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CRISPR/Cpf1 多重基因组编辑系统提高了家蚕对 BmNPV 的耐受性。

CRISPR/Cpf1 multiplex genome editing system increases silkworm tolerance to BmNPV.

机构信息

State Key Laboratory of Silkworm Genome Biology, Southwest University, Chongqing 400716, China.

State Key Laboratory of Silkworm Genome Biology, Southwest University, Chongqing 400716, China; Key Laboratory of Sericultural Biology and Genetic Breeding, Ministry of Agriculture and Rural Affairs, Southwest University, Chongqing 400716, China.

出版信息

Int J Biol Macromol. 2022 Mar 1;200:566-573. doi: 10.1016/j.ijbiomac.2022.01.109. Epub 2022 Jan 20.

Abstract

The CRISPR/Cas9 genome editing technology is now widely used in insect studies, but the use of CRISPR can be further increased to improve insect genome engineering. We established a direct mutation at multiple loci in several genes simultaneously used by CRISPR/Cpf1 multiplex genome editing technology to target the BmNPV genome. We constructed a transgenic line that can target the BmNPV ie-1, gp64, and DNApoly genes simultaneously, and hybridized this line with an FnCpf1 transgenic line to obtain an FnCpf1 × gNPVM binary hybrid expression system and to activate the FnCpf1 gene editing system. We showed that the multiple gene editing system introduced deletions, mutations, and insertions at three target sites, and that it did not affect the economic traits of transgenic silkworm lines. The antiviral response of multiplexed genome editing lines increased significantly, and viral gene transcription and replication were significantly affected in the transgenic silkworm lines. This study provides innovative resistance materials for silkworm breeding and also provides a simplified platform for efficient insect multi genome engineering and genetic operation.

摘要

CRISPR/Cas9 基因组编辑技术现已广泛应用于昆虫研究,但通过使用 CRISPR 可以进一步提高昆虫基因组工程的效率。我们利用 CRISPR/Cpf1 多重基因组编辑技术,在多个基因的多个位点建立了直接突变,从而靶向 BmNPV 基因组。我们构建了一个能够同时靶向 BmNPV ie-1、gp64 和 DNApoly 基因的转基因品系,并将该品系与 FnCpf1 转基因品系杂交,获得了 FnCpf1×gNPVM 双杂交表达系统,并激活了 FnCpf1 基因编辑系统。我们发现,该多基因编辑系统在三个靶位点上引入了缺失、突变和插入,并且不影响转基因家蚕系的经济性状。多重基因组编辑系的抗病毒反应显著增强,转基因家蚕系中病毒基因的转录和复制受到显著影响。本研究为家蚕育种提供了创新性的抗性材料,同时也为高效昆虫多基因组工程和遗传操作提供了简化的平台。

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