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首页> 外文期刊>Agricultural and Forest Meteorology >Changes in nutrient uptake and utilization by rice under simulated climate change conditions: A 2-year experiment in a paddy field
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Changes in nutrient uptake and utilization by rice under simulated climate change conditions: A 2-year experiment in a paddy field

机译:模拟气候变化条件下大米养分吸收与利用的变化:稻田中的2年实验

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摘要

Global climate change with elevated atmospheric CO2concentration and temperature has been known impacting plant photosynthesis and grain yield in agroecosystems. However, how nutrient uptake and utilization by rice change under climate change stresses has been poorly addressed. An open-air field experiment was conducted to investigate the impacts of factorial combinations of CO2enrichment (up to 500?ppm) and canopy warming (+2?°C) on nutrient concentration (PNC), accumulation (PNA) and utilization efficiency (NUE) for two cropping years in a paddy from southeast China. Plant samples of aboveground biomass were collected across the growing stages and grain yield measured at harvest. Compared to ambient condition, CO2enrichment more or less decreased PNC of N, P and K, but unchanged PNA of N and P while increased aboveground biomass. In contrast, warming increased PNC of N, P and K respectively by 7.4%, 11.0% and 13.4% at the ripening stage, but decreased PNA of N, P and K respectively by 18.6%, 22.6% and 10.8% in 2013. Whereas, concurrent CO2enrichment and warming unchanged PNC but slightly decreased PNA of N and K in both years. In addition, CO2enrichment unchanged the apparent NUE, but increased NUE of N and K under concurrent warming in both years. Therefore, canopy warming may have impacted the rice response in NUE to CO2enrichment as the change in PNA with concurrent CO2enrichment and warming was in a similar trend to that with warming alone. Our findings suggest that nutrient uptake and utilization by rice are more impacted by warming compared with CO2enrichment under the simulated climate change conditions. Therefore, simulated climate change experiments should be conducted regarding how simultaneous atmospheric CO2enrichment and warming influences plant traits and functions in rice paddy, to provide a better understanding of agricultural production changes and sustainable nutrient management under future climate change.
机译:全球气候变化具有升高的大气CO2CONCONCTION和温度,已知植物光合作用和农业体系中的籽粒产量。然而,在气候变化压力下,稻米变化的养分吸收和利用是如何解决的。进行了一个露天场实验,以研究Co2年粒度(最多500μl)和冠层变暖(+2°C)对营养浓度(PNC),积累(PNA)和利用效率的影响(NUE)的影响)来自中国东南部的稻田的两个裁剪年。在植物上收集地上生物量的植物样品,并在收获时测量的生长阶段和籽粒产率。与环境条件相比,CO2年化量或多或少地降低了N,P和K的PNC,但是N和P的不变PNA,同时增加了地上的生物质。相比之下,在成熟阶段分别在成熟阶段的升温增加7.4%,11.0%和13.4%,但分别在2013年分别降低18.6%,22.6%和10.8%。 ,同时的CO2年度和升温不变的PNC,但两年内略微降低N和K.此外,CO2ENRICHEMENT在这两年内同时变暖时,NUE不变,而是增加了N和K。因此,由于同时的CO2年级和变暖的PNA变化与单独加温的PNA变化,冠层变暖可能影响了NUE中的水稻反应。我们的研究结果表明,在模拟气候变化条件下与CO2年度相比,水稻的营养吸收和利用更受影响。因此,应对稻米同时性常规CO2年度和温暖影响植物性状和稻米作用的模拟气候变化实验进行,以便在未来的气候变化下更好地了解农业生产变化和可持续营养管理。

著录项

  • 来源
    《Agricultural and Forest Meteorology》 |2018年第2018期|共7页
  • 作者单位

    Center of Climate Change and Agriculture Institute of Resource Ecosystem and Environment of Agriculture Nanjing Agricultural University;

    Center of Climate Change and Agriculture Institute of Resource Ecosystem and Environment of Agriculture Nanjing Agricultural University;

    School of Agriculture and Food Faculty of Veterinary and Agricultural Sciences The University of Melbourne;

    Center of Climate Change and Agriculture Institute of Resource Ecosystem and Environment of Agriculture Nanjing Agricultural University;

    Center of Climate Change and Agriculture Institute of Resource Ecosystem and Environment of Agriculture Nanjing Agricultural University;

    Center of Climate Change and Agriculture Institute of Resource Ecosystem and Environment of Agriculture Nanjing Agricultural University;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 other
  • 中图分类 农业基础科学;
  • 关键词

    Free-air CO2enrichment (FACE); Elevated air temperature; Climate change; Nutrient dynamic; Southeast China;

    机译:自由空气co2年粒度(面部);升高的空气温度;气候变化;营养活性;中国东南部;

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