was initiated to improve the salt resistance of maize. First, an efficiently Na+-excluding inbred line (NaExIl) was established that combines superior Na+ exclusion at the root surface with low Na+ root-to-shoot translocation relative to the parental hybrid Pioneer 3906. Second, out of 200 inbred lines 16 inbred lines were identified with increased osmotic resistance. Crossing of these inbred lines with NaExIl resulted in newly developed hybrids (SR hybrids) that showed significantly improved grain yield performance under saline conditions (EC = 10 dS m(-1)). Whereas osmotic adjustment, turgor, and cell-wall acidification are maintained in the newly developed SR hybrids, cell-wall extensibility still seems to limit extension growth. The newly developed SR hybrids are ideal tools to study physiological traits that may contribute to salt resistance of maize.
机译:根据Munns对盐胁迫的生长反应的两阶段模型,存在两个主要的生理问题,这些问题可能会限制盐分条件下的作物生长。在第一阶段,渗透问题降低了延伸的生长,从而使植物显示出发育不良的生长,并呈深绿色。在第二阶段,离子毒性发展,敏感植物的生长受到严重抑制。基于生理知识,启动了育种计划以提高玉米的耐盐性。首先,建立了有效的不含Na +的近交系(NaExIl),该系结合了相对于亲本杂交种Pioneer 3906在根表面具有优异的Na +排斥性和较低的Na +根到茎易位。第二,从200个自交系中获得了16个近交系被确定具有增加的渗透阻力。这些自交系与NaExIl的杂交导致新开发的杂种(SR杂种)在盐分条件下(EC = 10 dS m(-1))显示出显着提高的谷物产量表现。在新开发的SR杂交种中,渗透调节,膨胀和细胞壁酸化得以维持,而细胞壁的可扩展性似乎仍然限制了延伸的增长。新开发的SR杂种是研究可能有助于玉米抗盐性的生理特性的理想工具。

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