Javascript must be enabled to continue!
Polydactyly: phenotypes, genetics and classification
View through CrossRef
Polydactyly is one of the most common hereditary limb malformations featuring additional digits in hands and/or feet. It constituted the highest proportion among the congenital limb defects in various epidemiological surveys. Polydactyly, primarily presenting as an additional pre‐axial or post‐axial digit of autopod, is a highly heterogeneous condition and depicts broad inter‐ and intra‐familial clinical variability. There is a plethora of polydactyly classification methods reported in the medical literature which approach the heterogeneity in polydactyly in various ways. In this communication, well‐characterized, non‐syndromic polydactylies in humans are reviewed. The cardinal features, phenotypic variability and molecular advances of each type have been presented. Polydactyly at cellular and developmental levels is mainly a failure in the control of digit number. Interestingly, GLI3 and SHH (ZRS/SHH enhancer), two antagonistic factors known to modulate digit number and identity during development, have also been implicated in polydactyly. Mutations in GLI3 and ZRS/SHH cause overlapping polydactyly phenotypes highlighting shared molecular cascades in the etiology of additional digits, and thus suggesting the lumping of at least six distinct polydactyly entities. However, owing to the extreme phenotypic and clinical heterogeneity witnessed in polydactyly a substantial genetic heterogeneity is expected across different populations and ethnic groups.
Title: Polydactyly: phenotypes, genetics and classification
Description:
Polydactyly is one of the most common hereditary limb malformations featuring additional digits in hands and/or feet.
It constituted the highest proportion among the congenital limb defects in various epidemiological surveys.
Polydactyly, primarily presenting as an additional pre‐axial or post‐axial digit of autopod, is a highly heterogeneous condition and depicts broad inter‐ and intra‐familial clinical variability.
There is a plethora of polydactyly classification methods reported in the medical literature which approach the heterogeneity in polydactyly in various ways.
In this communication, well‐characterized, non‐syndromic polydactylies in humans are reviewed.
The cardinal features, phenotypic variability and molecular advances of each type have been presented.
Polydactyly at cellular and developmental levels is mainly a failure in the control of digit number.
Interestingly, GLI3 and SHH (ZRS/SHH enhancer), two antagonistic factors known to modulate digit number and identity during development, have also been implicated in polydactyly.
Mutations in GLI3 and ZRS/SHH cause overlapping polydactyly phenotypes highlighting shared molecular cascades in the etiology of additional digits, and thus suggesting the lumping of at least six distinct polydactyly entities.
However, owing to the extreme phenotypic and clinical heterogeneity witnessed in polydactyly a substantial genetic heterogeneity is expected across different populations and ethnic groups.
Related Results
A review of polydactyly and its inheritance: Connecting the dots
A review of polydactyly and its inheritance: Connecting the dots
Objective:
This study collects what is known about the inheritance underpinnings of syndromic and non-syndromic polydactylies and highlights dactyly presentations with ...
Novel heterozygous sequence variant in the GLI1 underlies postaxial polydactyly
Novel heterozygous sequence variant in the GLI1 underlies postaxial polydactyly
AbstractPolydactyly is one of the most common congenital abnormal phenotype of autopod, which is characterized by extra supernumerary digit in hands/feet with or without well‐devel...
A Rare Footprint: A Case Report of Isolated Pre-Axial Fully Developed Supernumerary Toe
A Rare Footprint: A Case Report of Isolated Pre-Axial Fully Developed Supernumerary Toe
Introduction: Polydactyly of the foot, particularly pre-axial polydactyly, is a rare congenital malformation that can occur alongside various congenital anomalies and syndromes. Cl...
Perceived Gaps in Genetics Training Among Audiologists and Speech-Language Pathologists: Lessons From a National Survey
Perceived Gaps in Genetics Training Among Audiologists and Speech-Language Pathologists: Lessons From a National Survey
Purpose
The aim of this study was to assess knowledge, self-rated confidence, and perceived relevance of genetics in the clinical practice of audiologists and speech-la...
Boot-shaped Neurovascular Island Flap for Reconstruction of Radial Polydactyly
Boot-shaped Neurovascular Island Flap for Reconstruction of Radial Polydactyly
Hypothesis: Reconstruction of radial polydactyly with a boot-shaped neurovascular island flap can result in good outcomes. Materials and Methods: A number of techniques are used fo...
EP.WE.406Adherence to operative standards for ulnar polydactyly excision in times of COVID-19 pandemic
EP.WE.406Adherence to operative standards for ulnar polydactyly excision in times of COVID-19 pandemic
Abstract
Aims
Simple ulnar polydactyly excision is a very common surgical procedure ideally performed within the first 6 months ...
Ecological Genetics
Ecological Genetics
Ecology is the study of the relationships between organisms and their environments, whereas ecological genetics focuses more specifically on the genetics of ecologically important ...
Pleiotropy and the evolutionary stability of plastic phenotypes: a geometric framework
Pleiotropy and the evolutionary stability of plastic phenotypes: a geometric framework
Phenotypic plasticity allows organisms to express different traits in response to different environmental or genetic conditions. Understanding the evolution of conditional phenotyp...

