落叶松高效CRISPR-Cas基因组编辑系统的构建及活性评价

IF 6.2 1区 农林科学 Q1 HORTICULTURE
Xuelian Zheng, Lei Ding, Guanqin Liu, Jiong Guo, Zhe Zhang, Jingru Zhang, Yunjin Pang, Xu Tang, Qiurong Ren, Binglin Liu, Lan Huang, Tao Zhang, Yong Zhang
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引用次数: 0

摘要

CRISPR/Cas系统在植物物种中得到了广泛应用。然而,由于落叶松(Larix kaempferi, Lamb)的生命周期长、遗传背景复杂、基因组杂合度高、稳定转化困难等原因,基因组编辑在落叶松(Larix kaempferi)中的研究尚未深入。卡尔)。在这项研究中,我们评估了一种在落叶松中利用内源性启动子的高效CRISPR/Cas基因组编辑系统。对落叶松原生质体制备和转化的关键参数进行了优化。结果表明,该工艺实现了90%以上的活性细胞和40%以上的瞬时转化效率,满足了基因编辑系统评估的要求。利用整合的全基因组和转录组测序分析,我们筛选了高表达的mRNA转录本,并克隆了41个候选启动子。基于原生质体瞬时表达检测,我们在落叶松中发现了一个高表达的内源启动子,命名为LarPE004。我们比较了larpe004驱动的单转录单位CRISPR-Cas9 (STU-Cas9)和两个转录单位CRISPR-Cas9 (tu - cas9)系统的单基因和多基因敲除能力。我们的研究结果表明,LarPE004::STU-Cas9系统比LarPE004:: tu - cas9系统效率更高,并且显著优于CaMV 35S和zmubi1驱动的STU-Cas9系统。此外,LarPE004::STU-Cas9系统在落叶松中显示出更高的多基因编辑能力。基于Cas9突变蛋白SpRY的LarPE004:: stuu -SpRY系统促进了落叶松中各种PAM位点的高效编辑。结合这些发现,我们开发了LarPE004:: stuu - cas9,一个高效的用于单基因和多基因编辑的CRISPR-Cas9基因组系统,为落叶松功能基因组学研究和分子育种奠定了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development and activity evaluation of a highly efficient CRISPR-Cas genome editing system in larch
The CRISPR/Cas system has been widely used among plant species. However, due to the long life cycle, complex genetic background, high levels of genomic heterozygosity, and difficulties in stable transformation, genome editing has not been thoroughly explored in larch (Larix kaempferi (Lamb.) Carr.). In this study, we evaluated a highly efficient CRISPR/Cas genome editing system in larch that utilizes endogenous promoters. We optimized the critical parameters in larch protoplast preparation and transformation. As a result, this process achieved more than 90% active cells and a transient transformation efficiency of 40%, meeting the requirements for gene editing system evaluation. Using integrated whole-genome and transcriptome sequencing analysis, we screened highly expressed mRNA transcripts and cloned 41 candidate promoters. Based on protoplast transient expression detection, we identified a highly expressed endogenous promoter in larch, designated LarPE004. We compared the single and multiple gene knockout capabilities of the LarPE004-driven single transcription unit CRISPR-Cas9 (STU-Cas9) and two transcription unit CRISPR-Cas9 (TTU-Cas9) systems. Our findings showed that the LarPE004::STU-Cas9 system was more efficient than the LarPE004::TTU-Cas9 system and significantly outperformed the CaMV 35S- and ZmUbi1-driven STU-Cas9 systems. Moreover, the LarPE004::STU-Cas9 system demonstrated improved capabilities for multiple gene editing in larch. The LarPE004::STU-SpRY system based on Cas9 mutant protein SpRY facilitated the efficient editing of various PAM sites in larch. Combining these findings, we developed LarPE004::STU-Cas9, an efficient CRISPR-Cas9 genome system for single and multiple gene editing, establishing a foundation for functional genomics research and molecular breeding in larch.
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来源期刊
Horticultural Plant Journal
Horticultural Plant Journal Environmental Science-Ecology
CiteScore
9.60
自引率
14.00%
发文量
293
审稿时长
33 weeks
期刊介绍: Horticultural Plant Journal (HPJ) is an OPEN ACCESS international journal. HPJ publishes research related to all horticultural plants, including fruits, vegetables, ornamental plants, tea plants, and medicinal plants, etc. The journal covers all aspects of horticultural crop sciences, including germplasm resources, genetics and breeding, tillage and cultivation, physiology and biochemistry, ecology, genomics, biotechnology, plant protection, postharvest processing, etc. Article types include Original research papers, Reviews, and Short communications.
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