Nutrients

How Genes and Diet Together Relate to the Growing Problem of Obesity and Metabolic Diseases

Updated

Abstract

Obesity-related genes may influence obesity development through specific nutrient interactions.

  • Genetic variants associated with obesity can affect dietary habits and nutrient intake.
  • Certain nutrients may impact gene expression related to obesity risk.
  • The presence of metabolic diseases, such as type 2 diabetes and osteoporosis, may alter the relationship between genetics and obesity.
  • Epigenetic factors, including specific dietary patterns, could encourage obesity development.
  • Understanding the interplay between genetics and nutrition is essential for creating personalized dietary strategies.

Simplified

Key numbers

1.9 billion
Obesity Prevalence
Number of adults overweight globally in 2016.
40% to 70%
Genetic Influence
Estimated heritability range of obesity.

Full Text

What this is

  • Obesity is a complex global health issue influenced by genetic, environmental, and lifestyle factors.
  • This review explores the interplay between obesity-related genes and nutrient intake, emphasizing personalized dietary strategies.
  • It highlights how specific nutrients can affect gene expression and obesity risk, as well as the role of .
  • An integrated approach is necessary for effective prevention and treatment of obesity and related metabolic diseases.

Essence

  • The review elucidates the relationship between genetics and nutrition in obesity, advocating for personalized dietary strategies to manage this multifaceted condition.

Key takeaways

  • Obesity rates have nearly tripled since 1975, with over 1.9 billion adults overweight in 2016. This underscores the urgent need for effective interventions.
  • Genetic factors contribute 40% to 70% to obesity heritability, indicating a significant genetic predisposition that interacts with environmental factors.
  • Personalized dietary strategies that consider genetic predispositions and nutrient intake are essential for effective obesity management and prevention.

Caveats

  • The review relies on existing literature, which may not capture all recent developments in obesity research or genetic findings.
  • Variability in genetic expression due to environmental factors complicates the development of universal interventions for obesity.

Definitions

  • epigenetics: The study of changes in gene expression caused by mechanisms other than changes in the underlying DNA sequence.
  • monogenic obesity: Obesity resulting from mutations in a single gene, often leading to severe early-onset obesity.
  • polygenic obesity: Obesity influenced by multiple genetic variants, typically associated with a later onset and less severe phenotype.

Simplified

Funding

Competing interests

The authors declare no conflicts of interest.
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