玉米不同水肥条件的耦合效应分析与水肥配施方案寻优
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“十二五”国家科技支撑计划项目(2014BAD12B01)


Coupling Effects of Different Water and Fertilizer Conditions and Optimization of Water and Fertilizer Schemes on Maize
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    摘要:

    利用四元二次回归分析建立了氮肥、磷肥、钾肥、灌水量对玉米光合速率的回归模型,分析了各因素对玉米光合速率的单因素效应、边际效应与耦合效应。各因素对玉米光合速率的影响程度由大到小依次为:灌水量、氮肥、钾肥、磷肥,光合速率随各因素的增加均呈现先增加后减小的趋势。水氮、磷钾、水钾耦合效应显著,其余因素耦合效应不显著。水氮、磷钾耦合对玉米光合速率存在负交互作用,水钾耦合存在正交互作用。建立了玉米光合速率、产量与水分利用效率的多目标优化模型,利用遗传算法对该模型进行模拟寻优,得到的最优水肥组合为:氮肥270.00kg/hm2、磷肥60.26kg/hm2、钾肥60.02kg/hm2、灌水量700.00m3/hm2,该组合下得到的最优玉米光合速率为13.54μmol/(m2·s),产量为24520.10kg/hm2,水分利用效率为5.14kg/m3。

    Abstract:

    The reasonable ratio of water and fertilizer for maize planting has been an important subject in agricultural research. However, previous studies only pay more attention to the one of the factors of yield, water use efficiency and photosynthetic rate, etc. to make the scheme of water and fertilizer coupling. The purpose was to reveal the coupling effects of fertilizer and water on photosynthetic rate, yield and WUE. A scheme of water and fertilizer combination was made based on the multi-objective genetic algorithm (MOGA), aiming to achieve an overall optimization of the above three factors. The D-416 saturation optimum design with 16 treatments and three replicates was used in the experiment. There were four levels of irrigation amount (400.0m3/hm2, 473.7m3/hm2, 604.1m3/hm2 and 700.0m3/hm2), five levels of N supply (180.0kg/hm2, 198.3kg/hm2, 225.0kg/hm2, 251.7kg/hm2 and 270.0kg/hm2), and five levels for both of P2O5 and K2O (60.0kg/hm2, 72.2kg/hm2, 90.0kg/hm2, 107.8kg/hm2 and 120.0kg/hm2). The design of each block was 10.4m×10m with 702 plants and 23cm in spacing. Maize variety of Longdan 9 was selected to seed on April 25, 2016. P2O5 and K2O were supplied as base fertilizer before seeding. Half of N was used as base fertilizer and the remaining half was applied at elongation stage. Each treatment was irrigated respectively at elongation stage and tasseling stage with the same amount of water. The photosynthetic rate of the fourth leaf from the top to the bottom of maize was measured by the LI-6400 (LI-COR Biosciences Company, USA) during 09:00—11:00 on August 9, 2016. The yields for each block were recorded on September 21, 2016. The regression model of N, P2O5, K2O and irrigation water amount on maize photosynthesis rate was established by four-factor quadric regression analysis, and the coefficient of determination was 0.99. Sorting from large to small, the effect of various factors on the photosynthesis rate of maize was irrigation water amount, N, K2O and P2O5. The photosynthetic rate appeared the trend of increasing first and then declining with the increase of each factor. Coupling effects between irrigation water amount and N, P2O5 and K2O, irrigation water amount and K2O were significant while the coupling effects between the rest factors were not significant. The medium irrigation and medium fertilizer were favorable for maize photosynthesis. Increasing yield was beneficial to improve WUE. A multi-objective optimization model of photosynthetic rate, yield and WUE of maize was established. The genetic algorithm was used to optimize this model. The most suitable combination of irrigation water amount and fertilizer was as follows: irrigation amount was 700m3/hm2, and the fertilizer was 270kg/hm2 of N, 60.26kg/hm2 of P2O5, 60.02kg/hm2 of K2O and the corresponding optimum maize photosynthetic rate, yield and WUE were 13.54μmol/(m2·s), 24520.10kg/hm2 and 5.14kg/m3, respectively. The results had a guiding role in maize production.

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张忠学,张世伟,郭丹丹,谭智湘,陈选,梁乾平.玉米不同水肥条件的耦合效应分析与水肥配施方案寻优[J].农业机械学报,2017,48(9):206-214.

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  • 收稿日期:2016-12-10
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  • 在线发布日期: 2017-09-10
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