2016/10/05 by Anders Pape Møller, Jienn Chiang Shyu, Timothy A. Mousseau · 2 citations
Agricultural and Biological Sciences · Environmental Science · #Plant and animal studies #Radioactive contamination and transfer #Species Distribution and Climate Change
paper · doi:10.1086/688873
openalex publication_date 2016/10/05 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/25
Pollen viability is an important component of reproductive success, with inviable pollen causing failure of reproduction. Pollen grains have evolved mechanisms to avoid negative impacts of adverse environmental conditions on viability, including the ability to sustain ionizing radiation and repair DNA. We assessed the viability of 109,000 pollen grains representing 675 pollen samples from 111 species of plants in Chernobyl across radiation gradients that spanned three orders of magnitude. We found a statistically significant but small and negative main effect of radiation on pollen viability rates across species (Pearson’s r = 0.20). Ploidy level and the number of nucleate cells (two vs. three) were the only variables that influenced the strength of the effect of radiation on pollen viability, as reflected by significant interactions between these two variables and background radiation, while there were no significant effects of genome size, pollen aperture type, life cycle duration, or pollination agent on the strength of the effect of radiation on pollen viability.