湖北农业科学 ›› 2026, Vol. 65 ›› Issue (9): 130-134.doi: 10.14088/j.cnki.issn0439-8114.2026.09.021

• 药用植物 • 上一篇    下一篇

不同栽培密度对虎杖大田生产的影响

梁媛, 靳淼, 刘金娜   

  1. 陕西农林职业技术大学,陕西 杨凌 712100
  • 收稿日期:2026-04-02 出版日期:2026-09-25 发布日期:2026-09-17
  • 作者简介:梁媛(1992-),女,陕西西安人,讲师,硕士,主要从事中药资源利用与开发研究,(电子信箱)1195406468@qq.com。
  • 基金资助:
    杨凌职业技术学院院内科技创新项目(ZKZ23-07)

Effects of different planting densities on the field production of Polygonum cuspidatum

LIANG Yuan, JIN Miao, LIU Jin-na   

  1. Shaanxi A & F Technology University, Yangling 712100, Shaanxi, China
  • Received:2026-04-02 Published:2026-09-25 Online:2026-09-17

摘要: 为探讨不同栽培密度对虎杖(Polygonum cuspidatum Sieb.et Zucc.)生长、产量、药用成分含量及经济效益的影响,设置15 cm×30 cm、25 cm×40 cm、35 cm×50 cm、40 cm×40 cm、45 cm×60 cm共5种栽培密度,通过比较种茎投入、单株产量与公顷产量、根茎有效成分含量及经济效益,筛选适宜大田生产的最佳栽培密度。结果表明,种茎投入以15 cm×30 cm处理最高。栽培1年后,35 cm×50 cm和25 cm×40 cm处理的单株产量增幅高于其他处理;栽培4年后,40 cm×40 cm、25 cm×40 cm和45 cm×60 cm处理的单株产量增幅较高。从公顷产量看,一年生和四年生虎杖均以15 cm×30 cm处理最高,但四年生时该处理实际有效株数减少约50%,实际公顷产量与25 cm×40 cm处理无显著差异;40 cm×40 cm和45 cm×60 cm处理虽四年生单株产量较高,但公顷产量始终偏低,不适宜大田应用。四年生虎杖根茎中的虎杖苷、大黄素等有效成分含量均符合《中华人民共和国药典 2025年版 一部》相关质量标准,其中25 cm×40 cm处理的各药用成分含量整体最高。经济效益方面,15 cm×30 cm处理公顷总效益和纯收益最高,但存在有效株数下降、单株产量偏低等问题。其他栽培密度处理中,除25 cm×40 cm在高收益区间可能盈利外,其余均处于亏损状态。因此,25 cm×40 cm密度处理可实现单株与公顷产量平衡、药用成分积累最优,为虎杖大田栽培的适宜密度。

关键词: 虎杖(Polygonum cuspidatum Sieb.et Zucc.), 栽培密度, 产量, 药用成分, 经济效益

Abstract: To investigate the effects of different planting densities on the growth, yield, medicinal component contents, and economic benefits of Polygonum cuspidatum, five planting densities were set up: 15 cm × 30 cm, 25 cm × 40 cm, 35 cm × 50 cm, 40 cm × 40 cm, and 45 cm × 60 cm. The optimal planting density for field production was selected by comparing seed-stock input, per-plant yield increase and hectare-scale yield, rhizome bioactive ingredient contents, and economic returns. The results showed that the seed-stock input was the highest in the 15 cm × 30 cm treatment. After one year of cultivation, the per-plant yield increases in the 35 cm × 50 cm and 25 cm × 40 cm treatments were higher than those in the other treatments; after four years, the per-plant yield increases in the 40 cm × 40 cm, 25 cm × 40 cm, and 45 cm × 60 cm treatments were relatively higher. In terms of hectare-scale yield, the 15 cm × 30 cm treatment had the highest yield for both annual and four-year-old Polygonum cuspidatum plants; however, in the four-year-old plants, the actual effective plant number in this treatment decreased by about 50%, resulting in no significant difference in actual hectare-scale yield compared with the 25 cm × 40 cm treatment. Although the 40 cm × 40 cm and 45 cm × 60 cm treatments had relatively higher per-plant yields at four years, their hectare-scale yields remained consistently low throughout, and were not suitable for field application. The contents of polydatin, emodin, and other active components in the four-year-old Polygonum cuspidatum rhizomes all met the quality standards specified in the Chinese Pharmacopoeia 2025 edition, among which the 25 cm × 40 cm treatment showed the highest overall contents of various medicinal components. In terms of economic benefits, the 15 cm × 30 cm treatment had the highest total benefit and net return per hectare, but it also had problems such as a decrease in effective plant number and relatively low per-plant yield. Among the other planting density treatments, only the 25 cm × 40 cm treatment could be profitable in the high-yield range, while the rest were in a loss state. Therefore, the 25 cm × 40 cm density treatment could achieve a balance between per-plant and hectare-scale yield and the optimal accumulation of medicinal components, and was a suitable density for the field cultivation of Polygonum cuspidatum.

Key words: Polygonum cuspidatum Sieb.et Zucc., planting density, yield, medicinal components, economic benefits

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