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Cuticular Wax Accumulation Is Associated with Drought Tolerance in Wheat Near-Isogenic Lines

机译:小麦近等基因系表皮蜡积累与耐旱性相关

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摘要

Previous studies have shown that wheat grain yield is seriously affected by drought stress, and leaf cuticular wax is reportedly associated with drought tolerance. However, most studies have focused on cuticular wax biosynthesis and model species. The effects of cuticular wax on wheat drought tolerance have rarely been studied. The aims of the current study were to study the effects of leaf cuticular wax on wheat grain yield under drought stress using the above-mentioned wheat NILs and to discuss the possible physiological mechanism of cuticular wax on high grain yield under drought stress. Compared to water-irrigated (WI) conditions, the cuticular wax content (CWC) in glaucous and non-glaucous NILs under drought-stress (DS) conditions both increased; mean increase values were 151.1 and 114.4%, respectively, which was corroborated by scanning electronic microscopy images of large wax particles loaded on the surfaces of flag leaves. The average yield of glaucous NILs was higher than that of non-glaucous NILs under DS conditions in 2014 and 2015; mean values were 7368.37 kg·ha−1 and 7103.51 kg·ha−1. This suggested that glaucous NILs were more drought-tolerant than non-glaucous NILs (P = 0.05), which was supported by the findings of drought tolerance indices TOL and SSI in both years, the relatively high water potential and relative water content, and the low ELWL. Furthermore, the photosynthesis rate (Pn) of glaucous and non-glaucous wheat NILs under DS conditions decreased by 7.5 and 9.8%, respectively; however, glaucous NILs still had higher mean values of Pn than those of non-glaucous NILs, which perhaps resulted in the higher yield of glaucous NILs. This could be explained by the fact that glaucous NILs had a smaller Fv/Fm reduction, a smaller PI reduction and a greater ABS/RC increase than non-glaucous NILs under DS conditions. This is the first report to show that wheat cuticular wax accumulation is associated with drought tolerance. Moreover, the leaf CWC can be an effective selection criterion in the development of drought-tolerant wheat cultivars.
机译:先前的研究表明,小麦籽粒的产量受到干旱胁迫的严重影响,据报道叶表皮蜡质与干旱耐受性有关。然而,大多数研究集中在表皮蜡的生物合成和模型物种上。很少研究表皮蜡对小麦耐旱性的影响。本研究的目的是利用上述小麦NILs研究叶片角质层蜡对干旱胁迫下小麦籽粒产量的影响,并探讨干旱胁迫下角质层蜡对小麦高产的可能生理机制。与水灌溉条件相比,干旱胁迫(DS)条件下的无水和无水NILs的表皮蜡含量(CWC)均增加。平均增加值分别为151.1%和114.4%,这是通过扫描电子显微镜图像检查装在旗叶表面的大蜡粒的确证的。在2014年和2015年,在DS条件下,无糖NIL的平均产量高于无糖NIL;平均值分别为7368.37 kg·ha -1 和7103.51 kg·ha -1 。这表明冰质NIL比非冰质NIL更耐旱(P = 0.05),这被以下两个方面的发现所支持:耐旱指数TOL和SSI,相对较高的水势和相对含水量以及低ELWL。此外,在DS条件下,无糖和无糖小麦NIL的光合作用速率(Pn)分别降低了7.5和9.8%。然而,与非水质NIL相比,水质NIL的Pn平均值仍然更高,这可能导致水质NIL的产量更高。这可以用以下事实来解释:在DS条件下,与无水NIL相比,无水NIL的Fv / Fm降低较小,PI降低较小,而ABS / RC的增加更大。这是第一个显示小麦表皮蜡积累与耐旱性相关的报告。此外,叶片CWC可以作为开发耐旱小麦品种的有效选择标准。

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