Intercropping with marigold promotes soil health and microbial structure to assist in mitigating tobacco bacterial wilt

间作 单作 生物 农学 青枯病 烟草 根际 园艺 细菌 生态学 农业 种植 遗传学 生物化学 基因
作者
Yanyan Li,Jia‐Xun Feng,Lu Zheng,Junbin Huang,Yong Yang,Xihong Li
出处
期刊:Journal of Plant Pathology [Springer Nature]
卷期号:102 (3): 731-742 被引量:14
标识
DOI:10.1007/s42161-020-00490-w
摘要

Abstract Marigold is reported to have antibacterial activity, and effectively protect crops against soil-borne diseases. However, it is not known whether and how tobacco bacterial wilt (TBW) could be mitigated via intercropping with marigold under field conditions. In this study, a field experiment was performed to measure and compare the occurrence of TBW, the soil chemical properties, and soil microbial composition and diversity between a tobacco-marigold intercropping system and a tobacco monocropping system. At 100 days (d) post-transplantation, the incidence ( I ) and disease index ( DI ) for the tobacco-marigold intercropping system were 30.12% and 58.25% lower than that for tobacco monocropping system, respectively. The results showed that Sobs, Shannon and Chao 1 index of soil bacterial communities in the tobacco-marigold intercropping system were 10.34%, 1.41% and 5.13% higher than that in the tobacco monocropping system at 100 d post-transplantation, respectively. It exhibited a higher richness and diversity of soil bacterial communities in the tobacco-marigold intercropping system. The relative abundance of some beneficial genera in tobacco-marigold intercropping system, such as Lysobacter , Burkholderia , Trichoderma , Mortierella , Chaetomium, Penicillium , was 1.50, 1.61, 3.35, 1.67, 4.40 and 4.50 fold higher than that in tobacco monocropping system. The presence of the intercropping system inhibited soil acidification and loss of soil calcium ions. The redundancy analysis (RDA) indicated that soil pH and exchange Ca 2+ were the main environmental factors which seemed to influence the bacterial and fungal community. The results from this study provided valuable insight into the possible mechanisms enhancing soil health in the tobacco-marigold intercropping system.
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