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高效的桉树基因组编辑遗传转化方法。

Efficient genetic transformation method for Eucalyptus genome editing.

机构信息

College of Biological and Food Engineering, Guangdong University of Petrochemical Technology, Maoming, Guangdong, China.

The Key Laboratory of Ecology and Biological Resources in Yarkand Oasis at Colleges & Universities under the Department of Education of Xinjiang Uygur Autonomous Region, Kashi University, Kashi City, Xinjiang Uygur Autonomous Region, China.

出版信息

PLoS One. 2021 May 24;16(5):e0252011. doi: 10.1371/journal.pone.0252011. eCollection 2021.

Abstract

Plantation forestry of Eucalyptus urophylla × Eucalyptus grandis supplies high-quality raw material for pulp, paper, wood, and energy and thereby reduces the pressures on native forests and their associated biodiversity. Nevertheless, owing to the heterozygosity of the E. urophylla × E. grandis genetic background, germplasm improvement by crossbreeding tends to be inefficient. As an alternative approach, genetic engineering of Eucalyptus can be used to effectively improve germplasm resources. From a strategic standpoint, increasing the plantation productivity and wood quality by transgenic technology has become increasingly important for forest industry. In this study, we established a fluorescence labelling method using CRISPR/Cas9 technology to obtain positive transformed progenies. The positive transformed progenies were easily obtained from the genetically modified population via fluorescence screening. This system can be used as a plant genome site-specific editing tool and may be useful for improving Eucalyptus genetic resources.

摘要

桉树人工林为纸浆、纸张、木材和能源提供了高质量的原材料,从而减轻了对原生林及其相关生物多样性的压力。然而,由于杂交桉树遗传背景的杂合性,通过杂交进行种源改良往往效率不高。作为一种替代方法,可以利用基因工程对桉树进行遗传改良,从而有效地改良种源资源。从战略角度来看,通过转基因技术提高人工林生产力和木材质量,对林业产业变得越来越重要。在本研究中,我们利用 CRISPR/Cas9 技术建立了一种荧光标记方法,获得了阳性转化后代。通过荧光筛选,很容易从遗传转化群体中获得阳性转化后代。该系统可作为植物基因组定点编辑工具,可能有助于改良桉树遗传资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/18e8/8143419/a30325c82a33/pone.0252011.g001.jpg

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