Related Experiment Video
Updated: Jul 2, 2025

Determination of Reproductive Competence by Confirming Pubertal Onset and Performing a Fertility Assay in Mice and Rats
Published on: October 13, 2018
Fetal genetically determined birth weight plays a causal role in earlier puberty timing: evidence from human genetic
Qinghui Peng1, Wenjuan Qiu2, Zengjun Li1
1Department of Epidemiology and Health Statistics, West China School of Public Health and West China Fourth Hospital, Sichuan University, Chengdu, China.
Insights
Lower fetal genetically determined birth weight causally links to earlier puberty onset. This finding, independent of the maternal environment, supports the fetal origins of disease hypothesis.
Area of Science:
- Genetics
- Reproductive Endocrinology
- Developmental Biology
Background:
- Previous studies suggested a link between birth weight and puberty timing but did not differentiate fetal and maternal genetic effects.
- Mendelian randomization (MR) studies were limited by potential bias from unaddressed correlations between maternal and fetal genetic effects.
- Fetal genome variation explains a larger proportion of birth weight than the maternal genome.
Purpose of the Study:
- To investigate the causal effect of fetal genetically determined birth weight on the timing of puberty.
- To distinguish direct fetal genetic effects on birth weight from indirect maternal intrauterine environmental effects.
- To explore the potential mediating role of childhood body mass index (BMI) in this relationship.
Main Methods:
- Two-sample Mendelian randomization (MR) analyses were performed using large-scale genome-wide association study (GWAS) summary data.
- Genetic variants associated with fetal birth weight were identified, adjusting for maternal genetic effects.
- MR mediation and MR-Cluster analyses were employed to assess causal relationships and potential mediation by childhood BMI.
Main Results:
- A one standard deviation (SD) decrease in fetal genetically determined birth weight was associated with a 0.16-year earlier onset of puberty.
- Multivariable MR analysis confirmed a direct influence of fetal birth weight on puberty timing, with lower birth weight associated with a 0.23-year earlier onset.
- Little evidence supported childhood BMI as a mediator between birth weight and puberty timing.
Conclusions:
- Low birth weight, as determined by the fetal genome, is causally associated with an earlier onset of puberty.
- These findings support the fetal origins of disease hypothesis.
- The results highlight the importance of considering fetal genetic determinants in understanding puberty timing.
Study Question:
Does fetal genetically determined birth weight associate with the timing of puberty?
Summary Answer:
Lower fetal genetically determined birth weight was causally associated with an earlier onset of puberty, independent of the indirect effects of the maternal intrauterine environment.
What Is Known Already:
Previous Mendelian randomization (MR) studies have indicated a potential causal link between birth weight, childhood BMI, and the onset of puberty. However, they did not distinguish between genetic variants that have a direct impact on birth weight through the fetal genome (referred to as fetal genetic effects) and those that influence birth weight indirectly by affecting the intrauterine environment (known as maternal genetic effects). It is crucial to emphasize that previous studies were limited because they did not account for the potential bias caused by unaddressed correlations between maternal and fetal genetic effects. Additionally, the proportion of birth weight variation explained by the fetal genome is considerably larger than that of the maternal genome.
Study Design, Size, Duration:
We performed two-sample MR analyses to investigate the causal effect of fetal genetically determined birth weight on puberty timing using summary data from large-scale genome-wide association studies (GWASs) in individuals of European ancestry.
Participants/Materials, Setting, Methods:
From the two most recent GWASs specifically centered on birth weight, which included 406 063 individuals and 423 683 individuals (63 365 trios) respectively, we identified genetic variants associated with fetal genetically determined birth weight, while adjusting for maternal genetic effects. We identified genetic variants associated with childhood BMI from an independent GWAS involving 21 309 European participants. On this basis, we employed two-sample MR techniques to examine the possible causal effects of fetal genetically determined birth weight on puberty timing using a large-scale GWAS of puberty timing (including 179 117 females of European ancestry). Furthermore, we employed advanced analytical methods, specifically MR mediation and MR-Cluster, to enhance our comprehension of the causal relationship between birth weight determined by fetal genetics and the timing of puberty. We also explored the pathways through which childhood BMI might act as a mediator in this relationship.
Main Results And The Role Of Chance:
In the univariable MR analysis, a one SD decrease in fetal genetically determined birth weight (∼ 418 g) was associated with a 0.16 (95% CI [0.07-0.26]) years earlier onset of puberty. The multivariable MR analysis including fetal genetically determined birth weight and childhood BMI in relation to puberty timing provided compelling evidence that birth weight had a direct influence on the timing of puberty. Lower birth weight (one SD) was associated with an earlier onset of puberty, with a difference of 0.23 (95% CI [0.05-0.42]) years. We found little evidence to support a mediating role of childhood BMI between birth weight and puberty timing (-0.07 years, 95% CI [-0.20 to 0.06]).
Limitations, Reasons For Caution:
Our data came from European ancestry populations, which may restrict the generalizability of our results to other populations. Moreover, our analysis could not investigate potential non-linear relationships between birth weight and puberty timing due to limitations in genetic summary data.
Wider Implications Of The Findings:
Findings from this study suggested that low birth weight, determined by the fetal genome, contributes to early puberty, and offered supporting evidence to enhance comprehension of the fetal origins of disease hypothesis.
Study Funding/Competing Interest(S):
C.Z. was funded by the Sichuan Province Science and Technology Program [grant number 2021JDR0189]. J.Z. was supported by grants from the National Natural Science Foundation of China [grant number 82373588]. No other authors declare any sources of funding. The authors have no conflicts of interest.
Trial Registration Number:
N/A.
Related Concept Videos
Signs of Puberty
Nature and Nurture
Genomic Imprinting and Inheritance
The expression of some genes depends on which parent passed the gene to the offspring, through a phenomenon known as...
Gene-Environment Interactions
Teratogenicity
Background and Environment Affect Phenotype
An example of how genetic background affects phenotype can be seen in horses. The Extension gene in horses is responsible for their coat color. A wild-type gene (EE) produces black pigment in the coat, while a mutant gene (ee) produces red pigment. A...

