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Open AccessJournal ArticleDOI

Lifespan and reproduction in Drosophila: New insights from nutritional geometry

TLDR
The use of recent techniques in nutrition research to quantify the detailed relationship between diet, nutrient intake, lifespan, and reproduction in Drosophila melanogaster indicates a role for both direct costs of reproduction and other deleterious consequences of ingesting high levels of protein.
Abstract
Modest dietary restriction (DR) prolongs life in a wide range of organisms, spanning single-celled yeast to mammals. Here, we report the use of recent techniques in nutrition research to quantify the detailed relationship between diet, nutrient intake, lifespan, and reproduction in Drosophila melanogaster. Caloric restriction (CR) was not responsible for extending lifespan in our experimental flies. Response surfaces for lifespan and fecundity were maximized at different protein–carbohydrate intakes, with longevity highest at a protein-to-carbohydrate ratio of 1:16 and egg-laying rate maximized at 1:2. Lifetime egg production, the measure closest to fitness, was maximized at an intermediate P:C ratio of 1:4. Flies offered a choice of complementary foods regulated intake to maximize lifetime egg production. The results indicate a role for both direct costs of reproduction and other deleterious consequences of ingesting high levels of protein. We unite a body of apparently conflicting work within a common framework and provide a platform for studying aging in all organisms.

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Journal ArticleDOI

Using nutritional geometry to define the fundamental macronutrient niche of the widespread invasive ant Monomorium pharaonis.

TL;DR: Two NG paradigms are used to provide different, but complementary insights into nutrient regulation strategies and test a hypothesis of extreme nutritional generalism in colony propagules of the globally distributed invasive ant Monomorium pharaonis, highlighting that even the most successful invasive species must navigate complex multidimensional nutritional landscapes to acquire limiting macronutrients and overcome developmental constraints as small propagules.
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Factors that affect the translation of dietary restriction into a longer life.

TL;DR: The mechanisms by which dietary restriction can affect life expectancy, and in particular the role of the microbiome are discussed, are discussed.
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Thermal and nutritional environments during development exert different effects on adult reproductive success in Drosophila melanogaster

TL;DR: Compared how the temperature and nutrition of larval environment would affect adult survivorship and reproductive success in the fruit fly, Drosophila melanogaster, and how the silver spoon effects of these aspects of environmental histories differ fundamentally in their nature, strength, and persistence are compared.
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Phospholipid fatty acid composition linking larval-density to lifespan of adult Drosophila melanogaster.

TL;DR: The present results indicate that pre-adult density may play a significant role in the lifespan of adult flies by altering the composition of phospholipids and shaping cell membrane bilayers with different susceptibilities to peroxidation.
Journal ArticleDOI

Nitrogen and carbon source balance determines longevity, independently of fermentative or respiratory metabolism in the yeast Saccharomyces cerevisiae.

TL;DR: Data demonstrate that ammonium decreases chronological life span (CLS) of the prototrophic Saccharomyces cerevisiae strain PYCC 4072 in a concentration-dependent manner and, accordingly, that CLS can be extended through ammonium restriction, even in conditions of initial glucose abundance.
References
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Journal ArticleDOI

Genetic pathways that regulate ageing in model organisms

TL;DR: Genetic studies in genetically tractable model organisms established that ageing is indeed regulated by specific genes, and allowed an analysis of the pathways involved, linking physiology, signal transduction and gene regulation.
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Regulation of Lifespan in Drosophila by Modulation of Genes in the TOR Signaling Pathway

TL;DR: It is shown that inhibition of TOR signaling pathway by alteration of the expression of genes in this nutrient-sensing pathway, which is conserved from yeast to human, extends lifespan in a manner that may overlap with known effects of dietary restriction on longevity.
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Calorie restriction, SIRT1 and metabolism: understanding longevity

TL;DR: Recent findings that are beginning to clarify the mechanisms by which CR results in longevity and robust health, which might open new avenues of therapy for diseases of ageing are summarized.
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Calorie restriction and aging: review of the literature and implications for studies in humans

TL;DR: The absence of adequate information on the effects of good-quality, calorie-restricted diets in nonobese humans reflects the difficulties involved in conducting long-term studies in an environment so conducive to overfeeding.
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