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NbCORE 受体耗竭可大幅提高老年烟草原生质体转化效率。

Depletion of the NbCORE receptor drastically improves agroinfiltration productivity in older Nicotiana benthamiana plants.

机构信息

The Plant Chemetics Laboratory, Department of Biology, University of Oxford, Oxford, UK.

Beijing Academy of Agriculture and Forestry Sciences, Beijing, China.

出版信息

Plant Biotechnol J. 2023 Jun;21(6):1103-1105. doi: 10.1111/pbi.14037. Epub 2023 Mar 14.

Abstract

Nicotiana benthamiana is increasingly used for transient gene expression to produce antibodies, vaccines, and other pharmaceutical proteins but transient gene expression is low in fully developed, 6-8-week old plants. This low gene expression is thought to be caused by the perception of the cold shock protein (CSP) of Agrobacterium tumefaciens. The CSP receptor is contested because both NbCSPR and NbCORE have been claimed to perceive CSP. Here, we demonstrate that CSP perception is abolished in 6-week-old plants silenced for NbCORE but not NbCSPR. Importantly, older NbCORE-silenced plants support a highly increased level of GFP fluorescence and protein upon agroinfiltration. The drastic increase in transient protein production in NbCORE-depleted plants offers new opportunities for molecular farming, where older plants with larger biomass can now be used for efficient protein expression.

摘要

黄花烟用于瞬时基因表达生产抗体、疫苗和其他药物蛋白的应用越来越多,但在完全发育的、6-8 周龄的植物中,瞬时基因表达水平较低。这种低基因表达被认为是由于对根癌农杆菌冷休克蛋白(CSP)的感知。CSP 受体存在争议,因为 NbCSPR 和 NbCORE 都被认为能感知 CSP。在这里,我们证明在沉默 NbCORE 而不是 NbCSPR 的 6 周龄植物中,CSP 的感知被消除了。重要的是,沉默 NbCORE 的较老植物在农杆菌浸润后支持 GFP 荧光和蛋白的高度增加水平。在 NbCORE 耗尽的植物中,瞬时蛋白产量的急剧增加为分子农业提供了新的机会,现在可以使用具有更大生物量的较老植物进行高效的蛋白表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/24a3/11376884/1862250f5eb4/PBI-21-1103-g001.jpg

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