Child and genetic variables associated with maternal adaptation to fragile X syndrome: a multidimensional analysis

Donald B Bailey1, John Sideris, Jane Roberts

  • 1RTI International, Research Triangle Park, North Carolina 27709-2194, USA. dbailey@rti.org

One hundred eight carrier mothers (95 premutation, 13 full mutation) of children with the full mutation fragile X syndrome completed seven scales to assess maternal stress, depressive symptoms, anger, anxiety, quality of life, hope, and optimism. A wide range of responses was found on each measure, with most mothers scoring in the non-clinical range on any individual measure. However, nearly half of the mothers scored in the clinically significant range on at least one measure and 25% on two or more measures. High stress and low quality of life were the most common domains of concern. Mothers with the full mutation generally did not differ from mothers with the premutation. CGG repeat length was not associated with responses on any of the measures completed by mothers with the premutation. Severity of the child's delay was not associated with any of the outcome measures, but child behavior problems accounted for significant variance in stress, depressive symptoms, anxiety, anger, and quality of life. Maternal adaptation appears to be a multidimensional phenomenon experienced in unique ways by each mother. Most mothers experienced positive adaptation, but a subset appear to be more vulnerable, especially those with children who have significant behavior problems. Future research needs to identify family, child, and support factors associated with maternal vulnerability and how adaptation changes over time in response to these factors.

Related Concept Videos

Human Genetics01:28

Human Genetics

Human genetics provides a profound framework for understanding the interplay between genetic predispositions and human psychology. At the heart of this discipline lies the study of how genes influence physical traits, behaviors, and susceptibility to diseases. Each person carries a unique genetic code that subtly or significantly shapes their psychological and behavioral landscape.
The complex relationship between genetics and psychology is observable through common biological components such...
Behavioral Genetics and Its Designs01:23

Behavioral Genetics and Its Designs

Behavior genetics explores how genetic inheritance influences human behavior. It focuses on how genes, passed from parents to offspring, contribute to the development of behavioral traits and tendencies. This branch of genetics seeks to understand the complex interplay between inherited genetic factors and environmental influences in shaping our behaviors.
The primary methodologies used in behavior genetics include family studies, twin studies, and adoption studies, each providing unique...
Sex-linked Disorders01:43

Sex-linked Disorders

Like autosomes, sex chromosomes contain a variety of genes necessary for normal body function. When a mutation in one of these genes results in biological deficits, the disorder is considered sex-linked.
Gene-Environment Interactions01:20

Gene-Environment Interactions

Gene expression is a dynamic process that is significantly influenced by environmental factors. This interaction underlies the complex nature of biological development and the phenotypic differences observed among individuals, even among those with identical genetic makeups. Factors such as radiation, temperature, behavior, nutrition, and stress play pivotal roles in determining how genes are expressed. The concept of the reaction range is central to understanding this interaction. It posits...
X-linked Traits01:19

X-linked Traits

In most mammalian species, females have two X sex chromosomes and males have an X and Y. As a result, mutations on the X chromosome in females may be masked by the presence of a normal allele on the second X. In contrast, a mutation on the X chromosome in males more often causes observable biological defects, as there is no normal X to compensate. Trait variations arising from mutations on the X chromosome are called “X-linked”.
X-linked Traits01:19

X-linked Traits

In most mammalian species, females have two X sex chromosomes and males have an X and Y. As a result, mutations on the X chromosome in females may be masked by the presence of a normal allele on the second X. In contrast, a mutation on the X chromosome in males more often causes observable biological defects, as there is no normal X to compensate. Trait variations arising from mutations on the X chromosome are called “X-linked”.