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极早期冠状病毒处理介导的家蚕卵人工孵化及滞育家蚕品系的种系转化

Very Early Corona Treatment-Mediated Artificial Incubation of Silkworm Eggs and Germline Transformation of Diapause Silkworm Strains.

作者信息

Zhang Yu-Li, Huang Yang, Wang Ping-Yang, Li Qiang, Bi Li-Hui, Zhao Ai-Chun, Xiang Zhong-Huai, Long Ding-Pei

机构信息

Sericultural Research Institute, Guangxi Zhuang Autonomous Region, Nanning, China.

State Key Laboratory of Silkworm Genome Biology, Key Laboratory for Sericulture Functional Genomics and Biotechnology of Agricultural Ministry, Southwest University, Chongqing, China.

出版信息

Front Bioeng Biotechnol. 2022 Feb 11;10:843543. doi: 10.3389/fbioe.2022.843543. eCollection 2022.

Abstract

Diapause is an important biological characteristic for many insect species to adapt to adverse environmental conditions and maintain the continuity of the race. Compared with the traditional hydrochloric acid or/and cold storage treatment methods, the artificial corona incubation technology of silkworm () eggs has many advantages including, the absence of pollution, easy operation and safety. However, this technology has not yet been applied in sericulture. In this study, we developed a novel artificial corona instrument to successfully disrupt the diapause of newly laid and refrigerated eggs from various Chinese and Japanese lineage silkworm strains. Subsequently, we invented a very early corona treatment (VECT) strategy to prevent the diapause of newly laid silkworm eggs within 4 h of oviposition. The hatching rates of the larvae were more than 95% in all diapause silkworm strains, which was comparable to the effect of the traditional HCl treatment strategy. In addition, we developed a combination strategy of VECT and pre-blastoderm microinjection and successfully created transgenic silkworms in various diapause strains. The results of the current study can aid in improving the corona artificial incubation technology and promote its application in sericulture.

摘要

滞育是许多昆虫物种适应不利环境条件并维持种族延续的重要生物学特性。与传统的盐酸或/和冷藏处理方法相比,家蚕()卵的人工电晕孵化技术具有无污染、操作简便和安全等诸多优点。然而,该技术尚未应用于养蚕业。在本研究中,我们开发了一种新型人工电晕仪器,成功打破了来自各种中国和日本品系家蚕品种的新产卵和冷藏卵的滞育。随后,我们发明了一种极早期电晕处理(VECT)策略,以在产卵后4小时内防止新产卵家蚕卵滞育。所有滞育家蚕品种的幼虫孵化率均超过95%,这与传统盐酸处理策略的效果相当。此外,我们开发了VECT与胚盘前期显微注射的组合策略,并成功在各种滞育品种中创建了转基因家蚕。当前研究结果有助于改进电晕人工孵化技术,并促进其在养蚕业中的应用。

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