首页> 外文期刊>The Indian Journal of Agricultural Sciences >Effect of elevated temperature and carbon dioxide on wheat (Triticum aestivum) productivity with and without weed interaction
【24h】

Effect of elevated temperature and carbon dioxide on wheat (Triticum aestivum) productivity with and without weed interaction

机译:高温和二氧化碳对小麦(Triticum Aestivum)生产率的影响,无杂草互动

获取原文
获取原文并翻译 | 示例
           

摘要

Wheat (Triticum aestivum L.) crop is one of the most valuable crops, and further boost in wheat yields is essential to meet the food demand of the emerging world population. It is therefore necessary to know the influence of future climate change on wheat yields. Present investigation was conducted in temperature gradient tunnel (TGTs) to evaluate the effects of elevated temperature, CO2 concentration, weed and their interactions on grain, biological yield and other yield attributes (number of spikes/m(2), number of spikelets/spike, number of grains/spike and 1000-grain weight, harvest index) of wheat. Wheat crop was grown in TGT at three different temperature levels, i.e. T-1 ambient, T-2 ambient+1.5 degrees C, T-3 ambient+3 degrees C and two levels of carbon dioxide, i.e. ambient (ACO(2)) 400 ppm and elevated (ECO2) 550 +/- 50 ppm with and without weed interaction. The study revealed that yield and yield attributes of subsequent wheat crop increased due to ECO2. Mean individual effect of ECO2 increased grain yield of wheat by 14% and biological yield by 12% compared to ACO(2). On the contrary, the yield was decreased with elevated temperature where a decrease in the grain yield from -12% to -20% and biological yield from -11% to -18% was observed at 1.5 degrees C and 3 degrees C, respectively. Similarly the interaction of weeds in wheat crop, reduced the grain yield by 8% and biological yield of wheat by 6%, irrespective of CO2 and temperature levels. The statistical analysis (P0.05) revealed significant effect of the interactions (CxT, CxW, WxT, and CxTxW) on yield. Overall results the study proposal to adapt an effective weeds management strategy to controlled conditions of yield of wheat crop under the controlled conditions of CO2 and temperature.
机译:小麦(Triticum aestivum L.)作物是最有价值的作物之一,进一步提升小麦产量对于满足新兴世界人口的粮食需求至关重要。因此,有必要了解未来气候变化对小麦产量的影响。目前的研究是在温度梯度隧道(TGT)中进行的,以评估升高的温度,CO 2浓度,杂草,杂草及其对谷物,生物产量和其他产量属性的影响(尖峰/ m(2)的数量,尖峰/秒数小麦的谷物/尖峰数量和1000粒重量,收获指数)。小麦作物在三种不同的温度水平下在TGT中生长,即T-1环境,T-2环境+ 1.5℃,T-3环境+ 3摄氏度和两种水平的二氧化碳,即环境(ACO(2)) 400 ppm和升高(ECO2)550 +/- 50 ppm,无杂草互动。该研究表明,由于ECO2,随后的小麦作物的产量和产量属性增加。与ACO(2)相比,Eco2对ECO2的个体效果增加了14%,生物收率12%的生物收率12%。相反,产率随温度升高而降低,其中谷物产率的降低分别在-12%至-20%和-11%至-18%的生物收率下观察到1.5℃和3℃。类似地,杂草在小麦作物中的相互作用,除了CO 2和温度水平的情况下,小麦的谷物产量和小麦的生物产量降低了6%。统计分析(P <0.05)揭示了相互作用(CXT,CXW,WXT和CXTXW)对产量的显着影响。总体结果研究提案,以适应有效的杂草管理策略,以在CO 2和温度的受控条件下对小麦作物的产量控制。

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