6 research outputs found
UVR2 ensures transgenerational genome stability under simulated natural UV-B in <em>Arabidopsis thaliana</em>.
Ground levels of solar UV-B radiation induce DNA damage. Sessile phototrophic organisms such as vascular plants are recurrently exposed to sunlight and require UV-B photoreception, flavonols shielding, direct reversal of pyrimidine dimers and nucleotide excision repair for resistance against UV-B radiation. However, the frequency of UV-B-induced mutations is unknown in plants. Here we quantify the amount and types of mutations in the offspring of Arabidopsis thaliana wild-type and UV-B-hypersensitive mutants exposed to simulated natural UV-B over their entire life cycle. We show that reversal of pyrimidine dimers by UVR2 photolyase is the major mechanism required for sustaining plant genome stability across generations under UV-B. In addition to widespread somatic expression, germline-specific UVR2 activity occurs during late flower development, and is important for ensuring low mutation rates in male and female cell lineages. This allows plants to maintain genome integrity in the germline despite exposure to UV-B
Overexpression of AtWRKY50 is correlated with enhanced production of sinapic derivatives in Arabidopsis
Plant science
Clinical and biological significance of CXCR5 expressed by prostate cancer specimens and cell lines
DEGs detected with absolute FC > 2 and adjusted p  < 0.01 in response to feeding of grapevine-adapted and non-adapted mite strains. (XLSX 1803 kb