Zhao Jiantao, Huang Rongzheng, Wang Xuzhe, Ma Chunhui, Li Man, Zhang Qianbing
College of Animal Science and Technology, Shihezi University, Shihezi, China.
College of Medicine, Shihezi University, Shihezi, China.
Front Plant Sci. 2023 Mar 8;14:1124664. doi: 10.3389/fpls.2023.1124664. eCollection 2023.
Nitrogen (N) and phosphorus (P) fertilization significantly affect alfalfa production and chemical composition; however, the effect of combined N and P application on protein fractions and the nonstructural carbohydrate content of alfalfa is not fully understood. This two-year study investigated the effects of N and P fertilization on the protein fractions, nonstructural carbohydrates (NSC), and alfalfa hay yield. Field experiments were carried out using two nitrogen application rates (N60, 60 and N120, 120 kg N ha ) and four phosphorus application rates (P0, 0; P50, 50; P100, 100; and P150, 150 kg P ha ), total 8 treatment (N60P0, N60P50, N60P100, N60P150, N120P0, N120P50, N120P100 and N120P150). Alfalfa seeds were sown in the spring of 2019, uniformly managed for alfalfa establishment, and tested in the spring of 2021-2022. Results indicated that P fertilization significantly increased the hay yield (3.07-13.43% ranges), crude protein (6.79-9.54%), non-protein nitrogen of crude protein (fraction A) (4.09-6.40%), and NSC content (11.00-19.40%) of alfalfa under the same treatment of N application ( < 0.05), whereas non-degradable protein (fraction C) decreased significantly (6.85-13.30%, < 0.05). Moreover, increasing N application resulted in a linear increase the content of non-protein N (NPN) (4.56-14.09%), soluble protein (SOLP) (3.48-9.70%), and neutral detergent-insoluble protein (NDIP) (2.75-5.89%) ( < 0.05), whereas acid detergent-insoluble protein (ADIP) content was significantly decreased (0.56-5.06%, < 0.05). The regression equations for nitrogen and phosphorus application indicated a quadratic relationship between yield and forage nutritive values. Meanwhile, the comprehensive evaluation scores of NSC, nitrogen distribution, protein fractions, and hay yield by principal component analysis (PCA) revealed that the N120P100 treatment had the highest score. Overall, 120 kg N ha coupled with 100 kg P ha (N120P100) promoted the growth and development of perennial alfalfa, increased soluble nitrogen compounds and total carbohydrate content, and reduced protein degradation, thus improving the alfalfa hay yield and nutritional quality.
氮(N)和磷(P)施肥显著影响苜蓿产量和化学成分;然而,氮磷配施对苜蓿蛋白质组分和非结构性碳水化合物含量的影响尚未完全明确。这项为期两年的研究调查了氮磷施肥对苜蓿蛋白质组分、非结构性碳水化合物(NSC)和苜蓿干草产量的影响。田间试验采用两种施氮量(N60,60和N120,120千克氮/公顷)和四种施磷量(P0,0;P50,50;P100,100;和P150,150千克磷/公顷),共8个处理(N60P0、N60P50、N60P100、N60P150、N120P0、N120P50、N120P100和N120P150)。苜蓿种子于2019年春季播种,苜蓿建植期间统一管理,并于2021 - 2022年春季进行测试。结果表明,在相同施氮处理下,施磷显著提高了苜蓿干草产量(增幅在3.07 - 13.43%之间)、粗蛋白含量(6.79 - 9.54%)、粗蛋白中非蛋白氮(组分A)含量(4.09 - 6.40%)和NSC含量(11.00 - 19.40%)(P < 0.05),而非降解蛋白(组分C)显著降低(6.85 - 13.30%,P < 0.05)。此外,增加施氮量导致非蛋白氮(NPN)含量(4.56 - 14.09%)、可溶性蛋白(SOLP)含量(3.48 - 9.70%)和中性洗涤不溶性蛋白(NDIP)含量(2.75 - 5.89%)呈线性增加(P < 0.05),而酸性洗涤不溶性蛋白(ADIP)含量显著降低(0.56 - 5.06%,P < 0.05)。氮磷施用量的回归方程表明产量与饲草营养价值之间呈二次关系。同时,通过主成分分析(PCA)对NSC、氮分布、蛋白质组分和干草产量进行综合评价得分显示,N120P100处理得分最高。总体而言,120千克氮/公顷与100千克磷/公顷(N120P100)促进了多年生苜蓿的生长发育,增加了可溶性氮化合物和总碳水化合物含量,减少了蛋白质降解,从而提高了苜蓿干草产量和营养品质。