Liu P F, Zhao Y K, Ma J N, Cao Y, Zhang M X, Yu J, Guan H B, Xing Y S, Wang X Q, Jia X
School of Pharmacy, Inner Mongolia Medical University, Hohhot, 010110, China.
Chifeng Institute of Agriculture and Animal Husbandry Science, Inner Mongolia, Chifeng, 024031, China.
BMC Plant Biol. 2025 Apr 21;25(1):503. doi: 10.1186/s12870-025-06544-4.
Intercropping has the function of promoting plant growth, improving yield and quality. Platycodon grandiflorus (P. grandiflorus) is a traditional Chinese medicinal herb; continuous cropping obstacles significantly inhibit its yield and quality. However, few study have established about P. grandiflorus interaction of various crops. This study provides a theoretical foundation to explore the most effective intercropping method, enhance soil utilization efficiency, and increase the yield and quality of P. grandiflorus. We conducted field experiment, P. grandiflorus monoculture (JG-JG), P. grandiflorus and Achyranthes bidentata intercropping (JG-NX), P. grandiflorus and Saposhnikovia divaricata intercropping (JG-FF), P. grandiflorus and Glehnia littoralis (JG-SS) intercropping. Additionally, we included three main intercropping crops with P. grandiflorus, Zea mays (JG-YM), Setaria italica (JG-GZ), and Glycine max (JG-DD). The soil physicochemical properties, enzyme activity, soil microorganisms, the yield and secondary metabolite content in the roots of P. grandiflorus were determined. The results showed that intercropping significantly increased the yield and quality of P. grandiflorus, and significantly reduced the incidence rate of root rot. The intercropping system enhances the physical and chemical properties of soil, soil enzyme activity, and soil microbial diversity. JG-SS intercropping significantly increased the abundance of bacteria and fungi, stimulated soil microbial communities, promoted plant growth, significantly increased yield and content of platycodin D, enhanced the complexity of microbial co-occurrence networks. This study could provide a sustainable planting system for the cultivation of P. grandiflorus, particularly the system JG-SS.
Not applicable.
间作具有促进植物生长、提高产量和品质的作用。桔梗是一种传统中药材;连作障碍显著抑制其产量和品质。然而,关于桔梗与各种作物相互作用的研究较少。本研究为探索最有效的间作方法、提高土壤利用效率以及增加桔梗的产量和品质提供了理论基础。我们进行了田间试验,包括桔梗单作(JG-JG)、桔梗与牛膝间作(JG-NX)、桔梗与防风间作(JG-FF)、桔梗与北沙参间作(JG-SS)。此外,我们还纳入了三种与桔梗间作的主要作物,玉米(JG-YM)、谷子(JG-GZ)和大豆(JG-DD)。测定了土壤理化性质、酶活性、土壤微生物、桔梗根的产量和次生代谢产物含量。结果表明,间作显著提高了桔梗的产量和品质,并显著降低了根腐病的发病率。间作系统增强了土壤的理化性质、土壤酶活性和土壤微生物多样性。JG-SS间作显著增加了细菌和真菌的丰度,刺激了土壤微生物群落,促进了植物生长,显著提高了桔梗皂苷D的产量和含量,增强了微生物共现网络的复杂性。本研究可为桔梗的栽培提供一种可持续的种植系统,特别是JG-SS系统。
不适用。