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Effective use of water (EUW) and not water-use efficiency (WUE) is the target of crop yield improvement under drought stress

机译:在干旱胁迫下,有效利用水而不是水分利用效率是提高作物产量的目标

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Water-use efficiency (WUE) is often considered an important determinant of yield under stress and even as a component of crop drought resistance. It has been used to imply that rainfed plant production can be increased per unit water used, resulting in more crop per drop. This opinionated review argues that selection for high WUE in breeding for water-limited conditions will most likely lead, under most conditions, to reduced yield and reduced drought resistance. As long as the biochemistry of photosynthesis cannot be improved genetically, greater genotypic transpiration efficiency (TE) and WUE are driven mainly by plant traits that reduce transpiration and crop water-use, processes which are crucially important for plant production. Since biomass production is tightly linked to transpiration, breeding for maximized soil moisture capture for transpiration is the most important target for yield improvement under drought stress. Effective use of water (EUW) implies maximal soil moisture capture for transpiration which also involves reduced non-stomatal transpiration and minimal water loss by soil evaporation. Even osmotic adjustment which is a major stress adaptive trait in crop plants is recognized as enhancing soil moisture capture and transpiration. High harvest index (HI) expresses successful plant reproduction and yield in terms of reproductive functions and assimilate partitioning towards reproduction. In most rainfed environments crop water deficit develops during the reproductive growth stage thus reducing HI. EUW by way of improving plant water status helps sustain assimilate partitions and reproductive success. It is concluded that EUW is a major target for yield improvement in water-limited environments. It is not a coincidence that EUW is an inverse acronym of WUE because very often high WUE is achieved at the expense of reduced EUW.
机译:水分利用效率(WUE)通常被认为是胁迫下产量的重要决定因素,甚至是作物抗旱性的一部分。它被用来暗示每单位用水可以增加雨养植物的产量,从而使每滴水增加作物产量。这篇有根据的评论认为,在有限的条件下选育高WUE的植物,在大多数情况下,最有可能导致单产下降和抗旱性下降。只要不能从基因上改善光合作用的生物化学,更大的基因型蒸腾效率(TE)和WUE主要是由减少蒸腾作用和作物用水的植物性状驱动的,这些过程对于植物的生产至关重要。由于生物量的生产与蒸腾作用紧密相关,因此在干旱胁迫下进行育种以最大程度地捕获土壤水分以进行蒸腾是提高产量的最重要目标。有效利用水(EUW)意味着可以最大程度地捕获蒸腾作用中的土壤水分,这还包括减少非气孔蒸腾作用,并使因土壤蒸发而造成的水分损失最小。甚至渗透调节是作物植物的主要逆境适应性状,也被认为可以增强土壤水分的捕获和蒸腾作用。高收成指数(HI)在生殖功能方面表现出成功的植物繁殖和产量,并同化向繁殖的分配。在大多数雨育环境中,作物的水分亏缺在生殖生长阶段发展,从而降低了HI。 EUW通过改善植物水分状况来帮助维持同化分配和繁殖成功。结论是,EUW是在缺水环境中提高产量的主要目标。 EUW是WUE的首字母缩写不是巧合,因为获得很高的WUE常常以减少EUW为代价。

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