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Rediscovery by Whole Genome Sequencing: Classical Mutations and Genome Polymorphisms in Neurospora crassa

机译:全基因组测序的重新发现:景天孢菌中的经典突变和基因组多态性

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摘要

Classical forward genetics has been foundational to modern biology, and has been the paradigm for characterizing the role of genes in shaping phenotypes for decades. In recent years, reverse genetics has been used to identify the functions of genes, via the intentional introduction of variation and subsequent evaluation in physiological, molecular, and even population contexts. These approaches are complementary and whole genome analysis serves as a bridge between the two. We report in this article the whole genome sequencing of eighteen classical mutant strains of Neurospora crassa and the putative identification of the mutations associated with corresponding mutant phenotypes. Although some strains carry multiple unique nonsynonymous, nonsense, or frameshift mutations, the combined power of limiting the scope of the search based on genetic markers and of using a comparative analysis among the eighteen genomes provides strong support for the association between mutation and phenotype. For ten of the mutants, the mutant phenotype is recapitulated in classical or gene deletion mutants in Neurospora or other filamentous fungi. From thirteen to 137 nonsense mutations are present in each strain and indel sizes are shown to be highly skewed in gene coding sequence. Significant additional genetic variation was found in the eighteen mutant strains, and this variability defines multiple alleles of many genes. These alleles may be useful in further genetic and molecular analysis of known and yet-to-be-discovered functions and they invite new interpretations of molecular and genetic interactions in classical mutant strains.
机译:经典的正向遗传学已经成为现代生物学的基础,并且几十年来一直是表征基因在塑造表型中作用的范例。近年来,通过有意引入变异并随后在生理,分子甚至群体环境中进行评估,逆向遗传学已用于鉴定基因的功能。这些方法是互补的,整个基因组分析是两者之间的桥梁。我们在本文中报道了十八种神经孢霉的经典突变菌株的全基因组测序,以及与相应突变表型相关的突变的推定鉴定。尽管某些菌株携带多个独特的非同义,无义或移码突变,但基于遗传标记限制搜索范围以及在18个基因组之间使用比较分析的综合能力为突变与表型之间的关联提供了有力的支持。对于其中的十个突变体,该突变体的表型在Neurospora或其他丝状真菌的经典或基因缺失突变体中得以概括。每个菌株中存在13至137个无意义的突变,并且indel大小在基因编码序列中显示出高度偏斜。在十八个突变菌株中发现了重要的额外遗传变异,并且这种变异性定义了许多基因的多个等位基因。这些等位基因可能在已知和尚待发现的功能的进一步遗传和分子分析中有用,并且它们邀请了经典突变菌株中分子和遗传相互作用的新解释。

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