National Key Laboratory of Plant Molecular Genetics and National Center for Plant Gene Research (Shanghai), Institute of Plant Physiology and Ecology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai 200032, China.
J Exp Bot. 2012 Jun;63(11):4151-64. doi: 10.1093/jxb/ers098. Epub 2012 Mar 26.
Overexpression of Arabidopsis Reversion-To-ethylene Sensitivity1 (RTE1) results in whole-plant ethylene insensitivity dependent on the ethylene receptor gene Ethylene Response1 (ETR1). However, overexpression of the tomato RTE1 homologue Green Ripe (GR) delays fruit ripening but does not confer whole-plant ethylene insensitivity. It was decided to investigate whether aspects of ethylene-induced growth and development of the monocotyledonous model plant rice could be modulated by rice RTE1 homologues (OsRTH genes). Results from a cross-species complementation test in Arabidopsis showed that OsRTH1 overexpression complemented the rte1-2 loss-of-function mutation and conferred whole-plant ethylene insensitivity in an ETR1-dependent manner. In contrast, OsRTH2 and OsRTH3 overexpression did not complement rte1-2 or confer ethylene insensitivity. In rice, OsRTH1 overexpression substantially prevented ethylene-induced alterations in growth and development, including leaf senescence, seedling leaf elongation and development, coleoptile elongation or curvature, and adventitious root development. Results of subcellular localizations of OsRTHs, each fused with the green fluorescent protein, in onion epidermal cells suggested that the three OsRTHs were predominantly localized to the Golgi. OsRTH1 may be an RTE1 orthologue of rice and modulate rice ethylene responses. The possible roles of auxins and gibberellins in the ethylene-induced alterations in growth were evaluated and the biological significance of ethylene in the early stage of rice seedling growth is discussed.
拟南芥反乙烯敏感 1(RTE1)的过表达导致整个植株对乙烯不敏感,这依赖于乙烯受体基因 Ethylene Response1(ETR1)。然而,番茄 RTE1 同源物 Green Ripe(GR)的过表达延迟了果实成熟,但并没有赋予整个植株对乙烯不敏感的特性。因此,人们决定研究单子叶模式植物水稻中的拟南芥乙烯诱导生长和发育的某些方面是否可以被水稻 RTE1 同源物(OsRTH 基因)调节。在拟南芥中的种间互补测试的结果表明,OsRTH1 的过表达在 ETR1 依赖性方式下补充了 rte1-2 功能丧失突变,并赋予了整个植株对乙烯不敏感的特性。相比之下,OsRTH2 和 OsRTH3 的过表达并没有补充 rte1-2 或赋予对乙烯不敏感的特性。在水稻中,OsRTH1 的过表达极大地防止了乙烯诱导的生长和发育的改变,包括叶片衰老、幼苗叶片伸长和发育、胚轴伸长或弯曲以及不定根的发育。将 OsRTHs 分别与绿色荧光蛋白融合的亚细胞定位结果表明,这三种 OsRTHs 主要定位于高尔基体。OsRTH1 可能是水稻 RTE1 的同源物,并调节水稻的乙烯反应。还评估了生长素和赤霉素在乙烯诱导生长改变中的可能作用,并讨论了乙烯在水稻幼苗生长早期的生物学意义。