Genetic, Environmental, and Stochastic Components of Lifespan Variability: The Drosophila Paradigm

Author:

Bylino Oleg V.12ORCID,Ogienko Anna A.3,Batin Mikhail A.4,Georgiev Pavel G.1ORCID,Omelina Evgeniya S.3

Affiliation:

1. Department of Regulation of Genetic Processes, Laboratory of Molecular Organization of the Genome, Institute of Gene Biology RAS, 119334 Moscow, Russia

2. Center for Precision Genome Editing and Genetic Technologies for Biomedicine, Institute of Gene Biology, Russian Academy of Sciences, 119334 Moscow, Russia

3. Department of Regulation of Genetic Processes, Institute of Molecular and Cellular Biology SB RAS, 630090 Novosibirsk, Russia

4. Open Longevity, 15260 Ventura Blvd., Sherman Oaks, Los Angeles, CA 91403, USA

Abstract

Lifespan is a complex quantitative trait involving genetic and non-genetic factors as well as the peculiarities of ontogenesis. As with all quantitative traits, lifespan shows considerable variation within populations and between individuals. Drosophila, a favourite object of geneticists, has greatly advanced our understanding of how different forms of variability affect lifespan. This review considers the role of heritable genetic variability, phenotypic plasticity and stochastic variability in controlling lifespan in Drosophila melanogaster. We discuss the major historical milestones in the development of the genetic approach to study lifespan, the breeding of long-lived lines, advances in lifespan QTL mapping, the environmental factors that have the greatest influence on lifespan in laboratory maintained flies, and the mechanisms, by which individual development affects longevity. The interplay between approaches to study ageing and lifespan limitation will also be discussed. Particular attention will be paid to the interaction of different types of variability in the control of lifespan.

Funder

Russian Science Foundation

Ministry of Science and Higher Education of the Russia

Publisher

MDPI AG

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