Transient reprogramming of crop plants for agronomic performance

春化 种质资源 生物技术 植物育种 生物 植物病毒 重编程 计算生物学 农学 基因 遗传学 病毒
作者
Stefano Torti,René Schlesier,Anka Thümmler,Doreen Bartels,Patrick Römer,Birgit Koch,Stefan Werner,Vinay Panwar,K. Kanyuka,Nicolaus von Wirén,Jonathan D. G. Jones,Gerd Hause,Anatoli Giritch,Yuri Gleba
出处
期刊:Nature plants [Springer Nature]
卷期号:7 (2): 159-171 被引量:68
标识
DOI:10.1038/s41477-021-00851-y
摘要

The development of a new crop variety is a time-consuming and costly process due to the reliance of plant breeding on gene shuffling to introduce desired genes into elite germplasm, followed by backcrossing. Here, we propose alternative technology that transiently targets various regulatory circuits within a plant, leading to operator-specified alterations of agronomic traits, such as time of flowering, vernalization requirement, plant height or drought tolerance. We redesigned techniques of gene delivery, amplification and expression around RNA viral transfection methods that can be implemented on an industrial scale and with many crop plants. The process does not involve genetic modification of the plant genome and is thus limited to a single plant generation, is broadly applicable, fast, tunable and versatile, and can be used throughout much of the crop cultivation cycle. The RNA-based reprogramming may be especially useful in plant pathogen pandemics but also for commercial seed production and for rapid adaptation of orphan crops. The implementation of RNA viral transfection technology in multiple plant species allows transient expression or silencing of specific regulatory genes in various regulatory circuits to rapidly fine-tune multiple traits without modifying the genome.
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