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Genotypes Selection on the basis of Periodic Performance - A Reliable Strategy to Maximize Crop Water Use Efficiency and Productivity in Arid Regions

机译:基因型在定期性能的基础上选择 - 一种可靠的策略,可以最大限度地提高农作物用水效率和干旱地区生产力

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摘要

To evaluate drought resistance and adaptability of exotic wheat genotypes to rainfed conditions, a field experiment was performed at Arid Land Agriculture Research Station, King Abdulaziz University during 2012-13 and 2013-14 using randomized completeblock design with split plot arrangement. Drought stress was applied as 100% and 50% of total water requirement in main plots while four wheat genotypes viz. Yocoro rojo (YR), Faisalabad (Fsd), Millat and F-50 were planted in sub plots. Drought stress significantly decreased crop growth, yield and yield components while increased water use efficiency, harvest index and stress susceptibility index, however the effect of genotypes was significant for all traits except harvest index. The Fsd throughout growth period presented higher values for leaf area index, dry matter accumulation. Moreover, maximum days to 50% maturity (93 d), water use efficiency (8.88 kg grain ha~(-1) mm1), harvest index (28.79%), stress susceptibility index (1.23) and stress tolerance index (39%) were recorded for the Fsd. The drought tolerance potential of the genotype resulted in up to 21% increase in final grain yield under drought stress as compared to local genotype YR. Correlation analysis estimated the highest contributionof water use efficiency and stress indices towards genotype drought tolerance that translated in term of final grain yield. So, drought tolerant genotypes selection offered a reliable strategy to maximize crop water use productivity.
机译:为了评估雨量条件的干旱抵抗和异国情调的小麦基因型的适应性,在2012 - 13年和2013-14期间,在2012 - 13年和2013-14期间,在Abdulaziziz大学王的干旱地区农业研究站进行了田间实验。使用分组绘图布置。干旱胁迫在主要地块中施加为100%和50%的总水需求,而四个小麦基因型viz。 yocoro rojo(yr),faisalabad(FSD),米拉特和F-50被种植在子地块中。干旱胁迫显着降低了作物生长,产量和产量组分,同时增加了水利用效率,收获指数和应力易感性指数,但基因型的效果对于除收获指数之外的所有特征都很重要。 FSD整个生长期呈现出叶面积指数的更高值,干物质积累。此外,最大天数至50%成熟度(93d),用水效率(8.88千克谷物HA〜(-1)mm1),收获指数(28.79%),应力易感性指数(1.23)和应力耐受指数(39%)被记录为FSD。与局部基因型Yr相比,基因型的干旱耐受潜力导致干旱胁迫下最终籽粒产量增加了21%。相关性分析估计水利用效率和应力指数对基因型干旱耐受性的最高贡献,该耐旱性在最终籽粒产量期间翻译。因此,耐旱性基因型选择提供了可靠的策略,以最大限度地提高作物用水生产率。

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