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Influence of Water Deficit on Photosynthetic Activity, Dry Matter Partitioning and Grain Yield of Different Durum and Bread Wheat Genotypes

机译:水资源缺陷对不同杜姆和面包小麦基因型的光合活性,干物质分配和籽粒产量的影响

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摘要

We aimed to study the influence of soil water deficit on gas exchange parameters, dry matter partitioning in leaves, stem and spike and grain yield of durum (Triticum durum Desf.) and bread (Triticum aestivum L.) wheat genotypes in the 2013-2014 and 2014-2015 growing seasons. Water stress caused reduction of stomatal conductance, photosynthesis rate, transpiration rate, an increase of intercellular CO2 concentration. Photosynthesis rate positively correlated with growth rate of genotypes. Drought stress caused adaptive changes in dry matter partitioning between leaves, stem and spike of wheat genotypes. Stem dry mass increased until kernel ripening. Drought stress accelerated dry mass reduction in leaves and stem. High growth rate of spike dry mass was revealed in genotypes with late heading time. Spike dry mass positively correlated with photosynthesis rate and grain yield. Generally, bread wheat is more productive and tolerant to drought stress than durum wheat.
机译:我们旨在研究土壤水赤字对气体交换参数的影响,叶片,茎和穗和穗(Triticum Durum Desf的穗状物)和籽粒产量和面包(Triticum Aestivum L.)小麦基因型在2013 - 2014中 和2014-2015生长季节。 水应激导致气孔导度,光合速率,蒸腾速率,增加细胞间CO2浓度的增加。 光合速率与基因型的生长速率正相关。 干旱胁迫导致小麦基因型叶,茎和穗之间的干物质分配的适应性变化。 干燥质量增加,直至核成熟。 干旱胁迫加速叶子和茎的干燥质量减少。 在开始前进时间的基因型中揭示了穗干肿块的高生长速率。 尖峰干质量与光合速率和籽粒产量正相关。 通常,面包小麦比硬粒小麦更富含生产性和耐受性胁迫。

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