...
首页> 外文期刊>European Journal of Agronomy >A new model of ozone stress in wheat including grain yield loss and plant acclimation to the pollutant
【24h】

A new model of ozone stress in wheat including grain yield loss and plant acclimation to the pollutant

机译:小麦臭氧压力模型,包括谷物产量损失和污染物的植物驯化

获取原文
获取原文并翻译 | 示例
           

摘要

Surface ozone (O-3) is an important air pollutant globally and enhanced concentrations lead to crop yield penalties in many parts of the world. Crop models simulate production and yield and they are often used for various applications. However, most of the existing models neglect the effect of O-3 and only limited parameterization schemes exist. In addition, the existing O-3 modelling approaches do not take into account the plant acclimation to the pollutant as a mechanism of survival and maintenance of performance. Here, we introduce a simple modelling method to simulate the O-3 damage to wheat with consideration of the plant acclimation process. The O-3 parameterization scheme was incorporated into the GLAM-Parti crop model, resulting in a new model version GLAM-ROC (i.e. GLAM - Relative Ozone Concentrations). The new model simulates the effect of O-3 on crop growth and development and was evaluated against data from control-environment chambers with high O-3 concentration levels and variable duration of exposure to the pollutant. GLAM-ROC successfully reproduced the observed plant response to O-3 as well as the final biomass and yield. The incorporation of plant acclimation allowed the prediction of crop yield loss at variable duration of O-3 exposure. The statistical response formula neglected the acclimation process and overestimated the relative O-3 damage to yield by 56.5%, when fumigation increased from 32 to 106 days. We conclude that the plant acclimation to chronic O-3 environment is significant and should be taken into account for the effect of O-3 on wheat performance and yield.
机译:表面臭氧(O-3)是全球范围内重要的空气污染物,增强浓度导致世界许多地方作物收益处罚。作物模型模拟生产和产量,它们通常用于各种应用。但是,大多数现有模型都忽略了O-3的效果,并且仅存在有限的参数化方案。此外,现有的O-3建模方法没有考虑到植物适应污染物作为绩效的存活机制。在这里,我们介绍了一种简单的建模方法,以考虑到植物适应过程来模拟小麦的O-3损坏。 O-3参数化方案纳入了Glam-Parti作物模型,导致新的模型版本型Glam-Roc(即Glam - 相对臭氧浓度)。新模型模拟了O-3对作物生长和发育的影响,并评估了来自对照环境室的数据,具有高O-3浓度水平和暴露于污染物的可变持续时间。 Glam-ROC成功地将观察到的植物反应转换为O-3以及最终生物质和产量。植物驯化的掺入允许在O-3暴露的可变持续时间下预测作物产量损失。统计响应公式忽略了适应过程,并高估了相对O-3损伤,以产生56.5%,当熏蒸从32至106天增加时。我们得出结论,植物适应慢性O-3环境是显着的,应考虑到O-3对小麦性能和产量的影响。

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