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Genetic Basis of Increased Lifespan and Postponed Senescence in Drosophila melanogaster

Limited lifespan and senescence are near-universal phenomena. These quantitative traits exhibit variation in natural populations due to the segregation of many interacting loci and from environmental effects. Due to the complexity of the genetic control of lifespan and senescence, our understanding...

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Autores principales: Parker, Grace A., Kohn, Nathan, Spirina, Ally, McMillen, Anna, Huang, Wen, Mackay, Trudy F. C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Genetics Society of America 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7056975/
https://www.ncbi.nlm.nih.gov/pubmed/31969430
http://dx.doi.org/10.1534/g3.120.401041
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author Parker, Grace A.
Kohn, Nathan
Spirina, Ally
McMillen, Anna
Huang, Wen
Mackay, Trudy F. C.
author_facet Parker, Grace A.
Kohn, Nathan
Spirina, Ally
McMillen, Anna
Huang, Wen
Mackay, Trudy F. C.
author_sort Parker, Grace A.
collection PubMed
description Limited lifespan and senescence are near-universal phenomena. These quantitative traits exhibit variation in natural populations due to the segregation of many interacting loci and from environmental effects. Due to the complexity of the genetic control of lifespan and senescence, our understanding of the genetic basis of variation in these traits is incomplete. Here, we analyzed the pattern of genetic divergence between long-lived (O) Drosophila melanogaster lines selected for postponed reproductive senescence and unselected control (B) lines. We quantified the productivity of the O and B lines and found that reproductive senescence is maternally controlled. We therefore chose 57 candidate genes that are expressed in ovaries, 49 of which have human orthologs, and assessed the effects of RNA interference in ovaries and accessary glands on lifespan and reproduction. All but one candidate gene affected at least one life history trait in one sex or productivity week. In addition, 23 genes had antagonistic pleiotropic effects on lifespan and productivity. Identifying evolutionarily conserved genes affecting increased lifespan and delayed reproductive senescence is the first step toward understanding the evolutionary forces that maintain segregating variation at these loci in nature and may provide potential targets for therapeutic intervention to delay senescence while increasing lifespan.
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spelling pubmed-70569752020-03-12 Genetic Basis of Increased Lifespan and Postponed Senescence in Drosophila melanogaster Parker, Grace A. Kohn, Nathan Spirina, Ally McMillen, Anna Huang, Wen Mackay, Trudy F. C. G3 (Bethesda) Investigations Limited lifespan and senescence are near-universal phenomena. These quantitative traits exhibit variation in natural populations due to the segregation of many interacting loci and from environmental effects. Due to the complexity of the genetic control of lifespan and senescence, our understanding of the genetic basis of variation in these traits is incomplete. Here, we analyzed the pattern of genetic divergence between long-lived (O) Drosophila melanogaster lines selected for postponed reproductive senescence and unselected control (B) lines. We quantified the productivity of the O and B lines and found that reproductive senescence is maternally controlled. We therefore chose 57 candidate genes that are expressed in ovaries, 49 of which have human orthologs, and assessed the effects of RNA interference in ovaries and accessary glands on lifespan and reproduction. All but one candidate gene affected at least one life history trait in one sex or productivity week. In addition, 23 genes had antagonistic pleiotropic effects on lifespan and productivity. Identifying evolutionarily conserved genes affecting increased lifespan and delayed reproductive senescence is the first step toward understanding the evolutionary forces that maintain segregating variation at these loci in nature and may provide potential targets for therapeutic intervention to delay senescence while increasing lifespan. Genetics Society of America 2020-01-22 /pmc/articles/PMC7056975/ /pubmed/31969430 http://dx.doi.org/10.1534/g3.120.401041 Text en Copyright © 2020 Parker et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Investigations
Parker, Grace A.
Kohn, Nathan
Spirina, Ally
McMillen, Anna
Huang, Wen
Mackay, Trudy F. C.
Genetic Basis of Increased Lifespan and Postponed Senescence in Drosophila melanogaster
title Genetic Basis of Increased Lifespan and Postponed Senescence in Drosophila melanogaster
title_full Genetic Basis of Increased Lifespan and Postponed Senescence in Drosophila melanogaster
title_fullStr Genetic Basis of Increased Lifespan and Postponed Senescence in Drosophila melanogaster
title_full_unstemmed Genetic Basis of Increased Lifespan and Postponed Senescence in Drosophila melanogaster
title_short Genetic Basis of Increased Lifespan and Postponed Senescence in Drosophila melanogaster
title_sort genetic basis of increased lifespan and postponed senescence in drosophila melanogaster
topic Investigations
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7056975/
https://www.ncbi.nlm.nih.gov/pubmed/31969430
http://dx.doi.org/10.1534/g3.120.401041
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