Search bioRxivSearch

Biology subjects

Rodriguez, P.

Publications and source records attributed to Rodriguez, P..

2 recordsLinked to original sources

A cereal aphid effector promotes barley susceptibility in a species-specific manner through suppression of defence gene expression.

Aphids secrete diverse repertoires of effectors into their hosts to promote the infestation process. While \"omics\"-approaches facilitated the identification and comparison of effector repertoires from a number of aphid species, the functional characterization of these proteins has been limited to dicot (model) plants. The bird cherry-oat aphid Rhopalosiphum padi is a pest of cereal crops, including barley. Here, we extended efforts to characterize aphid effectors with regards to their role in promoting susceptibility to the R. padi-barley interaction. We selected 3 R. padi effectors based on sequences similarity to previously characterized M. persicae effectors and assessed their subcellular localisation, expression, and role in promoting plant susceptibility. Expression of R. padi effectors RpC002 and Rp1 in transgenic barley lines enhanced plant susceptibility to R. padi but not M. persicae, for which barley is a poor host. Characterization of Rp1 transgenic barley lines revealed reduced gene expression of plant hormone signalling genes relevant to plant-aphid interactions, indicating this effector enhances susceptibility by suppressing plant defences in barley. Our data suggests that some aphid effectors specifically function when expressed in host species, and feature activities that benefit their corresponding aphid species.

plant biology

Mycobacterium abscessus virulence traits unraveled by transcriptomic profiling in amoeba and macrophages

Free-living amoebae might represent an evolutionary niche. In order to get more insights into the potential amoebal training ground for Mycobacterium abscessus, we characterized its full transcriptome in amoeba (Ac) and macrophages (M{varphi}), as well as the Mycobacterium chelonae intra-Ac transcriptome for comparison. Up-regulated genes in Ac allowed M. abscessus to resist environmental stress and induce defense mechanisms, as well as showing switch from carbohydrate carbon sources to fatty acid metabolism. Eleven genes implicated in the adaptation to intracellular stress, were mutated, with all but one confirmed to be involved in M. abscessus intra-M{varphi} survival. Cloning two of these genes in M. chelonae increased its intra-M{varphi} survival. One mutant was particularly attenuated in M{varphi} that corresponded to the deletion of an Eis N-acetyl transferase protein (MAB_4532c). Taken together, M. abscessus transcriptomes revealed the intracellular lifestyle of the mycobacteria, with Ac largely contributing to the enhancement of M. abscessus intra-M{varphi} survival.

microbiology