...
首页> 外文期刊>Agronomy for Sustainable Development >Leaf dynamics and crop water status throughout the growing cycle of durum wheat crops grown in two contrasted water budget conditions
【24h】

Leaf dynamics and crop water status throughout the growing cycle of durum wheat crops grown in two contrasted water budget conditions

机译:在两种相反的水平衡条件下,硬粒小麦作物整个生长周期中的叶片动态和作物水分状况

获取原文
获取原文并翻译 | 示例
           

摘要

Leaf and crop water measurements were analysed dynamically throughout the cycle of two crops of durum wheat subjected to contrasting conditions of water supply. The objectives were to compare short- and long-term crop reactions to water deficit, basedon some hypotheses from the literature. Water status measurements were of the first type and phenological or morphological measurements of the second type. The droughted crop under a rainout shelter received no water between emergence and harvest, whilethe open-air crop was irrigated. Dynamic plant morphological measurements consisted of leaf area index and specific leaf area, and those characterising plant water status dynamics included predawn leaf water potential, bulk osmotic potential and the ratio of crop water uptake to evaporative demand. Continuous measurement of the surface temperature on the two plots served to calculate a degree-days temperature scale, allowing comparison of the two crops. We found that the droughted crop developed mechanisms of resistance to water deficit: the leaf area index and specific leaf area were reduced (from 6 to 1.5 m~2 m~(-2) and from 300 to 260 cm~2 g~(-1) for the maximum values of, respectively, the LAI and the SLA), the bulk osmotic potential was lower (from -2 to -3 MPa) and the soil layer affected by root uptake was deeper (from 50 to 100 cm) than that of the irrigated crop. The amount of water evapo-transpired by both crops was similar when related to climatic demand. Yet no clear relationship appearedbetween the specific leaf area index and osmotic potential. Furthermore, there appeared to be a clear difference between the vegetative and reproductive phases of both crops in terms of water functioning. The osmotic potential decreased markedly after anthesis and a peak of water uptake was observed in both crops during the grain-filling phase, which may have been linked to the specific functioning of the flag leaf or the ear. While this study demonstrated the efficiency of drought adaptive features indurum wheat, it also showed that the difference in the water behaviours of two contrasted durum wheat crops could be of the same order of magnitude as the differences between the vegetative and reproductive phases.
机译:在供水条件不同的情况下,在硬粒小麦的两种农作物的整个周期中,对叶片和农作物的水分测量进行了动态分析。目的是根据文献中的一些假设,比较短期和长期作物对缺水的反应。水状态测量是第一类,物态或形态学测量是第二类。雨棚下干旱的农作物在出苗到收获之间没有水,而露天作物则被灌溉。动态植物形态学测量包括叶面积指数和特定叶面积,表征植物水分状况动态的特征包括黎明前的叶片水势,整体渗透势以及农作物水分吸收与蒸发需求的比率。在两个地块上连续测量地表温度有助于计算度数天的温度标度,从而可以比较两种农作物。我们发现干旱的作物发展了抗缺水的机制:叶面积指数和比叶面积减少了(从6减少到1.5 m〜2 m〜(-2),从300减少到260 cm〜2 g〜(- 1)对于LAI和SLA的最大值,其整体渗透势较低(从-2到-3 MPa),受根部吸收影响的土壤层更深(从50到100 cm)灌溉作物的产量。当与气候需求相关时,两种作物蒸发蒸腾的水量相似。然而,比叶面积指数与渗透势之间没有明确的关系。此外,就水分功能而言,两种作物的营养期和生殖期之间似乎都存在明显差异。花后渗透势显着下降,在灌浆期两种作物中均观察到水分吸收的高峰,这可能与旗叶或穗的特定功能有关。尽管这项研究证明了硬粒小麦具有适应干旱的功效,但同时也表明,两种对比硬粒小麦作物水分行为的差异可能与营养期和生殖期之间的差异相同。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号