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Cre-lox 基因开关在限制水稻绿色组织中 Cry 表达中的应用。

Application of Cre-lox gene switch to limit the Cry expression in rice green tissues.

机构信息

Institute of Crop Science, College of Agriculture and Biotechnology, Zhejiang University, Yu-Hang-Tang Road No 866, Hangzhou, 310058, China.

State Key Laboratory of Rice Biology, China National Rice Research Institute. Ti-Yu-Chang Road No 359, Hangzhou, 310006, China.

出版信息

Sci Rep. 2017 Nov 6;7(1):14505. doi: 10.1038/s41598-017-14679-0.

Abstract

The presence of genetically modified (GM) protein in the endosperm is important information for the public when considering the biological safety of transgenic rice. To limit the expression of GM proteins to rice green tissues, we developed a modified Cre-lox gene switch using two cassettes named KEY and LOCK. KEY contains a nuclear-localized Cre recombinase driven by the green-tissue-specific promoter rbcS. LOCK contains a Nos terminator (NosT), which is used to block the expression of the gene of interest (GOI), bounded by two loxP sites. When KEY and LOCK are pyramided into hybrid rice, a complete gene switch system is formed. The Cre recombinase from KEY excises loxP-NosT in LOCK and unlocks the GOI in green tissues but keeps it locked in the endosperm. This regulatory effect was demonstrated by eYFP and Bt expression assays. The presence of eYFP and Cre were confirmed in the leaf, sheath, stem, and glume but not in the root, anther or seed of the gene-switch-controlled eYFP hybrids. Meanwhile, gene switch-controlled Bt hybrid rice not only confined the expression of Bt protein to the green tissues but also showed high resistance to striped stem borers and leaffolders.

摘要

当考虑转基因水稻的生物安全性时,胚乳中存在转基因蛋白是公众的重要信息。为了将 GM 蛋白的表达限制在水稻绿色组织中,我们使用两个名为 KEY 和 LOCK 的盒构建了改良的 Cre-lox 基因开关。KEY 包含一个由绿色组织特异性启动子 rbcS 驱动的核定位 Cre 重组酶。LOCK 包含一个 Nos 终止子(NosT),用于阻止目的基因(GOI)的表达,该基因由两个 loxP 位点限定。当 KEY 和 LOCK 被叠加到杂交水稻中时,一个完整的基因开关系统就形成了。来自 KEY 的 Cre 重组酶切除 LOCK 中的 loxP-NosT,并在绿色组织中解锁 GOI,但在胚乳中保持锁定。这一调控效应通过 eYFP 和 Bt 表达分析得到证实。在基因开关控制的 eYFP 杂交种的叶片、叶鞘、茎和颖片中检测到 eYFP 和 Cre 的存在,但在根、花药或种子中未检测到。同时,基因开关控制的 Bt 杂交水稻不仅将 Bt 蛋白的表达限制在绿色组织中,而且对条螟和稻纵卷叶螟表现出高抗性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ae4/5673937/401625e7c2b5/41598_2017_14679_Fig1_HTML.jpg

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