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Effects of Laccaria bicolor on Gene Expression of Populus trichocarpa Root under Poplar Canker Stress.


ABSTRACT: Poplars can be harmed by poplar canker. Inoculation with mycorrhizal fungi can improve the resistance of poplars to canker, but the molecular mechanism is still unclear. In this study, an aseptic inoculation system of L. bicolor-P. trichocarpa-B. dothidea was constructed, and transcriptome analysis was performed to investigate regulation by L. bicolor of the expression of genes in the roots of P. trichocarpa during the onset of B. dothidea infection, and a total of 3022 differentially expressed genes (DEGs) were identified. Weighted correlation network analysis (WGCNA) was performed on these DEGs, and 661 genes' expressions were considered to be affected by inoculation with L. bicolor and B. dothidea. Gene ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) enrichment analyses showed that these 661 DEGs were involved in multiple pathways such as signal transduction, reactive oxygen metabolism, and plant-pathogen interaction. Inoculation with L. bicolor changed the gene expression pattern of the roots, evidencing its involvement in the disease resistance response of P. trichocarpa. This research reveals the mechanism of L. bicolor in inducing resistance to canker of P. trichocarpa at the molecular level and provides a theoretical basis for the practical application of mycorrhizal fungi to improve plant disease resistance.

SUBMITTER: Dong F 

PROVIDER: S-EPMC8703858 | biostudies-literature | 2021 Nov

REPOSITORIES: biostudies-literature

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Effects of <i>Laccaria bicolor</i> on Gene Expression of <i>Populus trichocarpa</i> Root under Poplar Canker Stress.

Dong Fengxin F   Wang Yihan Y   Tang Ming M  

Journal of fungi (Basel, Switzerland) 20211129 12


Poplars can be harmed by poplar canker. Inoculation with mycorrhizal fungi can improve the resistance of poplars to canker, but the molecular mechanism is still unclear. In this study, an aseptic inoculation system of <i>L. bicolor</i>-<i>P. trichocarpa</i>-<i>B. dothidea</i> was constructed, and transcriptome analysis was performed to investigate regulation by <i>L. bicolor</i> of the expression of genes in the roots of <i>P. trichocarpa</i> during the onset of <i>B. dothidea</i> infection, and  ...[more]

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