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首页> 外文期刊>Functional Plant Biology >Grain yield and physiological traits of rice lines with the drought yield QTL qDTY12.1 showed different responses to drought and soil characteristics in upland environments
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Grain yield and physiological traits of rice lines with the drought yield QTL qDTY12.1 showed different responses to drought and soil characteristics in upland environments

机译:干旱产量QTL qDTY12.1的水稻的籽粒产量和生理性状在旱地环境中对干旱和土壤特性表现出不同的反应。

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摘要

To improve yield in upland conditions, near-isogenic lines (NILs) of the major-effect drought yield quantitative trait locus qDTY(12.1) in rice (Oryza sativa L.) were developed in the background of the upland variety Vandana. These NILs have shown greater water uptake a larger proportion of lateral roots, and higher transpiration efficiency under drought than Vandana, and one NIL (481-B) was selected as having the highest yield. In this study, the NILs were assessed in two greenhouse and 18 upland field trials for their response to drought and different soil textures. Performance of qDTY(12.1) NILs was not affected by soil texture but showed a notable response to drought stress severity. The yield advantage of 481-B over Vandana was highest in field trials with intermittent drought stress, in which the mean trial yield was greater than 0.5 t ha(-1), and in the least favourable well watered trial. The effects of qDTY(12.1) on water uptake were most apparent under mild to moderate stress but not in very severe drought or well watered treatments, whereas the lateral root and transpiration efficiency responses were observed under a range of conditions. These results highlight the varying response of qDTY(12.1) across upland environments and the complexity of multiple mechanisms acting together to confer an effect on rice yield under drought.
机译:为了提高旱地条件下的产量,在旱地品种Vandana的背景下,开发了水稻(Oryza sativa L.)的主要影响干旱产量定量性状基因座qDTY(12.1)的近等基因系(NILs)。这些NILs显示出比Vandana更大的水分吸收量和更大的侧根比例,并且在干旱下具有更高的蒸腾效率,并且选择了一个NIL(481-B)作为最高的产量。在这项研究中,在两个温室和18个高地田间试验中评估了NIL对干旱和不同土壤质地的响应。 qDTY(12.1)NIL的性能不受土壤质地的影响,但显示出对干旱胁迫严重程度的显着响应。在间歇干旱胁迫的田间试验中,481-B优于Vandana的产量优势最高,在该试验中,平均试验产量大于0.5 t ha(-1),而在灌溉条件最不理想的试验中效果最佳。在轻度至中度压力下,qDTY(12.1)对水分吸收的影响最为明显,但在非常严重的干旱或灌溉良好的处理中却不明显,而在多种条件下均观察到侧根和蒸腾效率响应。这些结果强调了旱地环境中qDTY(12.1)的变化响应以及多种机制共同作用以赋予干旱条件下水稻产量的复杂性。

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