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Effects of atmospheric CO2 enrichment, water status and applied nitrogen on water- and nitrogen-use efficiencies of wheat

机译:大气CO2浓度升高,水分状况和施氮量对小麦水分利用和氮利用效率的影响。

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Atmospheric CO2 levels are expected to exceed 700 mumol mol(-1) by the end of the 21st century. The influence of increased CO2 concentration on crop plants is of major concern. This study investigated water- and nitrogen-use efficiency (WUE and NUE, respectively, were defined by the amount of biomass accumulated per unit water or N uptake) of spring wheat ( Triticum aestivum L.) grown under two atmospheric CO2 concentrations (350 and 700 mumol mol(-1)), two soil moisture treatments (well-watered and drought) and five nitrogen amendment treatments. Results showed that enriched CO2 concentration increased canopy WUE, and more N supply led to higher WUE under the increased CO2. Canopy WUE was significantly lower in well-watered treatments than in drought treatment, but increased with the increased N supply. Elevated CO2 reduced the apparent recovery fraction of applied N by the plant root system (N-r, defined as the ratio of the increased N uptake to N applied), but increased the NUE and agronomic N efficiency (NAE, defined as the ratio of the increased biomass to N applied). Water limitation and high N application reduced the Nr, NUE and NAE, indicating a poor N efficiency. In addition, there was a close relationship between the root mass ratio and NUE. Canopy WUE was negatively related to the root mass ratio and NUE. Our results indicated that CO2 enrichment enhanced WUE more at high N application, but increased NUE more when N application was less.
机译:到21世纪末,大气中的CO2含量预计将超过700 mumol mol(-1)。二氧化碳浓度升高对农作物的影响是主要关注的问题。这项研究调查了在两个大气CO2浓度(350和200)下生长的春小麦(Triticum aestivum L.)的水分利用效率和氮利用效率(分别由单位水或氮吸收量累积的生物量确定)。 700 mumol mol(-1)),两种土壤水分处理(浇水和干旱)和五种氮素改良处理。结果表明,富CO 2浓度增加冠层水分利用效率,而更多的氮供应导致CO 2增加增加水分利用效率。水分充足的处理冠层水分利用效率明显低于干旱处理,但随着氮素供应的增加而增加。较高的二氧化碳减少了植物根系施用的氮的表观回收率(Nr,定义为增加的氮吸收量与施用的氮的比率),但增加了NUE和农艺氮效率(NAE,定义为增加的氮比率)。生物质氮肥)。水分限制和高氮施用降低了Nr,NUE和NAE,表明氮效率低。另外,根质量比与NUE之间存在密切关系。冠层WUE与根质量比和NUE呈负相关。我们的结果表明,高氮施用时,CO2富集提高了WUE,而当氮施用量较少时,CO2富集增加了NUE。

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