首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Maize, sorghum, and pearl millet have highly contrasting species strategies to adapt to water stress and climate change-like conditions
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Maize, sorghum, and pearl millet have highly contrasting species strategies to adapt to water stress and climate change-like conditions

机译:玉米,高粱和珍珠小米具有高度对比的物种策略,以适应水分压力和气候变化的条件

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摘要

This study compared maize, sorghum and pearl-millet, leading C-4 cereals, for the transpiration rate (TR) response to increasing atmospheric and soil water stress. The TR response to transiently increasing VPD (0.9-4.1 kPa) and the transpiration and leaf area expansion response to progressive soil drying were measured in controlled conditions at early vegetative stage in 10-16 genotypes of each species grown in moderate or high vapor pressure deficit (VPD) conditions. Maize grown under moderate VPD conditions restricted TR under high VPD, but not sorghum and pearl millet. By contrast, when grown under high VPD, all species increased TR upon increasing VPD, suggesting a loss of TR responsiveness. Sorghum and pearl-millet grown under high VPD reduced leaf area, but not maize. Upon progressive soil drying, maize reduced transpiration at higher soil moisture than sorghum and pearl millet, especially under high VPD, and leaf area expansion declined at similar or lower soil moisture than transpiration in maize and sorghum. It is concluded that maize conserves water by restricting transpiration upon increasing VPD and under higher soil moisture than sorghum and millet, giving maize significantly higher TE, whereas sorghum and pearl millet rely mostly on reduced leaf area and somewhat on transpiration restriction.
机译:该研究比较了玉米,高粱和珍珠 - 小米,领先的C-4谷物,用于蒸腾速率(TR)对增加的大气和土壤水分应激的反应。对瞬时增加VPD(0.9-4.1kPa)的TR反应和对渐进土壤干燥的蒸腾和叶面积膨胀响应在预期或高蒸气压力缺损的每种物种的10-16个基因型中的预期营养阶段测量(VPD)条件。玉米在中等VPD条件下种植,受限于高VPD下的TR,但不是高粱和珍珠小米。相比之下,当在高VPD下生长时,所有物种在增加VPD时增加TR,表明TR响应性的损失。高粱和珍珠米特在高VPD减少叶面积下种植,但不是玉米。在进行性土壤干燥后,玉米在较高的土壤水分下蒸腾降低,比高粱和珍珠小米,特别是在高VPD下,比玉米和高粱的蒸腾在相似或降低土壤水分下,叶面积膨胀下降。结论是,玉米通过限制蒸腾在增加VPD和较高的土壤水分而不是高粱和小米的情况下,玉米节能,使玉米显着更高,而高粱和珍珠米大多依赖于叶面积减少,有点呈蒸腾区域。

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