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利用水稻原生质体中的瞬时基因表达对脱落酸信号转导组分进行功能表征与重组

Functional characterization and reconstitution of ABA signaling components using transient gene expression in rice protoplasts.

作者信息

Kim Namhyo, Moon Seok-Jun, Min Myung K, Choi Eun-Hye, Kim Jin-Ae, Koh Eun Y, Yoon Insun, Byun Myung-Ok, Yoo Sang-Dong, Kim Beom-Gi

机构信息

Molecular Breeding Division, National Academy of Agricultural Science, Rural Development Administration Jeonju, South Korea.

Department of Life Sciences, Korea University Seoul, South Korea.

出版信息

Front Plant Sci. 2015 Aug 5;6:614. doi: 10.3389/fpls.2015.00614. eCollection 2015.

Abstract

The core components of ABA-dependent gene expression signaling have been identified in Arabidopsis and rice. This signaling pathway consists of four major components; group A OsbZIPs, SAPKs, subclass A OsPP2Cs and OsPYL/RCARs in rice. These might be able to make thousands of combinations through interaction networks resulting in diverse signaling responses. We tried to characterize those gene functions using transient gene expression for rice protoplasts (TGERP) because it is instantaneous and convenient system. Firstly, in order to monitor the ABA signaling output, we developed reporter system named pRab16A-fLUC which consists of Rab16A promoter of rice and luciferase gene. It responses more rapidly and sensitively to ABA than pABRC3-fLUC that consists of ABRC3 of HVA1 promoter in TGERP. We screened the reporter responses for over-expression of each signaling components from group A OsbZIPs to OsPYL/RCARs with or without ABA in TGERP. OsbZIP46 induced reporter most strongly among OsbZIPs tested in the presence of ABA. SAPKs could activate the OsbZIP46 even in the ABA independence. Subclass A OsPP2C6 and -8 almost completely inhibited the OsbZIP46 activity in the different degree through the SAPK9. Lastly, OsPYL/RCAR2 and -5 rescued the OsbZIP46 activity in the presence of SAPK9 and OsPP2C6 dependent on ABA concentration and expression level. By using TGERP, we could characterize successfully the effects of ABA dependent gene expression signaling components in rice. In conclusion, TGERP represents very useful technology to study systemic functional genomics in rice or other monocots.

摘要

ABA依赖型基因表达信号传导的核心组件已在拟南芥和水稻中得到鉴定。该信号通路由四个主要组件组成;水稻中的A组OsbZIPs、SAPKs、A亚类OsPP2Cs和OsPYL/RCARs。这些组件可能通过相互作用网络形成数千种组合,从而产生多样的信号反应。我们尝试利用水稻原生质体瞬时基因表达(TGERP)来表征这些基因的功能,因为它是一种即时且便捷的系统。首先,为了监测ABA信号输出,我们开发了一个名为pRab16A-fLUC的报告系统,该系统由水稻的Rab16A启动子和荧光素酶基因组成。在TGERP中,它对ABA的反应比由HVA1启动子的ABRC3组成的pABRC3-fLUC更快、更敏感。我们在TGERP中筛选了在有或无ABA情况下从A组OsbZIPs到OsPYL/RCARs的每个信号组件过表达的报告反应。在ABA存在的情况下,OsbZIP46在测试的OsbZIPs中诱导报告基因的能力最强。即使在不依赖ABA的情况下,SAPKs也能激活OsbZIP46。A亚类OsPP2C6和-8通过SAPK9在不同程度上几乎完全抑制了OsbZIP46的活性。最后,OsPYL/RCAR2和-5在依赖ABA浓度和表达水平的情况下,在有SAPK9和OsPP2C6存在时挽救了OsbZIP46的活性。通过使用TGERP,我们成功地表征了水稻中ABA依赖型基因表达信号组件的作用。总之,TGERP是研究水稻或其他单子叶植物系统功能基因组学的非常有用的技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/152b/4524894/cf57eba26791/fpls-06-00614-g001.jpg

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