通过改进的形态发生调节剂辅助转化协议实现热带玉米品系的基因组编辑

IF 4.9 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
José Hernandes-Lopes, Maísa Siqueira Pinto, Letícia Rios Vieira, Patrícia Brant Monteiro, Sophia V. Gerasimova, Juliana Vieira Almeida Nonato, Maria Helena Faustinoni Bruno, Alexander Vikhorev, Fernanda Rausch-Fernandes, I. Gerhardt, L. Pauwels, Paulo Arruda, R. A. Dante, J. Yassitepe
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引用次数: 0

摘要

许多玉米(Zea mays)基因型表现出对传统遗传转化方案的抗拒,这对基因组编辑(GE)在这一主要作物物种中的大规模应用构成了重大挑战。虽然一些玉米基因型被广泛用于遗传转化,但它们被证明不适合在田间试验或商业应用中进行农艺试验。尽管热带地区的玉米产量占相当大的比例,但适应温带地区的可转化玉米品系的优势加剧了这一挑战。形态发生调控因子(MRs)的异位表达是克服低效率和基因型依赖的一种有前途的方法,旨在实现玉米的“通用”转化和转基因能力。在这里,我们报告了利用先前优化的B104温带自交系的基于mr的农杆菌介导转化方案,成功地对农艺相关的热带玉米品系进行了转基因。为此,我们使用了基于CRISPR/ cas9的构建,旨在敲除VIRESCENT YELLOW-LIKE (VYL)基因,从而产生易于识别的表型。在B104和3个热带品系制备的原生质体中证实了VYL突变,无论其中两个热带品系的VYL靶位点的种子区是否存在单核苷酸多态性(SNP)。五分之三的热带线路可以改造,效率高达6.63%。值得注意的是,97%的恢复事件在目标位点呈现索引,这些索引由下一代继承。我们观察到基于CRISPR/ cas9的构建体对VYL相似的VYL- modifier具有脱靶活性,这可能部分归因于WUSCHEL (WUS) MR.的表达。我们的研究结果证明了相关热带玉米品系的有效基因改造,扩大了这种主要作物基因型的可用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enabling genome editing in tropical maize lines through an improved, morphogenic regulator-assisted transformation protocol
The recalcitrance exhibited by many maize (Zea mays) genotypes to traditional genetic transformation protocols poses a significant challenge to the large-scale application of genome editing (GE) in this major crop species. Although a few maize genotypes are widely used for genetic transformation, they prove unsuitable for agronomic tests in field trials or commercial applications. This challenge is exacerbated by the predominance of transformable maize lines adapted to temperate geographies, despite a considerable proportion of maize production occurring in the tropics. Ectopic expression of morphogenic regulators (MRs) stands out as a promising approach to overcome low efficiency and genotype dependency, aiming to achieve ’universal’ transformation and GE capabilities in maize. Here, we report the successful GE of agronomically relevant tropical maize lines using a MR-based, Agrobacterium-mediated transformation protocol previously optimized for the B104 temperate inbred line. To this end, we used a CRISPR/Cas9-based construct aiming at the knockout of the VIRESCENT YELLOW-LIKE (VYL) gene, which results in an easily recognizable phenotype. Mutations at VYL were verified in protoplasts prepared from B104 and three tropical lines, regardless of the presence of a single nucleotide polymorphism (SNP) at the seed region of the VYL target site in two of the tropical lines. Three out of five tropical lines were amenable to transformation, with efficiencies reaching up to 6.63%. Remarkably, 97% of the recovered events presented indels at the target site, which were inherited by the next generation. We observed off-target activity of the CRISPR/Cas9-based construct towards the VYL paralog VYL-MODIFIER, which could be partly due to the expression of the WUSCHEL (WUS) MR. Our results demonstrate efficient GE of relevant tropical maize lines, expanding the current availability of GE-amenable genotypes of this major crop.
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CiteScore
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