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Exposure to environmental radionuclides alters mitochondrial DNA maintenance in a wild rodent

Jenni Kesäniemi; Anton Lavrinienko; Eugene Tukalenko; Ana Filipa Moutinho; Tapio Mappes; Anders Pape Møller; Timothy A. Mousseau; Phillip C. Watts
Evolutionary Ecology · Vol. 34, Issue 2 · pp. 163-174 · 2020

Abstract

Mitochondria are sensitive to oxidative stress, including that derived from ionizing radiation. To quantify the effects of exposure to environmental radionuclides on mitochondrial DNA (mtDNA) dynamics in wildlife, bank voles ( Myodes glareolus ) were collected from the chernobyl exclusion zone (CEZ), where animals are exposed to elevated levels of radionuclides, and from uncontaminated areas within the CEZ and elsewhere in Ukraine. Brains of bank voles from outside the CEZ were characterized by low mtDNA copy number and low mtDNA damage; by contrast, bank voles within the CEZ had high mtDNA copy number and high mtDNA damage, consistent with putative damaging effects of elevated radiation and a compensatory response to maintain sufficient functioning mitochondria. In animals outside the CEZ, the expression levels of PGC-1α gene and mtDNA copy number were positively correlated as expected from this gene’s prominent role in mitochondrial biogenesis; this PGC-1α-mtDNA copy number association is absent in samples from the CEZ. Our data imply that exposure to radionuclides is associated with altered mitochondrial dynamics, evident in level of mtDNA and mtDNA damage and the level of activity in mitochondrial synthesis.

Bibliographic Information

JournalEvolutionary Ecology
PublisherSpringer
Publication Date2020-04-01
Publication Year2020
Volume34
Issue2
Pages163-174
Document TypeJournal Article
Print ISSN0269-7653
eISSN1573-8477
DOI10.1007/s10682-019-10028-x

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NARA Access Coverage1987-01-01~Current
Journal Homepagehttps://www.springer.com/journal/10682
Publisher PageOpen Publisher Page
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