Plant-necrotroph co-transcriptome networks illuminate a metabolic battlefield.

Zhang, Wei; Corwin, Jason A; Copeland, Daniel Harrison; Feusier, Julie; Eshbaugh, Robert; Cook, David E; Atwell, Suzi; Kliebenstein, Daniel J · Elife · 2019

basic_science · Level V

Where this comes from

Abstract

A central goal of studying host-pathogen interaction is to understand how host and pathogen manipulate each other to promote their own fitness in a pathosystem. Co-transcriptomic approaches can simultaneously analyze dual transcriptomes during infection and provide a systematic map of the cross-kingdom communication between two species. Here we used the Arabidopsis-<i>B. cinerea</i> pathosystem to test how plant host and fungal pathogen interact at the transcriptomic level. We assessed the impact of genetic diversity in pathogen and host by utilization of a collection of 96 isolates infection on Arabidopsis wild-type and two mutants with jasmonate or salicylic acid compromised immunities. We identified ten <i>B. cinerea</i>gene co-expression networks (GCNs) that encode known or novel virulence mechanisms. Construction of a dual interaction network by combining four host- and ten pathogen-GCNs revealed potential connections between the fungal and plant GCNs. These co-transcriptome data shed lights on the potential mechanisms underlying host-pathogen interaction.

Medical subject headings