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按需序列修饰:用于植物精确基因编辑的搜索和替换工具。

Sequence modification on demand: search and replace tools for precise gene editing in plants.

机构信息

Inari Agriculture, Inc., Cambridge, MA, USA.

出版信息

Transgenic Res. 2021 Aug;30(4):353-379. doi: 10.1007/s11248-021-00253-y. Epub 2021 Jun 4.

Abstract

Until recently, our ability to generate allelic diversity in plants was limited to introduction of variants from domesticated and wild species by breeding via uncontrolled recombination or the use of chemical and physical mutagens-processes that are lengthy and costly or lack specificity, respectively. Gene editing provides a faster and more precise way to create new variation, although its application in plants has been dominated by the creation of short insertion and deletion mutations leading to loss of gene function, mostly due to the dependence of editing outcomes on DNA repair pathway choices intrinsic to higher eukaryotes. Other types of edits such as point mutations and precise and pre-designed targeted sequence insertions have rarely been implemented, despite providing means to modulate the expression of target genes or to engineer the function and stability of their protein products. Several advancements have been developed in recent years to facilitate custom editing by regulation of repair pathway choices or by taking advantage of alternative types of DNA repair. We have seen the advent of novel gene editing tools that are independent of DNA double-strand break repair, and methods completely independent of host DNA repair processes are being increasingly explored. With the aim to provide a comprehensive review of the state-of-the-art methodology for allele replacement in plants, I discuss the adoption of these improvements for plant genome engineering.

摘要

直到最近,我们在植物中产生等位基因多样性的能力还仅限于通过不受控制的重组或使用化学和物理诱变剂来引入来自驯化和野生物种的变体,这些过程分别耗时且昂贵,或者缺乏特异性。基因编辑提供了一种更快、更精确的创造新变异的方法,尽管其在植物中的应用主要集中在产生导致基因功能丧失的短插入和缺失突变上,这主要是由于编辑结果取决于高等真核生物固有的 DNA 修复途径选择。尽管提供了调节靶基因表达或工程化其蛋白质产物的功能和稳定性的手段,但其他类型的编辑,如点突变和精确且预先设计的靶向序列插入,很少被实施。近年来,已经开发了几种进展来促进通过调节修复途径选择或利用替代类型的 DNA 修复来进行定制编辑。我们已经看到了新型基因编辑工具的出现,这些工具不依赖于 DNA 双链断裂修复,并且越来越多地探索完全独立于宿主 DNA 修复过程的方法。为了全面回顾植物中等位基因替换的最新方法学,我讨论了这些改进在植物基因组工程中的应用。

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