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Potential of promotion of alleles by genome editing to improve quantitative traits in livestock breeding programs

机译:通过基因组编辑促进等位基因改善牲畜育种计划中数量性状的潜力

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Background Genome editing (GE) is a method that enables specific nucleotides in the genome of an individual to be changed. To date, use of GE in livestock has focussed on simple traits that are controlled by a few quantitative trait nucleotides (QTN) with large effects. The aim of this study was to evaluate the potential of GE to improve quantitative traits that are controlled by many QTN, referred to here as promotion of alleles by genome editing (PAGE). Methods Multiple scenarios were simulated to test alternative PAGE strategies for a quantitative trait. They differed in (i) the number of edits per sire (0 to 100), (ii) the number of edits per generation (0 to 500), and (iii) the extent of use of PAGE (i.e. editing all sires or only a proportion of them). The base line scenario involved selecting individuals on true breeding values (i.e., genomic selection only (GS only)-genomic selection with perfect accuracy) for several generations. Alternative scenarios complemented this base line scenario with PAGE (GS?+?PAGE). The effect of different PAGE strategies was quantified by comparing response to selection, changes in allele frequencies, the number of distinct QTN edited, the sum of absolute effects of the edited QTN per generation, and inbreeding. Results Response to selection after 20 generations was between 1.08 and 4.12 times higher with GS?+?PAGE than with GS only. Increases in response to selection were larger with more edits per sire and more sires edited. When the total resources for PAGE were limited, editing a few sires for many QTN resulted in greater response to selection and inbreeding compared to editing many sires for a few QTN. Between the scenarios GS only and GS?+?PAGE, there was little difference in the average change in QTN allele frequencies, but there was a major difference for the QTN with the largest effects. The sum of the effects of the edited QTN decreased across generations. Conclusions This study showed that PAGE has great potential for application in livestock breeding programs, but inbreeding needs to be managed.
机译:背景基因组编辑(GE)是一种可以更改个体基因组中特定核苷酸的方法。迄今为止,GE在牲畜中的使用已集中在受几个数量性状核苷酸(QTN)控制且效果显着的简单性状上。这项研究的目的是评估GE改善许多QTN所控制的定量性状的潜力,此处称为通过基因组编辑(PAGE)促进等位基因。方法模拟了多种情况,以测试定量特征的替代PAGE策略。它们的区别在于(i)每个父亲的编辑数量(0到100),(ii)每个世代的编辑数量(0到500)以及(iii)PAGE的使用范围(即编辑所有父亲或仅父亲)其中的一部分)。基线方案涉及根据真正的育种值(即仅基因组选择(仅GS)-完美精确的基因组选择)选择个体数代。备选方案通过PAGE(GS?+?PAGE)补充了此基准方案。通过比较对选择的反应,等位基因频率的变化,编辑的不同QTN的数量,每代编辑的QTN的绝对效应之和以及近交,可以量化不同PAGE策略的效果。结果20代后,对GS?+βPAGE的选择反应比仅对GS的反应高1.08到4.12倍。对选择的反应增加的幅度更大,每个父本进行更多编辑,并且编辑更多父本。当用于PAGE的总资源有限时,与为多个QTN编辑多个父亲相比,为多个QTN编辑几个父亲将对选择和近交产生更大的响应。在仅GS场景和GS?+?PAGE场景之间,QTN等位基因频率的平均变化几乎没有差异,但对QTN影响最大的则存在较大差异。经过编辑的QTN的效果总和在几代人之后都下降了。结论这项研究表明PAGE在牲畜育种计划中具有巨大的应用潜力,但近交需要加以管理。

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