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In order to confirm the pathophysiology of EV71 infection and host cellular responses, especially for apoptotic responses, we have employed PCR to analyze the expression changes of cellular genes during the infection process.
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To analyze the expression change in more detail, we classified the differentially expressed (DE) genes based on their change trend from E9.5 to E13.5.
Analyzing the expression changes, we found that treatment of U2OS cells with either Actinomycin D or Etoposide resulted in treatment-specific expression patterns as demonstrated in the plot showing ratios of gene expression changes upon Actinomycin D treatment versus Etoposide treatment (Figure 3A).
We next analyzed the expression changes of Sl-MMPs after infection with Pst DC3000.
We first analyzed the expression changes over time from patient 65 in the focus network (Fig. 2).
To explore the possible involvement of SlMKKs in defense response against B. cinerea, we first analyzed the expression changes of SlMKKs after infection with B. cinerea.
To explore the possible involvement of Sl-MMPs in defense response against pathogen infection, we first analyzed the expression changes of Sl-MMPs after infection with B. cinerea.
In addition, we analyzed the expression changes of BdMAPK cascade kinase genes under those treatments, and established the MAPK signaling network based on the co-expression patterns upon different stresses treatment.
We next analyzed the expression changes of defense-related genes regulated by the JA/ET- and SA-mediated signaling pathways, respectively, to explore the possible molecular mechanism associated with the reduced disease resistance in Sl3-MMP-silenced plants.
Williams et al. (2003) used a cDNA microarray-based approach to analyze the expression level changes of recognized biomarkers in a relevant fish species, European flounder (Platichthys flesus).
Many studies have been conducted to analyze the expression profiles for and epigenetic changes in specific genes, but comprehensive data for whole-genome alterations in DNA methylation remain scarce.
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CEO of Professional Science Editing for Scientists @ prosciediting.com