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The use of autozygosity mapping and next-generation sequencing in understanding anterior segment defects caused by an abnormal development of the lens

机译:利用自动合子作图和下一代测序来了解由晶状体异常发育引起的前节缺损

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摘要

The formation of the anterior segment of the eye is an intricate process that is dependent to a large degree on the normal development of the lens. Despite intensive study of the role of well-described eye genes, many causes of lenticular and anterior segment anomalies remain elusive. The majority of genes implicated thus far act in an autosomal dominant manner. Autosomal recessive causes are less well described; their diagnosis has been hindered by technological limitations, extreme genetic heterogeneity, a lack of understanding of eye biology and the role of many genes within the genome. The opportunity for the discovery of extremely rare autosomal recessive causes of ocular abnormalities from the study of consanguineous families is large, particularly through the powerful combination of next-generation sequencing with autozygosity mapping. Having begun to overcome the genetic heterogeneity bottleneck, it is increasingly recognised that the interpretation of genetic variants and the association of novel genes with a particular phenotype remain challenging. Nonetheless, increasing understanding of the genetic and mutational basis of lens and anterior segment abnormalities will be of enormous value to our comprehension of eye disease(s). Further, it will improve our ability to accurately interpret putative disease-causing variants with the aim of providing more personalised patient care and avoiding lifelong visual loss in children.
机译:眼睛前节的形成是一个复杂的过程,在很大程度上取决于晶状体的正常发育。尽管深入研究了描述良好的眼部基因的作用,但许多原因引起的晶状体和前节畸形仍然难以捉摸。迄今为止,涉及的大多数基因以常染色体显性方式起作用。常染色体隐性病因的描述较少。由于技术局限性,极端的遗传异质性,对眼生物学的缺乏了解以及基因组中许多基因的作用而阻碍了它们的诊断。通过近亲家庭的研究,发现极罕见的常染色体隐性遗传异常的机会很大,特别是通过下一代测序与自噬性映射的强大结合。已经开始克服遗传异质性瓶颈,人们日益认识到,遗传变异的解释以及新基因与特定表型的关联仍然具有挑战性。尽管如此,加深对晶状体和前节异常的遗传和突变基础的了解对于我们对眼病的理解将具有巨大的价值。此外,它将提高我们准确解释可能引起疾病的变体的能力,以提供更多个性化的患者护理并避免儿童终生视力丧失。

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