Open access · CC-BY
via OpenAlex
The effect of dietary restriction on reproduction: a meta-analytic perspective
Joshua P. Moatt, Shinichi Nakagawa, Malgorzata Lagisz, Craig A. Walling
BMC Evolutionary Biology · 2016 · ▲ 75 citations
Abstract
BACKGROUND: Dietary restriction (DR), a reduction in the amount of food or particular nutrients eaten, is the most consistent environmental manipulation to extend lifespan and protect against age related diseases. Current evolutionary theory explains this effect as a shift in the resolution of the trade-off between lifespan and reproduction. However, recent studies have questioned the role of reproduction in mediating the effect of DR on longevity and no study has quantitatively investigated the effect of DR on reproduction across species. RESULTS: Here we report a comprehensive comparative meta-analysis of the effect of DR on reproduction. In general, DR reduced reproduction across taxa, but several factors moderated this effect. The effect of DR on reproduction was greater in well-studied model species (yeast, nematode worms, fruit flies and rodents) than non-model species. This mirrors recent results for longevity and, for reproduction, seems to result from a faster rate of decline with decreasing resources in model species. Our results also suggested that not all reproductive traits are affected equally by DR. High and moderate cost reproductive traits suffered a significant reduction with DR, but low cost traits, such as ejaculate production, did not. Although the effect of DR on reproduction was stronger in females than males, this sex difference reduced to near zero when accounting for other co-factors such as the costliness of the reproductive trait. Thus, sex differences in the effect of DR on longevity may be due to a failure to expose males to as complete a range of the costs of reproduction as females. CONCLUSIONS: We suggest that to better understand the generality of the effect of DR, future studies should attempt to address the cause of the apparent model species bias and ensure that individuals are exposed to as many of the costs of reproduction as possible. Furthermore, our meta-analytic approach reveals a general shortage of DR studies that record reproduction, particularly in males, as well as a lack of direct side-by-side comparisons of the effect of DR on males and females.
◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:
Provenance
- Source
- OpenAlex
- DOI
- 10.1186/s12862-016-0768-z
- Canonical
- link ↗
- Fetched
- 2026-07-22 MST
Cite this
APA
Moatt, J.P., Nakagawa, S., Lagisz, M., & Walling, C.A. (2016). The effect of dietary restriction on reproduction: a meta-analytic perspective. <em>BMC Evolutionary Biology</em>. https://doi.org/10.1186/s12862-016-0768-z
Vancouver
Moatt JP, Nakagawa S, Lagisz M, Walling CA. The effect of dietary restriction on reproduction: a meta-analytic perspective. BMC Evolutionary Biology. 2016. doi:10.1186/s12862-016-0768-z.
BibTeX
@article{joshua2016Theeff,
title = {The effect of dietary restriction on reproduction: a meta-analytic perspective},
author = {Joshua P. Moatt and Shinichi Nakagawa and Malgorzata Lagisz and Craig A. Walling},
journal = {BMC Evolutionary Biology},
year = {2016},
doi = {10.1186/s12862-016-0768-z},
}
Research neighborhood
References, citing works, and semantically nearest findings. Click a node to open it.
Related findings
Aging Cell 2012
Open access · OA
Comparative and meta‐analytic insights into life extension via dietary restriction
Aging Cell 2008
Preprint · OA
Longevity–fertility trade‐offs in the tephritid fruit fly,<i>Anastrepha ludens</i>, across dietary‐restriction gradients
npj Aging and Mechanisms of Disease 2015
Open access · CC-BY
Defining molecular basis for longevity traits in natural yeast isolates
Aging Cell 2025
Open access · CC-BY
Rapamycin, Not Metformin, Mirrors Dietary Restriction‐Driven Lifespan Extension in Vertebrates: A Meta‐Analysis
Microbial cell (Graz, Austria) 2025
Open access · OA
The core genetic drivers of chronological aging in yeast are universal regulators of longevity.
Microbial Cell 2025
Open access · CC-BY