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叶片菌物群落的演替及其对针叶病原物相互作用的转录组响应。

Transitions of foliar mycobiota community and transcriptome in response to pathogenic conifer needle interactions.

机构信息

Department of Agricultural Biology, Colorado State University, Fort Collins, CO, USA.

Department of Forest Biological Sciences, University of the Philippines Los Baños, Laguna, Philippines.

出版信息

Sci Rep. 2022 May 12;12(1):7832. doi: 10.1038/s41598-022-11907-0.

Abstract

Profiling the host-mycobiota interactions in healthy vs. diseased forest ecosystems helps understand the dynamics of understudied yet increasingly important threats to forest health that are emerging due to climate change. We analyzed the structural and functional changes of the mycobiota and the responses of Pinus contorta in the Lophodermella needle cast pathosystem through metabarcoding and metatranscriptomics. When needles transitioned from asymptomatic to symptomatic, dysbiosis of the mycobiota occurred, but with an enrichment of Lophodermella pathogens. Many pathogenicity-related genes were highly expressed by the mycobiota at the necrotrophic phase, showing an active pathogen response that are absent in asymptomatic needles. This study also revealed that Lophodermella spp. are members of a healthy needle mycobiota that have latent lifestyles suggesting that other pine needle pathogens may have similar biology. Interestingly, Pinus contorta upregulated defense genes in healthy needles, indicating response to fungal recognition, while a variety of biotic and abiotic stresses genes were activated in diseased needles. Further investigation to elucidate the possible antagonistic interplay of other biotic members leading to disease progression and/or suppression is warranted. This study provides insights into microbial interactions in non-model pathosystems and contributes to the development of new forest management strategies against emerging latent pathogens.

摘要

对健康和患病森林生态系统中的宿主-菌根相互作用进行分析,有助于了解由于气候变化而出现的、对森林健康构成越来越大威胁的一些尚未得到充分研究的动态变化。我们通过宏条形码和宏转录组学分析,研究了菌根的结构和功能变化,以及 Pinus contorta 在 Lophodermella 针叶枯病病理系统中的反应。当针叶从无症状过渡到有症状时,菌根发生了失调,但 Lophodermella 病原体增多了。在坏死阶段,菌根中许多与致病性相关的基因高度表达,表现出一种活跃的病原体反应,而在无症状的针叶中则没有这种反应。本研究还表明,Lophodermella spp. 是健康针叶菌根的成员,具有潜伏的生活方式,这表明其他松树针叶病原体可能具有类似的生物学特性。有趣的是,Pinus contorta 在健康的针叶中上调了防御基因,表明对真菌识别的反应,而在患病的针叶中则激活了各种生物和非生物胁迫基因。需要进一步研究以阐明其他生物成员可能存在的拮抗相互作用,以了解其对疾病进展和/或抑制的影响。本研究为非模型病理系统中的微生物相互作用提供了新的见解,并为开发针对新兴潜伏病原体的新森林管理策略做出了贡献。

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