湖北农业科学 ›› 2026, Vol. 65 ›› Issue (7): 140-144.doi: 10.14088/j.cnki.issn0439-8114.2026.07.022

• 药用植物 • 上一篇    下一篇

生物协同改良破解林下潞党参连作障碍的效应与机制

杨勇1, 刘海霞2, 李娅妮1, 王玉龙1, 郭存武3, 叶辰3, 刘飞1   

  1. 1.山西振东道地药材开发有限公司,山西 长治 047400;
    2.长治市农业综合行政执法队,山西 长治 046000;
    3.云南农业大学植物保护学院,昆明 650000
  • 收稿日期:2026-03-23 出版日期:2026-07-25 发布日期:2026-07-23
  • 通讯作者: 刘 飞,男,山西沁县人,工程师,硕士,主要从事中草药栽培研究,(电子信箱)liufei2@zdjt.com。
  • 作者简介:杨 勇(1995-),男,山西忻州人,助理农艺师,硕士,主要从事药材生态种植研究,(电子信箱)yangyong1@zdjt.com。
  • 基金资助:
    长治市科技局重点研发计划“山西道地药材林下潞党参新产品开发”项目(2023ZDYC01); 晋产道地药材生态种植加工山西省重点实验室(202204010931003)

Effects and mechanisms of biological synergistic improvement on alleviating continuous cropping obstacles of under-forest Codonopsis pilosula

YANG Yong1, LIU Hai-xia2, LI Ya-ni1, WANG Yu-long1, GUO Cun-wu3, YE Chen3, LIU Fei1   

  1. 1. Shanxi Zhendong Genuine Regional Drug Development Co., Ltd., Changzhi 047400,Shanxi, China;
    2. Changzhi Agricultural Comprehensive Administrative Law Enforcement Team, Changzhi 046000,Shanxi, China;
    3. College of Plant Protection, Yunnan Agricultural University, Kunming 650000, China
  • Received:2026-03-23 Published:2026-07-25 Online:2026-07-23

摘要: 为探究生物协同改良对林下潞党参[Codonopsis pilosula(Franch.)Nannf.]连作障碍的调控效应与机制,以山西省平顺县梨树林下连作2年潞党参为材料,设清水对照、单一及复合生物改良共5种处理,测定植株生长、生理抗性、活性成分、土壤理化性质、根际微生物及根腐病发生情况。结果表明,生物有机肥1 235.5 kg/hm2+生物土壤改良剂24.71 kg/hm2处理效果最优。与对照相比,该处理株高、茎粗、主根长分别提高34.4%、41.2%、28.4%,单根鲜重、干重分别增加52.3%、55.6%;叶片过氧化物酶(POD)活性提升141.2%,丙二醛(MDA)含量降低42.08%,可溶性蛋白质含量增加96.62%;侧根党参炔苷、党参多糖含量分别提高61.33%、27.35%;土壤pH调至6.5,有机质含量提升135.29%,根际细菌数量显著增加,真菌与镰刀菌数量显著降低;根腐病发病率降至6.67%,防控效果达84.3%。生物协同改良可通过优化土壤微生态、增强植株生理抗性、促进活性成分积累,有效缓解林下潞党参连作障碍。

关键词: 潞党参[Codonopsis pilosula(Franch.)Nannf.], 生物协同改良, 连作障碍, 生理抗性

Abstract: To investigate the regulatory effects and mechanisms of biological synergistic improvement on continuous cropping obstacles of under-forest Codonopsis pilosula, two-year continuously cropped Codonopsis pilosula under pear forest in Pingshun County, Shanxi Province was used as the test material, and five treatments including a water control, single biological amendments and compound biological amendments were set up. Plant growth, physiological resistance, active ingredient content, soil physicochemical properties, rhizosphere microorganisms, and the occurrence of root rot were measured. The results showed that the treatment of 1 235.5 kg/hm2 biological organic fertilizer + 24.71 kg/hm2 biological soil amendment had the best effect. Compared with the control, this treatment significantly increased plant height, stem diameter, and main root length by 34.4%, 41.2%, and 28.4%, respectively, and increased fresh weight per root and dry weight per root by 52.3% and 55.6%, respectively. Leaf peroxidase (POD) activity increased by 141.2%, malondialdehyde(MDA) content decreased by 42.08%, and soluble protein content increased by 96.62%. The contents of lobetyolin and polysaccharide in laternal roots increased by 61.33% and 27.35%, respectively. Soil pH was adjusted to 6.5, organic matter content increased by 135.29%, the number of rhizosphere bacteria increased significantly, while the numbers of fungi and Fusarium decreased significantly. The incidence of root rot decreased to 6.67%, with a control effect of 84.3%. Biological synergistic improvement could effectively alleviate continuous cropping obstacles of under-forest Codonopsis pilosula by optimizing the soil microecology, enhancing plant physiological resistance, and promoting the accumulation of active ingredients.

Key words: Codonopsis pilosula, biological synergistic improvement, continuous cropping obstacle, physiological resistance

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