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高效CRISPR/Cas介导的春小麦和冬小麦品种定向诱变

Efficient CRISPR/Cas-Mediated Targeted Mutagenesis in Spring and Winter Wheat Varieties.

作者信息

Hahn Florian, Sanjurjo Loures Laura, Sparks Caroline A, Kanyuka Kostya, Nekrasov Vladimir

机构信息

Plant Sciences Department, Rothamsted Research, Harpenden AL5 2JQ, UK.

Department of Biointeractions and Crop Protection, Rothamsted Research, Harpenden AL5 2JQ, UK.

出版信息

Plants (Basel). 2021 Jul 19;10(7):1481. doi: 10.3390/plants10071481.

Abstract

CRISPR/Cas technology has recently become the molecular tool of choice for gene function studies in plants as well as crop improvement. Wheat is a globally important staple crop with a well annotated genome and there is plenty of scope for improving its agriculturally important traits using genome editing technologies, such as CRISPR/Cas. As part of this study we targeted three different genes in hexaploid wheat : in the spring cultivar Cadenza as well as and in winter cultivars Cezanne, Goncourt and Prevert. Primary transgenic lines carrying CRISPR/Cas-induced indels were successfully generated for all targeted genes. While BAK1 is an important regulator of plant immunity and development, Ta-eIF4E and Ta-eIF(iso)4E act as susceptibility (S) factors required for plant viruses from the family to complete their life cycle. We anticipate the resultant homozygous mutant lines will facilitate studies on the involvement of BAK1 in immune responses in wheat, while and mutant lines have the potential to become a source of resistance to wheat spindle streak mosaic virus (WSSMV) and wheat yellow mosaic virus (WYMV), both of which are important pathogens of wheat. As winter wheat varieties are generally less amenable to genetic transformation, the successful experimental methodology for transformation and genome editing in winter wheat presented in this study will be of interest to the research community working with this crop.

摘要

CRISPR/Cas技术最近已成为植物基因功能研究以及作物改良中首选的分子工具。小麦是全球重要的主粮作物,其基因组注释完善,利用CRISPR/Cas等基因组编辑技术改善其重要农艺性状有很大空间。作为本研究的一部分,我们在六倍体小麦中靶向了三个不同基因:在春小麦品种Cadenza中,以及在冬小麦品种Cezanne、Goncourt和Prevert中。针对所有靶向基因成功产生了携带CRISPR/Cas诱导的插入缺失的初级转基因系。BAK1是植物免疫和发育的重要调节因子,而Ta-eIF4E和Ta-eIF(iso)4E作为来自 家族的植物病毒完成其生命周期所需的感病(S)因子。我们预计,所得的纯合 突变系将有助于研究BAK1在小麦免疫反应中的作用,而 和 突变系有可能成为对小麦梭条斑花叶病毒(WSSMV)和小麦黄花叶病毒(WYMV)的抗性来源,这两种病毒都是小麦的重要病原体。由于冬小麦品种通常较难进行遗传转化,本研究中提出的冬小麦转化和基因组编辑的成功实验方法将引起从事这种作物研究的科学界的兴趣。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e17b/8309376/f9e96f2a4595/plants-10-01481-g001.jpg

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