适宜水氮互作提升膜下滴灌瓜尔豆产量品质与水氮利用效率
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S274.1

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国家“十四五”重点研发计划项目“西北绿洲农业精量微灌水肥协同调控技术集成与应用(2022YFD1900405)”


Yield quality and water and nitrogen use efficiency of guar beans under mulched drip irrigation in response to water and nitrogen interactions in arid areas
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    摘要:

    瓜尔豆是一种重要的经济作物,因其种子中含有大量的瓜尔胶而具有重要的经济和工业价值。为探究适合新疆地区膜下滴灌瓜尔豆的水氮管理模式,设置4个灌水量水平(W1:1 170 m3/hm2、W2:1 530 m3/hm2、W3:1 890 m3/hm2、W4:2 250 m3/hm2)和2个施氮量水平(N1:30 kg/hm2、N2:50 kg/hm2),研究膜下滴灌条件下水氮互作对瓜尔豆生长指标、产量、水氮利用效率及品质的影响。结果表明,新疆干旱区绿洲种植瓜尔豆具有可行性,膜下滴灌水肥一体化处理下水氮耦合效应对瓜尔豆产量、灌溉水利用效率、氮肥偏生产力及半乳甘露聚糖含量影响极显著( P < 0.01)。在W1~W3灌水条件下,增施氮肥能有效提高作物单株质量及千粒质量,从而最终提高作物产量。基于主成分分析及隶属函数分析得出灌水量为1 890 m3/hm2,施氮量为50 kg/hm2(W3N2)水氮组合模式为最优处理。研究可为促进新疆干旱区绿洲膜下滴灌瓜尔豆高产、高水、氮利用效率提供理论依据。

    Abstract:

    Guar is a typical legume cash crop native to India. Guar beans are ever-rising in the market share at present. Among them, the guar gum of its seed endosperm has been mainly used in the oil exploration industry. Water-based fracturing fluid can be formulated to increase the permeability of oil-bearing strata during oil production. In addition, guar gum is also widely used in paper making, textiles, food, spices, drugs, as well as mining and metallurgical industries. The nutrient-rich green seeds of guar beans are edible for food vegetables, due to a large amount of protein and a small amount of fat. The plant can be used as fodder and green manure. However, the low supply of guar gum on the market cannot fully meet the broad market space. Only a small number of planting areas of guar beans are suitable for the cultivation of guar beans in the food industry. Among them, Xinjiang located in the northwestern inland arid zone is very similar to the unique geographic conditions for the production and cultivation of guar beans. The temperature and heat conditions are suitable for the origin of guar, rich in the light and heat resources under the soil and water environment, with the high temperature difference between day and night, due to the scarce rainfall and high evaporation. But the relatively small region of guar bean planting still remains so far. Therefore a broad prospect can be expected to optimize the water and nitrogen management for the high crop yield and efficient use of water and nitrogen. This study aims to explore the water and nitrogen mode suitable for drip irrigation of guar beans under film in the Xinjiang area of China. Four irrigation levels were set: W1:1170 m3/hm2, W2:1 530 m3/hm2, W3:1 890 m3/hm2, W4:2 250 m3/hm2; Two levels of nitrogen application were: N1:30 kg/hm2, N2:50 kg/hm2. A systematic investigation was made to clarify the effects of water and nitrogen interaction on the growth index, yield, water, and nitrogen use efficiency, as well as the quality of guar bean during drip irrigation under film. The results showed that the coupling effect of water and nitrogen shared a significant effect on the yield, irrigation water use efficiency, and partial factor productivity of nitrogen fertilizer (W3>W4>W2>W1). There was an increase in the plant height, stem diameter, dry matter accumulation, yield, water use efficiency, galactomannan, soluble sugar, and polysaccharide content of Guar bean under the N2 level, compared with the N1 level. Only the partial productivity of nitrogen fertilizer decreased slightly. Principal component and membership function analysis showed that the optimal treatment was achieved in the irrigation amount of 1 890 m3/hm2 and the nitrogen application rate of 50 kg/hm2(W3N2). The finding can also provide a theoretical basis to promote the yield, water, and nitrogen use efficiency of Guar bean under mulched drip irrigation.

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王振华,任孔聚,尹飞虎,马占利,陈朋朋.适宜水氮互作提升膜下滴灌瓜尔豆产量品质与水氮利用效率[J].农业工程学报,2024,40(20):91-100. DOI:10.11975/j. issn.1002-6819.202403089

WANG Zhenhua, REN Kongju, YIN Feihu, MA Zhanli, CHEN Pengpeng. Yield quality and water and nitrogen use efficiency of guar beans under mulched drip irrigation in response to water and nitrogen interactions in arid areas[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE),2024,40(20):91-100. DOI:10.11975/j. issn.1002-6819.202403089

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  • 收稿日期:2024-03-13
  • 最后修改日期:2024-09-14
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  • 在线发布日期: 2024-10-14
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