Multi-tissue DNA methylation aging clocks for sea lions, walruses and seals

被引:0
|
作者
Todd R. Robeck
Amin Haghani
Zhe Fei
Dana M. Lindemann
Jennifer Russell
Kelsey E. S. Herrick
Gisele Montano
Karen J. Steinman
Etsuko Katsumata
Joseph A. Zoller
Steve Horvath
机构
[1] SeaWorld Parks and Entertainment,Zoological Operations
[2] SeaWorld Parks and Entertainment,Species Preservation Lab
[3] Gonda Research Center,Department of Human Genetics
[4] David Geffen School of Medicine,Department of Biostatistics, School of Public Health
[5] Altos Labs,undefined
[6] University of California-Los Angeles,undefined
[7] SeaWorld of Florida,undefined
[8] SeaWorld of Texas,undefined
[9] SeaWorld of California,undefined
[10] Kamogawa Sea World,undefined
来源
Communications Biology | / 6卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Age determination of wild animals, including pinnipeds, is critical for accurate population assessment and management. For most pinnipeds, current age estimation methodologies utilize tooth or bone sectioning which makes antemortem estimations problematic. We leveraged recent advances in the development of epigenetic age estimators (epigenetic clocks) to develop highly accurate pinniped epigenetic clocks. For clock development, we applied the mammalian methylation array to profile 37,492 cytosine-guanine sites (CpGs) across highly conserved stretches of DNA in blood and skin samples (n = 171) from primarily three pinniped species representing the three phylogenetic families: Otariidae, Phocidae and Odobenidae. We built an elastic net model with Leave-One-Out-Cross Validation (LOOCV) and one with a Leave-One-Species-Out-Cross-Validation (LOSOCV). After identifying the top 30 CpGs, the LOOCV produced a highly correlated (r = 0.95) and accurate (median absolute error = 1.7 years) age estimation clock. The LOSOCV elastic net results indicated that blood and skin clock (r = 0.84) and blood (r = 0.88) pinniped clocks could predict age of animals from pinniped species not used for clock development to within 3.6 and 4.4 years, respectively. These epigenetic clocks provide an improved and relatively non-invasive tool to determine age in skin or blood samples from all pinniped species.
引用
收藏
相关论文
共 50 条
  • [31] The multi-tissue landscape of somatic mtDNA mutations indicates tissue-specific accumulation and removal in aging
    Sanchez-Contreras, Monica
    Sweetwyne, Mariya T.
    Tsantilas, Kristine A.
    Whitson, Jeremy A.
    Campbell, Matthew D.
    Kohrn, Brenden F.
    Kim, Hyeon Jeong
    Hipp, Michael J.
    Fredrickson, Jeanne
    Nguyen, Megan M.
    Hurley, James B.
    Marcinek, David J.
    Rabinovitch, Peter S.
    Kennedy, Scott R.
    ELIFE, 2023, 12
  • [32] A multi-tissue analysis identifies HLA complex group 9 gene methylation differences in bipolar disorder
    Kaminsky, Z.
    Tochigi, M.
    Jia, P.
    Pal, M.
    Mill, J.
    Kwan, A.
    Ioshikhes, I.
    Vincent, J. B.
    Kennedy, J. L.
    Strauss, J.
    Pai, S.
    Wang, S-C
    Petronis, A.
    MOLECULAR PSYCHIATRY, 2012, 17 (07) : 728 - 740
  • [33] Adapting Blood DNA Methylation Aging Clocks for Use in Saliva Samples With Cell-type Deconvolution
    Galkin, Fedor
    Kochetov, Kirill
    Mamoshina, Polina
    Zhavoronkov, Alex
    FRONTIERS IN AGING, 2021, 2
  • [34] A multi-tissue analysis identifies HLA complex group 9 gene methylation differences in bipolar disorder
    Z Kaminsky
    M Tochigi
    P Jia
    M Pal
    J Mill
    A Kwan
    I Ioshikhes
    J B Vincent
    J L Kennedy
    J Strauss
    S Pai
    S-C Wang
    A Petronis
    Molecular Psychiatry, 2012, 17 : 728 - 740
  • [35] Aging effects on DNA methylation modules in human brain and blood tissue
    Horvath, Steve
    Zhang, Yafeng
    Langfelder, Peter
    Kahn, Rene S.
    Boks, Marco P. M.
    van Eijk, Kristel
    van den Berg, Leonard H.
    Ophoff, Roel A.
    GENOME BIOLOGY, 2012, 13 (10):
  • [36] Aging effects on DNA methylation modules in human brain and blood tissue
    Steve Horvath
    Yafeng Zhang
    Peter Langfelder
    René S Kahn
    Marco PM Boks
    Kristel van Eijk
    Leonard H van den Berg
    Roel A Ophoff
    Genome Biology, 13
  • [37] Fail-tests of DNA methylation clocks, and development of a noise barometer for measuring epigenetic pressure of aging and disease
    Mei, Xiaoyue
    Blanchard, Joshua
    Luellen, Connor
    Conboy, Michael J.
    Conboy, Irina M.
    AGING-US, 2023, 15 (17): : 8552 - 8575
  • [38] A multi-tissue approach to assess the effects of lipid extraction on the isotopic composition of deep-sea fauna
    Papiol, Vanesa
    Fanelli, Emanuela
    Cartes, Joan E.
    Rumolo, Paola
    Lopez-Perez, Cristina
    JOURNAL OF EXPERIMENTAL MARINE BIOLOGY AND ECOLOGY, 2017, 497 : 230 - 242
  • [39] Geographic distribution and diversity of mitochondrial DNA haptotypes in South American sea lions (Otaria flavescens) and fur seals (Arctocephalus australis)
    Tunez, J. I.
    Centron, Daniela
    Cappozzo, H. L.
    Cassini, M. H.
    MAMMALIAN BIOLOGY, 2007, 72 (04) : 193 - 203
  • [40] An Integrative Multi-scale Analysis of the Dynamic DNA Methylation Landscape in Aging
    Yuan, Tian
    Jiao, Yinming
    de Jong, Simone
    Ophoff, Roel A.
    Beck, Stephan
    Teschendorff, Andrew E.
    PLOS GENETICS, 2015, 11 (02): : 1 - 21