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Impact of elevated temperature on iron and zinc uptake in rice crop

机译:高温对水稻作物铁锌吸收的影响

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Climate change associated with rise in temperature has adverse impact on global food production. Rice crop is also affected by this rise in atmospheric temperature. An experiment was conducted during the kharif season of year 2013 inside Temperature Gradient Tunnel (TGT) in IARI farm, to study impact of elevated temperature on uptake of iron (Fe) and zinc (Zn) in rice crop. There were 5 different temperature treatments inside the TGT. Two nitrogen (N) doses were applied in all 5 temperature treatments. Results showed that high temperature stress significantly reduced both grain and biomass yields of rice crop. Grain and biomass yield of rice reduced by 26.6% and 23.5% respectively in treatment with 100% recommended dose of nitrogen. Uptake of Fe andZn decreased significantly with rise in temperature. Uptake of Fe and Zn in rice grains reduced by 41.5% and 27.3% respectively with rise in temperature by 3.9°C. Reduced yield at higher temperature has resulted in lower micronutrient uptake of the cro
机译:与温度升高相关的气候变化对全球粮食生产产生不利影响。稻米作物也受大气温度升高的影响。在2013年的海里夫季节,在IARI农场的温度梯度隧道(TGT)中进行了一项实验,以研究高温对水稻作物中铁(Fe)和锌(Zn)吸收的影响。 TGT内部进行了5种不同的温度处理。在所有5个温度处理中均使用了两个氮(N)剂量。结果表明,高温胁迫显着降低了水稻的籽粒和生物量产量。使用100%推荐剂量的氮肥处理,水稻的籽粒和生物量产量分别降低了26.6%和23.5%。随着温度的升高,铁和锌的吸收显着下降。随着温度升高3.9°C,水稻籽粒中铁和锌的吸收量分别减少41.5%和27.3%。较高温度下产量降低,导致cro的微量营养素吸收降低

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