Taoka Ken-Ichiro, Shimatani Zenpei, Yamaguchi Koji, Ogawa Mana, Saitoh Hiromi, Ikeda Yoichi, Akashi Hiroko, Terada Rie, Kawasaki Tsutomu, Tsuji Hiroyuki
Kihara Institute for Biological Research, Yokohama City University, Kanagawa 244-0813, Japan.
Graduate School of Science, Technology and Innovation, Kobe University, Hyogo 657-8501, Japan.
Plant Biotechnol (Tokyo). 2021 Mar 25;38(1):89-99. doi: 10.5511/plantbiotechnology.20.1209a.
Luciferases have been widely utilized as sensitive reporters to monitor gene expression and protein-protein interactions. Compared to firefly luciferase (Fluc), a recently developed luciferase, Nanoluciferase (NanoLuc or Nluc), has several superior properties such as a smaller size and stronger luminescence activity. We compared the reporter properties of Nluc and Fluc in rice (). In both plant-based two-hybrid and split luc complementation (SLC) assays, Nluc activity was detected with higher sensitivity and specificity than that with Fluc. To apply Nluc to research involving the photoperiodic regulation of flowering, we made a knock-in rice plant in which the Nluc coding region was inserted in-frame with the gene, a target of the rice florigen Hd3a. Strong Nluc activity in response to Hd3a, and in response to change in day length, was detected in rice protoplasts and in a single shoot apical meristem, respectively. Our results indicate that Nluc assay systems will be powerful tools to monitor gene expression and protein-protein interaction in plant research.
荧光素酶已被广泛用作灵敏的报告基因,以监测基因表达和蛋白质-蛋白质相互作用。与萤火虫荧光素酶(Fluc)相比,最近开发的一种荧光素酶——纳米荧光素酶(NanoLuc或Nluc)具有一些优越的特性,如更小的尺寸和更强的发光活性。我们比较了Nluc和Fluc在水稻中的报告基因特性。在基于植物的双杂交和分裂荧光素酶互补(SLC)试验中,检测到Nluc活性的灵敏度和特异性均高于Fluc。为了将Nluc应用于涉及开花光周期调控的研究,我们构建了一个敲入水稻植株,其中Nluc编码区与水稻成花素Hd3a的靶基因—— 基因读码框内插入。分别在水稻原生质体和单个茎尖分生组织中检测到了对Hd3a以及对日长变化有强烈反应的Nluc活性。我们的结果表明,Nluc检测系统将成为植物研究中监测基因表达和蛋白质-蛋白质相互作用的有力工具。