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A wheat/rye polymorphism affects seminal root length and yield across different irrigation regimes

机译:小麦/黑麦的多态性影响不同灌溉方式下的精根长度和单产

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摘要

The introgression of a small segment of wheat (Triticum aestivum L.) chromosome arm 1BS in the distal region of the rye (Secale cereale L.) 1RS.1BL arm translocation in wheat (henceforth 1RSRW) was previously associated with reduced grain yield, carbon isotope discrimination, and stomatal conductance, suggesting reduced access to soil moisture. Here we show that lines with the normal 1RS arm have longer roots than lines with the 1RSRW arm in both field and hydroponic experiments. In the 1RSRW lines, differences in seminal root length were associated with a developmentally regulated arrest of the root apical meristem (RAM). Approximately 10 d after germination, the seminal roots of the 1RSRW plants showed a gradual reduction in elongation rate, and stopped growing a week later. Seventeen days after germination, the roots of the 1RSRW plants showed altered gradients of reactive oxygen species and emergence of lateral roots close to the RAM, suggesting changes in the root meristem. The 1RSRW lines also showed reduced biomass (estimated by the normalized difference vegetation index) and grain yield relative to the 1RS lines, with larger differences under reduced or excessive irrigation than under normal irrigation. These results suggest that this genetic variation could be useful to modulate root architecture.
机译:一小部分小麦(Triticum aestivum L.)染色体臂1BS在黑麦(Secale graine L.)1RS.1BL臂移位的小麦(此后称为1RS RW )的远端区域中渗入。以前与降低谷物产量,碳同位素识别和气孔导度有关,表明减少了土壤水分的获取。在这里,我们显示在田间试验和水培试验中,具有1RS正常臂的系比具有1RS RW 臂的系具有更长的根。在1RS RW 品系中,精浆根长的差异与根尖分生组织(RAM)的发育受调控有关。发芽后约10 d,1RS RW 植物的精根显示出伸长率逐渐降低,并在一周后停止生长。种子发芽后的第17天,1RS RW 植物的根系表现出活性氧梯度变化和靠近RAM的侧根出现,表明根分生组织发生了变化。 1RS RW 品系也显示出相对于1RS品系减少的生物量(通过归一化差异植被指数估算)和谷物产量,在减少或过度灌溉下的差异比在正常灌溉下更大。这些结果表明,这种遗传变异可能对调节根系结构很有用。

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