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Maternal and fetal origins of offspring blood pressure: statistical analysis using genetic correlation and genetic
Siyi Jin1, Ting Wang1, Chen Wenying1
1Department of Biostatistics, School of Public Health, Xuzhou Medical University, Xuzhou, Jiangsu, China.
Insights
This study reveals shared genetic factors between fetal birthweight and offspring blood pressure, indicating a causal link from maternal birthweight to higher systolic blood pressure and pulse pressure. These findings offer insights into preventing hypertension.
Area of Science:
- Genetics and Genomics
- Cardiovascular Disease Epidemiology
- Developmental Biology
Background:
- Epidemiological studies suggest a link between adverse in utero environments, proxied by birthweight, and increased offspring hypertension risk.
- The precise nature of the association between intrauterine conditions, birthweight, and subsequent blood pressure remains incompletely understood.
Purpose of the Study:
- To investigate the genetic correlation between fetal-specific birthweight and offspring blood pressure (systolic, diastolic, and pulse pressure).
- To identify pleiotropic genes influencing both fetal birthweight and blood pressure traits.
- To assess the causal relationship between maternal birthweight and offspring blood pressure using Mendelian randomization.
Main Methods:
- Utilized maternal/fetal-specific summary statistics for birthweight and blood pressure traits (SBP, DBP, PP).
- Employed cross-trait linkage disequilibrium score regression to evaluate genetic correlation.
- Applied a mixture-adjusted intersect-union pleiotropy test to detect shared pleiotropic genes.
- Conducted genetic risk score (GRS)-based Mendelian randomization in UK Biobank parent-offspring pairs.
Main Results:
- A significant negative genetic correlation was observed between fetal-specific birthweight and DBP, SBP, and PP.
- Identified numerous pleiotropic genes shared between fetal birthweight and blood pressure traits, often showing opposing genetic effects.
- Revealed a causal negative association between maternal-specific birthweight and offspring SBP and PP, robust to confounding factors, but not DBP.
Conclusions:
- Common genetic components underlie birthweight and blood pressure regulation.
- Maternal birthweight exerts a causal influence on offspring's systolic blood pressure and pulse pressure.
- Findings provide crucial insights into the etiology of hypertension and potential avenues for early prevention strategies.
Background:
Epidemiological studies demonstrated that adverse in utero environment was associated with increased risk of offspring high blood pressure, by using birthweight as the proxy of maternal intrauterine exposure; however, the nature of such association remains less understood.
Methods:
With maternal/fetal-specific summary statistics of birthweight (n = 297 356 for own birthweight and n = 210 248 for offspring birthweight) and summary statistics of blood pressure [i.e. systolic blood pressure (SBP), diastolic blood pressure (DBP) and pulse pressure (PP)] (n = 757 601), we evaluated the genetic correlation between fetal-specific birthweight and blood pressure using cross-trait linkage disequilibrium score regression, and next detected pleiotropic genes for them with a pleiotropy mapping method called mixture-adjusted intersect-union pleiotropy test. Furthermore, we conducted a genetic risk score (GRS)-based Mendelian randomization analysis in parent-offspring pairs (n = 6031) of the UK Biobank cohort, to assess the causal relation between maternal-specific GRS and blood pressure conditioning on fetal genotypes.
Results:
We found fetal-specific birthweight had a negative genetic correlation with DBP (ρ^g = -0.174, P = 1.68 × 10-10), SBP (ρ^g = -0.198, P = 8.09 × 10-12), and PP (ρ^g = -0.152, P = 6.04 × 10-8), and detected 143, 137 and 135 pleiotropic genes shared between fetal-specific birthweight and PP, SBP and DBP, respectively. These genes often exhibited opposite genetic effects, and were more likely to be differentially expressed in pancreas, liver, heart, brain, whole blood and muscle skeletal tissues. A causal negative association of maternal-specific birthweight was identified with SBP (P = 2.20 × 10-2) and PP (P = 7.67 × 10-3) but not DBP (P = 0.396) in mother-offspring pairs, after accounting for the influence of fetal-specific GRS; and the two significant relations were robust against the horizontal pleiotropy of instruments and the confounding influence of gestational duration and preterm birth. However, these causal associations could not be detected in father-offspring pairs.
Conclusions:
This study revealed common genetic components underlying birthweight and blood pressure, and provided important insight into aetiology and early prevention of high blood pressure.
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