裂解和拯救配子杀手为植物基因驱动创造条件

IF 15.8 1区 生物学 Q1 PLANT SCIENCES Nature Plants Pub Date : 2024-06-17 DOI:10.1038/s41477-024-01701-3
Georg Oberhofer, Michelle L. Johnson, Tobin Ivy, Igor Antoshechkin, Bruce A. Hay
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摘要

基因驱动元件可促进相关性状的传播,并可用于改变野生种群的组成或命运。裂解与拯救(ClvR)驱动元件位于固定的染色体位置,包括DNA序列修饰酶(如Cas9/gRNAs),可破坏重要基因的内源版本和重要基因的抗裂解重编码版本。ClvR 通过创造条件进行传播,在这种条件下,缺乏 ClvR 的生物会因为缺乏功能性的重要基因版本而死亡。在这里,我们通过杀死未能继承针对重要基因 YKT61 的 ClvR 的配子,证明了拟南芥中 ClvR 基因驱动的基本特征。没有观察到可减缓或阻止驱动的抗性等位基因。建模结果表明,植物的 ClvR 对某些失效模式具有稳健性,可用于快速驱动种群改变或抑制。本文讨论了可能的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Cleave and Rescue gamete killers create conditions for gene drive in plants
Gene drive elements promote the spread of linked traits and can be used to change the composition or fate of wild populations. Cleave and Rescue (ClvR) drive elements sit at a fixed chromosomal position and include a DNA sequence-modifying enzyme such as Cas9/gRNAs that disrupts endogenous versions of an essential gene and a recoded version of the essential gene resistant to cleavage. ClvR spreads by creating conditions in which those lacking ClvR die because they lack functional versions of the essential gene. Here we demonstrate the essential features of the ClvR gene drive in the plant Arabidopsis thaliana through killing of gametes that fail to inherit a ClvR that targets the essential gene YKT61. Resistant alleles, which can slow or prevent drive, were not observed. Modelling shows plant ClvRs are robust to certain failure modes and can be used to rapidly drive population modification or suppression. Possible applications are discussed. Gene drive elements spread linked traits and can be used to change the composition or fate of populations. Here Oberhofer and colleagues engineer gene drive in the plant Arabidopsis thaliana. Applications include genetic biocontrol and conservation.
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来源期刊
Nature Plants
Nature Plants PLANT SCIENCES-
CiteScore
25.30
自引率
2.20%
发文量
196
期刊介绍: Nature Plants is an online-only, monthly journal publishing the best research on plants — from their evolution, development, metabolism and environmental interactions to their societal significance.
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