State Key Laboratory of Subtropical Silviculture, Zhejiang A&F University, Hangzhou, China.
Zhejiang Provincial Key Laboratory of Resources Protection and Innovation of Traditional Chinese Medicine, Zhejiang A&F University, Hangzhou, China.
Microb Biotechnol. 2022 Dec;15(12):2929-2941. doi: 10.1111/1751-7915.14142. Epub 2022 Sep 13.
Microbial destabilization induced by pathogen infection has severely affected plant quality and output, such as Anoectochilus roxburghii, an economically important herb. Soft rot is the main disease that occurs during A. roxburghii culturing. However, the key members of pathogens and their interplay with non-detrimental microorganisms in diseased plants remain largely unsolved. Here, by utilizing a molecular ecological network approach, the interactions within bacterial communities in endophytic compartments and the surrounding soils during soft rot infection were investigated. Significant differences in bacterial diversity and community composition between healthy and diseased plants were observed, indicating that the endophytic communities were strongly influenced by pathogen invasion. Endophytic stem communities of the diseased plants were primarily derived from roots and the root endophytes were largely derived from rhizosphere soils, which depicts a possible pathogen migration image from soils to roots and finally the stems. Furthermore, interactions among microbial members indicated that pathogen invasion might be aided by positively correlated native microbial members, such as Enterobacter and Microbacterium, who may assist in colonization and multiplication through a mutualistic relationship in roots during the pathogen infection process. Our findings will help open new avenues for developing more accurate strategies for biological control of A. roxburghii bacterial soft rot disease.
病原体感染引起的微生物失稳严重影响了植物的质量和产量,例如铁皮石斛,这是一种具有重要经济价值的草本植物。软腐病是铁皮石斛栽培过程中发生的主要病害。然而,病原菌的关键成员及其与病株中无害微生物的相互作用在很大程度上仍未得到解决。在这里,我们利用分子生态网络方法,研究了软腐病感染过程中内生菌区室和周围土壤中细菌群落内的相互作用。健康和患病植物之间的细菌多样性和群落组成存在显著差异,表明内生群落受到病原菌入侵的强烈影响。患病植物的内生茎群落主要来源于根部,而根内生菌主要来源于根际土壤,这描绘了一种可能的病原菌从土壤到根部,最后到茎部的迁移图像。此外,微生物成员之间的相互作用表明,病原菌的入侵可能得到了阳性相关的本地微生物成员的帮助,例如肠杆菌属和微杆菌属,它们可能通过在病原菌感染过程中与根际土壤中的共生关系协助定殖和增殖。我们的研究结果将为开发更准确的铁皮石斛细菌性软腐病生物防治策略开辟新途径。