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Jallet, A.

Publications and source records attributed to Jallet, A..

2 recordsLinked to original sources

Adaptive evolution of transcriptome and transcriptomic plasticity in stable and fluctuating environments

Adaptation to new environments often involves multiple genes and can induce substantial changes in biological systems, but the overall consequences of the genetic response to specific environmental pressures remain poorly understood. Here, we investigate the large-scale effects of adaptation to new temperature regimes on the whole transcriptome from experimental evolution carried on the fungus Zymoseptoria tritici. Two distinct strains from the wild were grown in constant cool (17{degrees}C), constant warm (23{degrees}C), and fluctuating temperature environments, for about 250 clonal generations. The expression of > 10,000 genes was estimated by RNA-seq before and after evolution at several temperatures. We observed massive convergent change in both gene expression and gene expression plasticity. Fluctuating environments did not favor plastic gene expression in general, although fluctuating populations did evolve towards the optimal reaction norms. Some of our observations were at odds with common expectations; adaptive mutations were highly pleiotropic, and adaptation to stable temperature conditions did not match gene expression plasticity. We thus showed that the evolution of complex biological systems follow some general patterns which challenge gene-centered or quantitative genetics predictions.

evolutionary biology↗

Evolutionary impact of in vitro adaptation on virulence in the pathogen Zymoseptoria tritici

O_LIAll species are living in variable environments. integrating the impact of changing environments into plant-pathogen studies becomes essential. This integration is key to expanding our understanding of the evolutionary dynamics governing plant-pathogen interactions. C_LIO_LIAfter subjecting Zymoseptoria tritici to 500 generations of experimental evolution in vitro under various temperature regimes, we assessed the evolved lineages virulence levels across six wheat cultivars. Additionally, we performed whole-genome sequencing on ten evolved lineages to identify accumulated mutations C_LIO_LIOur study revealed a reduction in virulence among several evolved lineages, with variability based on the host genotype. We observed trans-lineage segregating mutations in the genome, encompassing both synonymous and non-synonymous mutations within the secretome. Intriguingly, despite 500 generations of experimental evolution, no loss of dispensable chromosomes was detected C_LIO_LIThese findings suggest that the abiotic environment can significantly influence the dynamic evolution of the plant pathogen Z. tritici. C_LI

evolutionary biology↗