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基于Δ13C的不同水氮管理對水稻水分利用效率的影響
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國家重點研發(fā)計劃項目(2016YFC0400108)和國家自然科學(xué)基金面上項目(51779046)


Effect of Different Water and Nitrogen Managements on Rice Leaf Water Use Efficiency Based on Δ13C
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    摘要:

    為揭示不同水氮管理的水稻葉片水分高效利用機(jī)理,基于作物生長發(fā)育過程中發(fā)生的碳同位素分餾效應(yīng)對作物的長期水分利用效率的指示特性,研究了不同水氮管理對水稻葉片氣體交換參數(shù)、葉片瞬時水分利用效率(LWUEins)、內(nèi)在水分利用效率(LWUEint)和碳同位素分辨率(Δ13C)的影響,分析了不同水氮管理下水稻葉片Δ13C與葉片水分利用效率關(guān)系。結(jié)果表明:稻作控制灌溉模式下配施適量氮肥可以提高水稻葉片氣孔導(dǎo)度(Gs),促進(jìn)葉片胞間與外界氣體交換,提高葉片凈光合速率(Pn),維持較高的LWUEins、LWUEint,過量施氮會增加水稻對水分虧缺的敏感性,使水稻Gs降低,不利于葉片尺度水分的高效利用;抽穗開花期控制灌溉模式下施氮量較高時葉片水分利用效率較大,同一施氮量處理控制灌溉水稻LWUEins、LWUEint和WUE均高于淹水灌溉,起到了節(jié)水高產(chǎn)的效果。通過統(tǒng)計分析可知,不同水氮管理下抽穗開花期水稻葉片Δ13C與LWUEins、LWUEint和WUE均呈負(fù)相關(guān),葉片Δ13C對LWUEint的指示性優(yōu)于LWUEins,且在控制灌溉下葉片Δ13C與LWUEins、LWUEint的相關(guān)性較淹水灌溉更為顯著;拔節(jié)孕穗期及抽穗開花期水稻葉片Δ13C可以很好地表征水稻W(wǎng)UE。結(jié)果表明,通過測定水稻不同時期葉片Δ13C能夠為預(yù)測不同水氮調(diào)控下水稻水分利用效率提供參考。

    Abstract:

    In order to further investigate the high water use efficiency mechanism under different water and nitrogen managements, theoretical analysis was combined with field experiments, and water use efficiency research on leaf scales was integrated through carbon isotope’s instruction on water use efficiency based on carbon isotopic factor effect during crop growth and development. The effects of different water and nitrogen managements on gas exchange parameters, instantaneous water use efficiency (WUEins), intrinsic water use efficiency (WUEint) and carbon isotope discrimination (Δ13C) were examined, and then the relationship between Δ13C in rice leaf with WUEins and WUEint at leaf scale was analyzed to further explain the water use process in crop leaf under different water and nitrogen managements. The result showed that the appropriate amount of nitrogen fertilizer could increase the stomatal conductance (Gs) of leaves of rice, promote the exchange of leaf cells with outside world, increase the net photosynthetic rate (Pn), and maintain high WUEint and WUEinsunder controlled irrigation. Excessive application of nitrogen would increase the sensitivity of rice to water deficit, so that Gs of rice leaves was reduced, which was not conducive to the efficient use of water at leaf scale. The leaf water use efficiency and yield were the highest when the nitrogen application rate was high at the heading stage, and WUEint, WUEins and WUEET of the same nitrogen treatment of controlled irrigation for rice were higher than those of flood irrigation, which played water saving and high yield effect. The statistical analysis result indicated that leaf Δ13C showed a negative relationship with WUEint,WUEins and WUEET respectively at heading stage under different water and nitrogen managements. Leaf Δ13C showed a better indicating capacity on WUEint than that on WUEins. Furthermore, the correlation between leaf Δ13C and WUEins, WUEint under controlled irrigation was more significant than that under flooding irrigation;the leaf Δ13C values can well characterize rice WUEET during the period of booting and heading. In conclusion, using rice leaf Δ13C values to indicate water use efficiency at leaf levels had a certain feasibility under different water and nitrogen managements.

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張忠學(xué),陳鵬,鄭恩楠,聶堂哲,陳帥宏,李偉彤.基于Δ13C的不同水氮管理對水稻水分利用效率的影響[J].農(nóng)業(yè)機(jī)械學(xué)報,2018,49(5):303-312. ZHANG Zhongxue, CHEN Peng, ZHENG Ennan, NIE Tangzhe, CHEN Shuaihong, LI Weitong. Effect of Different Water and Nitrogen Managements on Rice Leaf Water Use Efficiency Based on Δ13C[J]. Transactions of the Chinese Society for Agricultural Machinery,2018,49(5):303-312.

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  • 收稿日期:2017-10-08
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  • 在線發(fā)布日期: 2018-05-10
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