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重组酶的病毒递送激活植物中可遗传的基因开关。

Viral delivery of recombinases activates heritable genetic switches in plants.

作者信息

Chamness James C, Cody Jon P, Cruz Anna J, Voytas Daniel F

机构信息

Department of Genetics, Cell Biology and Development, College of Biological Sciences, University of Minnesota, Minneapolis, MN 55108, USA.

Center for Precision Plant Genomics, University of Minnesota, Minneapolis, MN 55108, USA.

出版信息

Plant Physiol. 2025 Mar 1;197(3). doi: 10.1093/plphys/kiaf073. Epub 2025 Feb 21.

Abstract

Viral vectors provide an increasingly versatile platform for transformation-free reagent delivery to plants. RNA viral vectors can be used to induce gene silencing, overexpress proteins, or introduce gene editing reagents; however, they are often constrained by carrying capacity or restricted tropism in germline cells. Site-specific recombinases that catalyze precise genetic rearrangements are powerful tools for genome engineering that vary in size and, potentially, efficacy in plants. In this work, we show that viral vectors based on tobacco rattle virus (TRV) deliver and stably express four recombinases ranging in size from ∼0.6 to ∼1.5 kb and achieve simultaneous marker removal and reporter activation through targeted excision in transgenic Nicotiana benthamiana lines. TRV vectors with Cre, FLP, CinH, and Integrase13 efficiently mediated recombination in infected somatic tissue and led to heritable modifications at high frequency. An excision-activated Ruby reporter enabled simple and high-resolution tracing of infected cell lineages without the need for molecular genotyping. Together, our experiments broaden the scope of viral recombinase delivery and offer insights into infection dynamics that may be useful in developing future viral vectors.

摘要

病毒载体为向植物递送无需转化的试剂提供了一个日益通用的平台。RNA病毒载体可用于诱导基因沉默、过表达蛋白质或引入基因编辑试剂;然而,它们常常受到携带能力的限制,或者在生殖细胞中的靶向性有限。催化精确基因重排的位点特异性重组酶是基因组工程的强大工具,其大小各异,在植物中的功效也可能不同。在这项工作中,我们表明基于烟草脆裂病毒(TRV)的病毒载体能够递送并稳定表达四种大小在约0.6至约1.5 kb之间的重组酶,并通过在转基因本氏烟草品系中进行靶向切除实现同时去除标记和激活报告基因。携带Cre、FLP、CinH和整合酶13的TRV载体在受感染的体细胞组织中有效地介导了重组,并导致高频的可遗传修饰。一个切除激活的红宝石报告基因使得无需分子基因分型就能简单且高分辨率地追踪受感染的细胞谱系。总之,我们的实验拓宽了病毒重组酶递送的范围,并为感染动态提供了见解,这可能有助于开发未来的病毒载体。

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