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进化和驯化的编码位点:当前的知识及其对基于生物启发的基因组编辑的影响。

The coding loci of evolution and domestication: current knowledge and implications for bio-inspired genome editing.

机构信息

Institut Jacques Monod, CNRS, UMR 7592, Université Paris Diderot, 75013 Paris, France

Department of Biological Sciences, The George Washington University, Washington, DC 20052, USA.

出版信息

J Exp Biol. 2020 Feb 7;223(Pt Suppl 1):jeb208934. doi: 10.1242/jeb.208934.

Abstract

One promising application of CRISPR/Cas9 is to create targeted mutations to introduce traits of interest into domesticated organisms. However, a major current limitation for crop and livestock improvement is to identify the precise genes and genetic changes that must be engineered to obtain traits of interest. Here, we discuss the advantages of bio-inspired genome editing, i.e. the engineered introduction of natural mutations that have already been associated with traits of interest in other lineages (breeds, populations or species). To obtain a landscape view of potential targets for genome editing, we used Gephebase (www.gephebase.org), a manually curated database compiling published data about the genes responsible for evolutionary and domesticated changes across eukaryotes, and examined the >1200 mutations that have been identified in the coding regions of more than 700 genes in animals, plants and yeasts. We observe that our genetic knowledge is relatively important for certain traits, such as xenobiotic resistance, and poor for others. We also note that protein-null alleles, often owing to nonsense and frameshift mutations, represent a large fraction of the known loci of domestication (42% of identified coding mutations), compared with intraspecific (27%) and interspecific evolution (11%). Although this trend may be subject to detection, publication and curation biases, it is consistent with the idea that breeders have selected large-effect mutations underlying adaptive traits in specific settings, but that these mutations and associated phenotypes would not survive the vagaries of changing external and internal environments. Our compilation of the loci of evolution and domestication uncovers interesting options for bio-inspired and transgene-free genome editing.

摘要

CRISPR/Cas9 的一个有前景的应用是创建靶向突变,将感兴趣的性状引入驯化生物。然而,目前作物和牲畜改良的一个主要限制是确定必须进行工程改造的精确基因和遗传变化,以获得感兴趣的性状。在这里,我们讨论了生物启发基因组编辑的优势,即引入已经与其他谱系(品种、种群或物种)中感兴趣的性状相关的天然突变。为了获得基因组编辑的潜在目标的景观视图,我们使用了 Gephebase(www.gephebase.org),这是一个人工整理的数据库,其中包含了有关负责真核生物进化和驯化变化的基因的已发表数据,并且检查了在动物、植物和酵母中超过 700 个基因的编码区中已经鉴定出的 >1200 个突变。我们观察到,我们的遗传知识对于某些性状相对重要,例如对异源生物的抗性,而对于其他性状则较差。我们还注意到,蛋白质无效等位基因,通常由于无义和移码突变,代表了驯化过程中已知位点的很大一部分(已鉴定编码突变的 42%),与种内(27%)和种间进化(11%)相比。尽管这种趋势可能受到检测、发表和整理偏差的影响,但它与以下观点一致,即饲养员在特定环境下选择了适应性性状的大效应突变,但这些突变和相关表型不会在不断变化的外部和内部环境中存活下来。我们对进化和驯化位点的汇编揭示了生物启发和无转基因基因组编辑的有趣选择。

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