Appropriate nitrogen addition promoted the accumulation of nutrients and biomass by enhancing the nodule nitrogen fixation characteristic and nutrient utilization efficiency of Sophora alopecuroides under salt stress

IF 5.6 1区 农林科学 Q1 AGRICULTURAL ENGINEERING
Xiang Huang , Cunkai Luo , Fanyan Ma , Panxin Niu , Xingxin Zhang , Yongshun Zhou , Guangming Chu , Mei Wang , Honghai Luo
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Abstract

Moderate nitrogen addition can enhance plant growth performance under salt stress. However, the regulatory effects of nitrogen addition on the growth of the leguminous halophyte medicinal plant, Sophora alopecuroides, under salt stress remain unclear. In this study, a two-factor pot experiment with different NaCl levels (1 g/kg, 2 g/kg, 4 g/kg) and NH4NO3 levels (0 mg/kg, 32 mg/kg, 64 mg/kg, 128 mg/kg) was set up to systematically study the response of S. alopecuroides plant phenotype, nodulation and nitrogen fixation characteristics, nitrogen (N), phosphorus (P), potassium (K) nutrient absorption and utilization efficiency, plant biomass and nutrient accumulation to nitrogen addition under salt stress. The results demonstrated that under mild (1 g/kg NaCl) and moderate (2 g/kg NaCl) salt stress, S. alopecuroides exhibited a relatively low nitrogen demand. Specifically, low (32 mg/kg N) and medium (64 mg/kg N) nitrogen levels significantly enhanced nodule nitrogenase activity and nitrogen fixation capacity. Furthermore, the uptake of essential nutrients, including N, P, and K, in the above-ground biomass was markedly increased, which in turn promoted the accumulation of major nutrients such as crude protein, crude fat, and alkaloids, as well as overall biomass production. However, under severe (4 g/kg NaCl) salt stress, S. alopecuroides exhibited a preference for low nitrogen levels (32 mg/kg N). Under S3 conditions, excessive nitrogen application (e.g., 64 mg/kg and 128 mg/kg N) exacerbated the damage caused by salt stress, leading to significant inhibition of nitrogen fixation and nutrient uptake. Consequently, this resulted in a substantial reduction in biomass. This study provides a theoretical basis for nitrogen nutrition management of S. alopecuroides under salt stress conditions and offers valuable insights for optimizing fertilization and nutrient management strategies in saline-alkali agricultural production.

Abstract Image

适当的施氮量通过提高盐胁迫下苦豆子根瘤固氮特性和养分利用效率来促进养分积累和生物量
适量施氮可以提高盐胁迫下植物的生长性能。然而,氮添加对豆科盐生药用植物苦豆子在盐胁迫下生长的调控作用尚不清楚。本研究通过设置不同NaCl水平(1 g/kg、2 g/kg、4 g/kg)和NH4NO3水平(0 mg/kg、32 mg/kg、64 mg/kg、128 mg/kg)的双因素盆栽试验,系统研究盐胁迫下石竹植株表型、结瘤固氮特性、氮(N)、磷(P)、钾(K)养分吸收利用效率、植株生物量和养分积累对氮素添加的响应。结果表明,在轻度(1 g/kg NaCl)和中度(2 g/kg NaCl)盐胁迫下,苦荬菜对氮的需求相对较低。低氮水平(32 mg/kg N)和中氮水平(64 mg/kg N)显著提高了根瘤固氮酶活性和固氮能力。地上生物量对氮、磷、钾等必需营养物质的吸收显著增加,促进了粗蛋白质、粗脂肪、生物碱等主要营养物质的积累,促进了生物量的整体产量。然而,在4 g/kg NaCl的严重盐胁迫下,alopecuroides表现出对低氮(32 mg/kg N)的偏好。在S3条件下,过量施氮(如64 mg/kg和128 mg/kg N)加重了盐胁迫造成的损害,导致固氮和养分吸收受到显著抑制。因此,这导致了生物量的大量减少。本研究为盐胁迫条件下盐棘草氮素营养管理提供了理论依据,并为盐碱农业生产中优化施肥和养分管理策略提供了有价值的见解。
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来源期刊
Industrial Crops and Products
Industrial Crops and Products 农林科学-农业工程
CiteScore
9.50
自引率
8.50%
发文量
1518
审稿时长
43 days
期刊介绍: Industrial Crops and Products is an International Journal publishing academic and industrial research on industrial (defined as non-food/non-feed) crops and products. Papers concern both crop-oriented and bio-based materials from crops-oriented research, and should be of interest to an international audience, hypothesis driven, and where comparisons are made statistics performed.
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