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Acclimation of nitrogen uptake capacity of rice to elevated atmospheric CO2 concentration

机译:水稻对氮的吸收能力对大气CO2浓度升高的适应

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Background and Aims Nitrogen (N) is a major factor affecting yield gain of crops under elevated atmospheric carbon dioxide concentrations [CO2]. It is well established that elevated [CO2] increases root mass, but there are inconsistent reports on the effects on N uptake capacity per root mass. In the present study, it was hypothesized that the responses of N uptake capacity would change with the duration of exposure to elevated [CO2].Methods The hypothesis was tested by measuring N uptake capacity in rice plants exposed to long-term and short-term [CO2] treatments at different growth stages in plants grown under non-limiting N conditions in hydroponic culture. Seasonal changes in photosynthesis rate and transpiration rate were also measured.Key Results In the long-term [CO2] study, leaf photosynthetic responses to intercellular CO2 concentration (Ci) were not affected by elevated [CO2] before the heading stage, but the initial slope in this response was decreased by elevated [CO2] at the grain-filling stage. Nitrate and ammonium uptake capacities per root dry weight were not affected by elevated [CO2] at panicle initiation, but thereafter they were reduced by elevated [CO2] by 31-41 % at the full heading and mid-ripening growth stages. In the short-term study (24 h exposures), elevated [CO2] enhanced nitrate and ammonium uptake capacities at the early vegetative growth stage, but elevated [CO2] decreased the uptake capacities at the mid-reproductive stage.Conclusions This study showed that N uptake capacity was downregulated under long-term exposure to elevated [CO2] and its response to elevated [CO2] varied greatly with growth stage.
机译:背景和目的氮(N)是影响大气二氧化碳浓度[CO2]升高时农作物增产的主要因素。众所周知,升高的[CO2]会增加根系质量,但是关于每根质量对氮吸收能力的影响的报道不一致。在本研究中,假设暴露于高浓度[CO2]的过程中,N吸收能力的响应会发生变化。方法通过测量长期和短期暴露于水稻的N吸收能力来检验该假设。在水培条件下在非限制性氮条件下生长的植物在不同生长阶段的[CO2]处理。主要结果在长期的[CO2]研究中,抽穗期之前[CO2]的升高并不影响叶片对细胞间CO2浓度(Ci)的光合作用响应,而是在初始阶段。在灌浆阶段,[CO2]的升高降低了该响应的斜率。穗开始时[CO2]升高不会影响每根干重的硝酸盐和铵盐吸收能力,但此后在整个抽穗期和中熟期生长阶段,它们的[CO2]升高会降低31-41%。在短期研究(暴露24 h)中,升高的[CO2]在营养生长早期提高了硝酸盐和铵的吸收能力,但升高的[CO2]在生殖中期达到了降低的吸收能力。结论该研究表明:在长期暴露于升高的[CO2]下,N吸收能力被下调,并且其对升高的[CO2]的响应随生长期而变化很大。

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