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不同施氮量下鹽漬農田向日葵冠層生長與輻射利用規(guī)律
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國家重點研發(fā)計劃項目(2017YFC0403304)、中央高?;究蒲袠I(yè)務費專項資金項目(B200201006)和國家自然科學基金項目(51879196,、51879074)


Sunflower Canopy Development, Radiation Absorption and Use Efficiency at Different Nitrogen Application Rates in Saline Fields
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    摘要:

    為了探討鹽漬農田作物冠層的生長特性及其對光能的吸收利用規(guī)律,選擇鹽漬化地區(qū)主要經濟作物向日葵為研究對象,,于2015年和2016年在內蒙古河套灌區(qū)進行了大田試驗,。根據0~60cm深度土壤初始飽和浸提液電導率,設置3個鹽分水平:輕度(S0: 0~3dS/m),、中度(S1: 3~6dS/m)和重度鹽分脅迫(S2: 大于6dS/m),,設置N0、N1,、N2,、N3共4個施氮量水平,施氮量分別為45,、90,、135、180kg/hm2,,其中2015年試驗施加N0和N2水平,,2016年施加N1和N3水平。對向日葵在不同鹽氮水平下的葉面積動態(tài)生長過程,、消光系數,、輻射截獲與利用效率等指標進行監(jiān)測。結果表明,,鹽分脅迫會抑制向日葵群體葉面積指數(CLAI)在苗期和蕾期的增長,,且在N3施氮量下的影響更為明顯,S1和S2水平的CLAI比S0水平分別下降了48.3%和64.4%,。S1水平對冠層發(fā)展造成的影響會在營養(yǎng)生長停止前得到緩解,,而S2水平下的向日葵在進入成熟期后才能進行一定的補償性生長。各處理的日間光能截獲率(fPAR)和輻射利用效率(RUE)均表現(xiàn)出從苗期開始持續(xù)上升至蕾期中后期,于花期達到峰值,,在成熟期出現(xiàn)下降的規(guī)律,,其中,S0N3處理的fPAR及其累積光合有效輻射量(IPAR)在全生育期內均高于其他處理,,兩年試驗中的最大RUE出現(xiàn)在S1N3處理,,達到2.26g/MJ。分析得出,,本試驗所用向日葵品種的消光系數為0.729,。結合修正的Logistic方程及單株最大葉面積指數與有效氮肥施用量(ENA)間的線性相關關系,建立了描述不同鹽氮水平下向日葵單株LAI隨歸一化發(fā)展指數動態(tài)變化過程的模型,。研究表明,,在S1水平下,增施氮肥(N2和N3)可減輕鹽分脅迫效應,,促進葉片生長和光能截獲,,提升RUE和籽粒產量的累積;在S2水平下,,增施氮肥不僅不能促進冠層發(fā)展和產量累積,,而且還會降低其進入成熟期前的RUE。本研究可為在不同鹽漬化水平的農田中合理施用氮肥,、定量預測作物冠層發(fā)展水平提供依據,。

    Abstract:

    In order to study the characteristics of sunflower canopy development and its absorption and use of radiation in saline fields, two years of field experiments were conducted in Hetao Irrigation District of Inner Mongolia in 2015 and 2016. Three salinity levels were set according to the average ECe of 0~60cm depth: mild (S0: 0~3dS/m), moderate (S1: 3~6dS/m) and severe (S2: >6dS/m); the 〖JP2〗nitrogen application rates were set at four levels, referred as N0, N1, N2 and N3, which were 45kg/hm2, 90kg/hm2, 135kg/hm2 and 180kg/hm2, respectively. The dynamics of LAI, extinction coefficient, light interception and radiation use efficiency (RUE) of sunflower were measured under different salinity and nitrogen levels. The results showed that salt stress obviously inhibited the increase of CLAI at seedling and bud stages, and its effect were more severe under N3 treatment, which decreased the CLAI at S1 and S2 levels by 48.3% and 64.6%, respectively, compared with S0. However, the effect of S1 level on canopy development could be alleviated before the end of vegetative growth, whereas the compensatory growth of sunflower occurred after entering mature stage at S2 level. The daily fraction of light interception (fPAR) and RUE of each treatment were increased constantly from seedling to bud stage, and reached the peak value in flowering stage, and then decreased in mature stage. Among them, the fPAR and the cumulative intercepted PAR of S0N3 treatment were higher than those of the other treatments during the crop cycle, but the maximum RUE appeared in S1N3, which reached 2.26g/MJ in the same year. The research result also slowed that the extinction coefficient of sunflower in this experiment was 0.729. By combining the modified Logistic equation with the linear correlation between LAImax and the effective nitrogen application rate (ENA), a model describing the dynamics of LAI with normalized developmental index under different salinity and nitrogen levels was established. These results proved that applying N2 and N3 rate at S1 level could alleviate salt stress, promote leaf growth and light interception, and increase RUE and seed yield accumulation. However, at S2 level, the N2 and N3 rate had no benefit on canopy development and yield accumulation, but could even reduce the RUE before mature stage. The conclusion helped determining the reasonable rates of nitrogen fertilizer under different saline conditions.

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馬韜,曾文治,伍靖偉,丁繼輝,俞雙恩,黃介生.不同施氮量下鹽漬農田向日葵冠層生長與輻射利用規(guī)律[J].農業(yè)機械學報,2020,51(12):292-303. MA Tao, ZENG Wenzhi, WU Jingwei, DING Jihui, YU Shuang`en, HUANG Jiesheng. Sunflower Canopy Development, Radiation Absorption and Use Efficiency at Different Nitrogen Application Rates in Saline Fields[J]. Transactions of the Chinese Society for Agricultural Machinery,2020,51(12):292-303.

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  • 收稿日期:2020-09-15
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  • 在線發(fā)布日期: 2020-12-10
  • 出版日期: 2020-12-10
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