Zhikrevetskaya Svetlana, Peregudova Darya, Danilov Anton, Plyusnina Ekaterina, Krasnov George, Dmitriev Alexey, Kudryavtseva Anna, Shaposhnikov Mikhail, Moskalev Alexey
Laboratory of Post-Genomic Research, Engelhardt Institute of Molecular Biology, Russian Academy of Sciences, Moscow, Russia; Laboratory of genetics of aging and longevity, Moscow Institute of Physics and Technology, Dolgoprudny, Russia.
Laboratory of molecular radiobiology and gerontology, Institute of Biology, Komi Science Center of RAS, Syktyvkar, Russia.
PLoS One. 2015 Aug 6;10(8):e0133840. doi: 10.1371/journal.pone.0133840. eCollection 2015.
Studying of the effects of low doses of γ-irradiation is a crucial issue in different areas of interest, from environmental safety and industrial monitoring to aerospace and medicine. The goal of this work is to identify changes of lifespan and expression stress-sensitive genes in Drosophila melanogaster, exposed to low doses of γ-irradiation (5-40 cGy) on the imaginal stage of development. Although some changes in life extensity in males were identified (the effect of hormesis after the exposure to 5, 10 and 40 cGy) as well as in females (the effect of hormesis after the exposure to 5 and 40 cGy), they were not caused by the organism "physiological" changes. This means that the observed changes in life expectancy are not related to the changes of organism physiological functions after the exposure to low doses of ionizing radiation. The identified changes in gene expression are not dose-dependent, there is not any proportionality between dose and its impact on expression. These results reflect nonlinear effects of low dose radiation and sex-specific radio-resistance of the postmitotic cell state of Drosophila melanogaster imago.
研究低剂量γ辐射的影响是不同领域的关键问题,涵盖环境安全、工业监测、航空航天和医学等。这项工作的目标是确定在发育的成虫阶段暴露于低剂量γ辐射(5 - 40 cGy)的黑腹果蝇的寿命变化和应激敏感基因的表达变化。尽管在雄性果蝇中发现了寿命的一些变化(暴露于5、10和40 cGy后出现兴奋效应)以及雌性果蝇中也有(暴露于5和40 cGy后出现兴奋效应),但这些变化并非由生物体的“生理”变化引起。这意味着观察到的预期寿命变化与暴露于低剂量电离辐射后生物体生理功能的变化无关。所确定的基因表达变化不依赖于剂量,剂量与其对表达的影响之间不存在任何比例关系。这些结果反映了低剂量辐射的非线性效应以及黑腹果蝇成虫有丝分裂后细胞状态的性别特异性抗辐射性。