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The goal of this study is to reveal the evolution history of the O. officinalis complex, particularly the polyploidization and its genomic impact, by tracing C-genome differentiating and dispersing process.
Extensive studies in a multitude of additional crop species, facilitated by rapid progress in sequencing and resequencing(s) of crop genomes, will further our understanding of the genomic impact from both the unusual population history of cultivated plants and millennia of human selection.
The genomic impact of this horizontally transferred TE family on the structure of the genome and transcriptome is discussed in light of the unique transposition mechanism, long-term persistence, and propensity for gene shuffling.
These data significantly extend the genomic impact of Chlamydiae on Plantae and show that about one-half (30/55) of the transferred genes are most closely related to sequences emanating from the genome of the only environmental isolate that is currently available.
Most data on the genomic impact of TEs are presently derived from mammals and angiosperms.
Ultimately, the combined quantifiable genomic and epigenomic perturbations will allow us to measure the genomic impact of a substance on a biological system.
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Finally, infection is a form of stress for a plant, and given that abiotic stress is known to cause some of the genomic impacts already mentioned, and also some additional types (e.g. increased frequency of point mutations and decreased microsatellite stability) [ 24, 25], then the stress component of transformation, with a natural or disarmed strain, could also have comparable unintended effects.
The discussion focuses on how recent developments in genomic science impact social understandings of racial difference and the public health goal to eliminate ongoing health disparities among racially identified groups.
Clearly, some but not all stressors that cause genomic instability impact priming in microglia.
First, the considered genomic factors impact the expression level and the expression variability of TE exons in inverse ways.
DOI: http://dx.doi.org/10.7554/eLife.05055.011 As genomic reassortment impacts levels of genetic diversity, we conducted phylogenetic analyses of all eight genome segments of the 908 viruses.
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