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杨树中的无转基因基因组编辑

Transgene-free genome editing in poplar.

作者信息

Hoengenaert Lennart, Anders Chantal, Van Doorsselaere Jan, Vanholme Ruben, Boerjan Wout

机构信息

Department of Plant Biotechnology and Bioinformatics, Ghent University, Ghent, 9052, Belgium.

Center for Plant Systems Biology, VIB, Ghent, 9052, Belgium.

出版信息

New Phytol. 2025 Jul;247(1):224-232. doi: 10.1111/nph.20415. Epub 2025 Jan 22.

Abstract

Precise gene-editing methods are valuable tools to enhance genetic traits. Gene editing is commonly achieved via stable integration of a gene-editing cassette in the plant's genome. However, this technique is unfavorable for field applications, especially in vegetatively propagated plants, such as many commercial tree species, where the gene-editing cassette cannot be segregated away without breaking the genetic constitution of the elite variety. Here, we describe an efficient method for generating gene-edited Populus tremula × P. alba (poplar) trees without incorporating foreign DNA into its genome. Using Agrobacterium tumefaciens, we expressed a base-editing construct targeting CCoAOMT1 along with the ALS genes for positive selection on a chlorsulfuron-containing medium. About 50% of the regenerated shoots were derived from transient transformation and were free of T-DNA. Overall, 7% of the chlorsulfuron-resistant shoots were T-DNA free, edited in the CCoAOMT1 gene and nonchimeric. Long-read whole-genome sequencing confirmed the absence of any foreign DNA in the tested gene-edited lines. Additionally, we evaluated the CodA gene as a negative selection marker to eliminate lines that stably incorporated the T-DNA into their genome. Although the latter negative selection is not essential for selecting transgene-free, gene-edited Populus tremula × P. alba shoots, it may prove valuable for other genotypes or varieties.

摘要

精确的基因编辑方法是增强遗传性状的宝贵工具。基因编辑通常通过将基因编辑盒稳定整合到植物基因组中来实现。然而,这种技术不利于田间应用,特别是在无性繁殖植物中,例如许多商业树种,在这些树种中,不破坏优良品种的遗传构成就无法分离基因编辑盒。在此,我们描述了一种在不将外源DNA整合到其基因组的情况下生成基因编辑的欧洲山杨×银白杨(杨树)树的有效方法。利用根癌农杆菌,我们表达了靶向CCoAOMT1的碱基编辑构建体以及用于在含氯磺隆培养基上进行阳性选择的ALS基因。约50%的再生芽来自瞬时转化且不含T-DNA。总体而言,7%的抗氯磺隆芽不含T-DNA,在CCoAOMT1基因中经过编辑且无嵌合体。长读长全基因组测序证实了测试的基因编辑品系中不存在任何外源DNA。此外,我们评估了CodA基因作为阴性选择标记,以消除将T-DNA稳定整合到其基因组中的品系。尽管后一种阴性选择对于选择无转基因、基因编辑的欧洲山杨×银白杨芽不是必需的,但它可能对其他基因型或品种有价值。

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