Localization and Transcriptional Responses of in Identify Putative Pathogenicity Factors.

Front Microbiol

Department of Genetics, Forestry and Agricultural Biotechnology Institute, Genomics Research Institute, University of Pretoria Pretoria, South Africa.

Published: December 2016

is a fungal pathogen that causes the development of stem cankers on susceptible trees. Clones of that are partially resistant and highly susceptible have been identified based on the extent of lesion formation on the stem upon inoculation with These interactions have been used as a model pathosystem to enhance our understanding of interactions between pathogenic fungi and woody hosts, which may be different to herbaceous hosts. In previous research, transcriptomics of host responses in these two clones to suggested roles for salicylic acid and gibberellic acid phytohormone signaling in defense. However, it is unclear how the pathogen infiltrates host tissue and which pathogenicity factors facilitate its spread in the two host genotypes. The aim of this study was to investigate these two aspects of the interaction and to test the hypothesis that the pathogen possesses mechanisms to modulate the tree phytohormone-mediated defenses. Light microscopy showed that the pathogen occurred in most cell types and structures within infected stem tissue. Notably, the fungus appeared to spread through the stem by penetrating cell wall pits. In order to understand the molecular interaction between these organisms and predict putative pathogenicity mechanisms of , fungal gene expression was studied and . Fungal genes associated with cell wall degradation, carbohydrate metabolism and phytohormone manipulation were expressed by . These genes could be involved in fungal spread by facilitating cell wall pit degradation and manipulating phytohormone mediated defense in each host environment, respectively. Specifically, the expression of an and in suggests putative mechanisms by which the pathogen can modulate the phytohormone-mediated defenses of the host. These mechanisms have been reported in herbaceous plant-pathogen interactions, supporting the notion that these aspects of the interaction are similar in a woody species. This study highlights and as candidates for further functional characterization.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5143476PMC
http://dx.doi.org/10.3389/fmicb.2016.01953DOI Listing

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