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生态学杂志 ›› 2026, Vol. 45 ›› Issue (6): 1880-1889.doi: 10.13292/j.1000-4890.202606.009

• 研究报告 • 上一篇    下一篇

宁南山区马铃薯叶片叶绿素荧光、物质积累与转运对磷素添加的响应

汪华1,苏明1,吴佳瑞2,洪自强1,李翻过1,李彤1,蔡巧红1,吴宏亮1*,康建宏1*   

  1. (1宁夏大学农学院, 银川 750021; 2宁夏农垦农林牧技术推广中心, 银川 750011)

  • 出版日期:2026-06-10 发布日期:2026-12-01

Response of potato leaf chlorophyll fluorescence, material accumulation and transport to phosphorus addition in Ningnan mountain area.

WANG Hua1, SU Ming1, WU Jiarui2, HONG Ziqiang1, LI Fanguo1, LI Tong1, CAI Qiaohong1, WU Hongliang1*, KANG Jianhong1*   

  1. (1College of Agriculture, Ningxia University, Yinchuan 750021, China; 2 Ningxia Nongken Agricultural, Forestry, and Animal Husbandry Technology Extension Center, Yinchuan 750011, China).

  • Online:2026-06-10 Published:2026-12-01

摘要: 本研究立足于农业可持续发展战略需求,聚焦化肥高效利用,探究磷肥的优化施用对马铃薯光合效能、群体结构指标及干物质动态积累规律的影响。试验于2018—2019年在宁夏海原县开展,以“青薯9号”为供试材料,采用随机区组设计,设置0 kg·hm-2(P0)、60 kg·hm-2(P1)、120 kg·hm-2(P2)、180 kg·hm-2(P3)和240 kg·hm-2(P4)共5个施磷量处理,分析不同施磷量下马铃薯叶片荧光特性、群体生长、干物质动态积累及产量的变化趋势。结果表明:马铃薯出苗后60 d,与P0相比,P1、P2、P3、P4处理的马铃薯Fv/Fm(PSⅡ最大光化学效率)、Fv/Fo(PS潜在最大光合能力)、PI(光合机构性能参数)和ABS/RC(PSⅡ光能捕获效率)2年平均增幅分别为0.6%~2.0%、3.4%~10.06%、3.5%~14.3%、8.4%~18.8%;P2处理显著增加了马铃薯叶面积指数(LAI)、光合势(LAD)、群体生长速率(CGR)、净同化率(NAR)、最大积累速率时刻的生物量(Wmax)和最大干物质积累速率(Vmax);与P0相比,P1、P2、P3、P4处理的LAILADCGRNARWmaxVmax两年平均增幅分别为1.9%~35.7%、2.0%~40.7%、9.5%~29.5%、13.1%~29.4%、3.3%~56.8%、16.4%~72.2%;与P0相比,P1、P2、P3、P4处理的马铃薯产量2年平均增幅6.1%~32.9%;5个施磷量处理中,P2处理的马铃薯产量达到最大值,对产量和施磷量进行二次函数拟合,得到2018年最佳经济施磷量为124 kg·hm-2,2019年最佳经济施磷量为118 kg·hm-2;相关性分析表明,马铃薯WmaxVmaxFv/FmFv/FoPIABS/RCLAILAD呈显著正相关,马铃薯产量与Fv/FmFv/FoPIABS/RCLAILAD呈显著正相关。主成分分析结果显示,两年各处理综合得分表现为P2>P1>P3>P4>P0。因此,施磷量120 kg·hm-2是西北半干旱区马铃薯绿色高效生产适宜用量。


关键词: 马铃薯, 磷肥用量, 荧光特性, 干物质积累特性, 产量形成

Abstract: Based on the strategic needs of sustainable agricultural development and focusing on the efficient use of fertilizers, we investigated the effects of optimal application of phosphorus fertilizer on photosynthetic efficiency, population structure, and dynamic dry matter accumulation pattern of potatoes. The experiment was carried out in 2018-2019 in Haiyuan County, Ningxia, with ‘Qingyan Potato No. 9’ as the test material, using a randomized block group design. We analyzed leaf fluorescence characteristics, population growth, dynamic accumulation of dry matter, and yield of potatoes under five phosphorus application levels of 0 kg·hm-2 (P0), 60 kg·hm-2 (P1), 120 kg·hm-2 (P2), 180 kg·hm-2 (P3), and 240 kg·hm-2 (P4). The results showed that at 60 days after seedling emergence, compared with P0, the 2-year average increases of Fv/Fm (PSII maximum photochemical efficiency), Fv/Fo (PS potential maximum photosynthetic capacity), PI (photosynthetic institutional performance parameter), and ABS/RC (PSⅡ light energy capture efficiency) in leaves under the P1, P2, P3, and P4 treatments ranged from 0.6% to 2.0%, 3.4% to 10.06%, 3.5% to 14.3%, and 8.4% to 18.8%, respectively. The P2 treatment significantly increased potato leaf area index (LAI), photosynthetic potential (LAD), population growth rate (GCR),  net assimilation rate (NAR), and biomass at the point of achieving peak accumulation rate (Wmax), along with the highest dry matter accumulation rate (Vmax). Compared with P0, the two-year average increases in LAI, LAD, CGR, NAR, Wmax, and Vmax across P1, P2, P3, and P4 treatments were 1.9%-35.7%, 2.0%-40.7%, 9.5%-29.5%, 13.1%-29.4%, 3.3%-56.8%, and 16.4%-72.2%, respectively. Meanwhile, the 2-year average increase in potato yield of P1, P2, P3, and P4 treatments ranged from 6.1% to 32.9% compared with P0. Among the five phosphorus application levels, potato yield reached the maximum in the P2 treatment. The quadratic function was fitted to yield and phosphorus application level to obtain the optimal economic phosphorus application level of 124 kg·hm-2 in 2018 and 118 kg·hm-2 in 2019. Wmax and Vmax were significantly positively correlated with Fv/Fm, Fv/Fo, PI, ABS/RC, LAI, and LAD, while potato yield was significantly positively correlated with Fv/Fm, Fv/Fo, PI, ABS/RC, LAI, and LAD. The principal component analysis indicated that the composite score of each treatment in the two years was in order of P2>P1>P3>P4>P0. Therefore, phosphorus application level of 120 kg·hm-2 was the appropriate amount for green and efficient production of potatoes in the semi-arid region of Northwest China.

Key words: potato, phosphate fertilizer dosage, fluorescence characteristics, dry matter accumulation characteristics, yield formation