Natural and artificial sources of genetic variation used in crop breeding: A baseline comparator for genome editing.

IF 4.9 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Frontiers in genome editing Pub Date : 2022-08-22 eCollection Date: 2022-01-01 DOI:10.3389/fgeed.2022.937853
Jorge Martínez-Fortún, Dylan W Phillips, Huw D Jones
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引用次数: 0

Abstract

Traditional breeding has successfully selected beneficial traits for food, feed, and fibre crops over the last several thousand years. The last century has seen significant technological advancements particularly in marker assisted selection and the generation of induced genetic variation, including over the last few decades, through mutation breeding, genetic modification, and genome editing. While regulatory frameworks for traditional varietal development and for genetic modification with transgenes are broadly established, those for genome editing are lacking or are still evolving in many regions. In particular, the lack of "foreign" recombinant DNA in genome edited plants and that the resulting SNPs or INDELs are indistinguishable from those seen in traditional breeding has challenged development of new legislation. Where products of genome editing and other novel breeding technologies possess no transgenes and could have been generated via traditional methods, we argue that it is logical and proportionate to apply equivalent legislative oversight that already exists for traditional breeding and novel foods. This review analyses the types and the scale of spontaneous and induced genetic variation that can be selected during traditional plant breeding activities. It provides a base line from which to judge whether genetic changes brought about by techniques of genome editing or other reverse genetic methods are indeed comparable to those routinely found using traditional methods of plant breeding.

Abstract Image

Abstract Image

用于作物育种的天然和人工遗传变异源:基因组编辑的基准比较。
过去几千年来,传统育种成功地为粮食、饲料和纤维作物选育出有益的性状。上个世纪,技术取得了长足进步,特别是在标记辅助选择和诱导遗传变异的产生方面,包括在过去几十年里,通过突变育种、基因改造和基因组编辑等手段。传统的品种培育和转基因的基因修饰的监管框架已广泛建立,但基因组编辑的监管框架在许多地区还缺乏或仍在发展中。特别是基因组编辑植物中缺乏 "外来 "重组 DNA,以及由此产生的 SNPs 或 INDELs 与传统育种中的 SNPs 或 INDELs 无法区分,这些都对新立法的制定提出了挑战。我们认为,如果基因组编辑和其他新型育种技术的产品不具有转基因,并且可以通过传统方法生成,那么对传统育种和新型食品适用已有的同等法律监督是合乎逻辑和适度的。本综述分析了传统植物育种活动中可选择的自发和诱导遗传变异的类型和规模。它为判断基因组编辑技术或其他反向遗传方法所带来的遗传变异是否与传统植物育种方法所发现的遗传变异具有可比性提供了一个基础。
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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CiteScore
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13 weeks
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