Weifan Wan, Qian Liu, Ke Li, Kun Zhao, Fei Qi, Yuanshuo Li, Zhi Sun, Haigang Li
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A 2-year (2020 and 2021) field experiment with five N fertilizer application rates, namely, 0 (N0), 20 (N20), 60 (N60), 120 (N120) and 180 (N180) kg N ha<sup>-1</sup>, was conducted in Inner Mongolia.</p><p><strong>Results: </strong>The results showed that N fertilizer application of 180 kg ha<sup>-1</sup> significantly increased the total alfalfa yield by 29%-32% by improving the stem‒leaf ratio; however, it didn't lead to a further increase in alfalfa quality. N fertilizer applications of 60 and 120 kg ha<sup>-1</sup> significantly improved the crude protein by 10.6%-22.7% and reduced the acid or neutral detergent fiber by 10.0%-18.7% in vegetative and bud stages, respectively, by improving the leaf N concentration. Furthermore, the fraction of N derived from the atmosphere reached 68.6%, with a significant increase in the corresponding amount of N fixed in N60. Soil NO<sub>3</sub> <sup>-</sup>-N concentrations significantly increased by 24.1%-33.3%, and NH<sub>4</sub> <sup>+</sup>-N concentrations increased by 1 to 3 times when N fertilizer application exceeded 120 kg N ha<sup>-1</sup> compared with that in N0.</p><p><strong>Conclusions: </strong>Overall, this study revealed the essential role of N fertilizer application at low rates in alfalfa production, as this practice not only increases alfalfa yield but also improves N fixation in saline‒alkali soil. However, it did not result in further improvement in alfalfa quality at the early flowering stage. 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However, N deficiency stress is often observed in marginal lands of China, especially in saline-alkali soils. Thus, this study aimed to assess the response of alfalfa yield, quality, N fixation, and soil N concentration to N fertilizer application at different stages in saline-alkali soil of Inner Mongolia. A 2-year (2020 and 2021) field experiment with five N fertilizer application rates, namely, 0 (N0), 20 (N20), 60 (N60), 120 (N120) and 180 (N180) kg N ha<sup>-1</sup>, was conducted in Inner Mongolia.</p><p><strong>Results: </strong>The results showed that N fertilizer application of 180 kg ha<sup>-1</sup> significantly increased the total alfalfa yield by 29%-32% by improving the stem‒leaf ratio; however, it didn't lead to a further increase in alfalfa quality. N fertilizer applications of 60 and 120 kg ha<sup>-1</sup> significantly improved the crude protein by 10.6%-22.7% and reduced the acid or neutral detergent fiber by 10.0%-18.7% in vegetative and bud stages, respectively, by improving the leaf N concentration. Furthermore, the fraction of N derived from the atmosphere reached 68.6%, with a significant increase in the corresponding amount of N fixed in N60. Soil NO<sub>3</sub> <sup>-</sup>-N concentrations significantly increased by 24.1%-33.3%, and NH<sub>4</sub> <sup>+</sup>-N concentrations increased by 1 to 3 times when N fertilizer application exceeded 120 kg N ha<sup>-1</sup> compared with that in N0.</p><p><strong>Conclusions: </strong>Overall, this study revealed the essential role of N fertilizer application at low rates in alfalfa production, as this practice not only increases alfalfa yield but also improves N fixation in saline‒alkali soil. 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引用次数: 0
摘要
背景:由于紫花苜蓿(Medicago sativa L.)具有固定氮的能力,因此氮肥的施用很少受到重视,但在中国的边缘土地,特别是盐碱地,经常观察到缺氮胁迫。因此,本研究旨在评价内蒙古盐碱地紫花苜蓿产量、品质、固氮和土壤氮浓度对不同阶段施氮量的响应。在内蒙古进行了为期2年(2020年和2021年)的5个氮肥施用量(0 (N0)、20 (N20)、60 (N60)、120 (N120)和180 (N180) kg N ha-1)的田间试验。结果:结果表明,施氮量为180 kg hm -1可通过提高茎叶比显著提高苜蓿总产量29% ~ 32%;然而,这并没有导致苜蓿质量的进一步提高。施氮60和120 kg hm -1通过提高叶片氮浓度,显著提高营养期和芽期粗蛋白质10.6% ~ 22.7%,酸性和中性洗涤纤维10.0% ~ 18.7%。大气中N的来源比例达到68.6%,N60中相应的N固定量显著增加。施氮量超过120 kg N hm -1时,土壤NO3—N浓度显著提高24.1% ~ 33.3%,NH4 +-N浓度较施氮量为0时提高1 ~ 3倍。结论:总体而言,本研究揭示了低施氮肥在苜蓿生产中的重要作用,因为低施氮肥不仅可以提高苜蓿产量,而且可以改善盐碱地的氮素固定。然而,在花前期,它并没有导致苜蓿品质的进一步提高。研究结果对盐碱地紫花苜蓿的氮肥施用具有指导意义。
Nitrogen fertilizer application for improving the biomass, quality, and nitrogen fixation of alfalfa (Medicago sativa L.) at different growth stages in a saline‒alkali soil.
Background: The application of nitrogen (N) fertilizer to alfalfa (Medicago sativa L.) has received little attention due to the ability of this plant to fix N. However, N deficiency stress is often observed in marginal lands of China, especially in saline-alkali soils. Thus, this study aimed to assess the response of alfalfa yield, quality, N fixation, and soil N concentration to N fertilizer application at different stages in saline-alkali soil of Inner Mongolia. A 2-year (2020 and 2021) field experiment with five N fertilizer application rates, namely, 0 (N0), 20 (N20), 60 (N60), 120 (N120) and 180 (N180) kg N ha-1, was conducted in Inner Mongolia.
Results: The results showed that N fertilizer application of 180 kg ha-1 significantly increased the total alfalfa yield by 29%-32% by improving the stem‒leaf ratio; however, it didn't lead to a further increase in alfalfa quality. N fertilizer applications of 60 and 120 kg ha-1 significantly improved the crude protein by 10.6%-22.7% and reduced the acid or neutral detergent fiber by 10.0%-18.7% in vegetative and bud stages, respectively, by improving the leaf N concentration. Furthermore, the fraction of N derived from the atmosphere reached 68.6%, with a significant increase in the corresponding amount of N fixed in N60. Soil NO3--N concentrations significantly increased by 24.1%-33.3%, and NH4+-N concentrations increased by 1 to 3 times when N fertilizer application exceeded 120 kg N ha-1 compared with that in N0.
Conclusions: Overall, this study revealed the essential role of N fertilizer application at low rates in alfalfa production, as this practice not only increases alfalfa yield but also improves N fixation in saline‒alkali soil. However, it did not result in further improvement in alfalfa quality at the early flowering stage. The findings provides valuable guidance for N fertilizer application in alfalfa production on saline‒alkali soils.
期刊介绍:
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