Department of Horticulture, National Taiwan University, Taipei 10617, Taiwan, ROC.
Plant Physiol Biochem. 2011 Oct;49(10):1209-19. doi: 10.1016/j.plaphy.2011.05.005. Epub 2011 May 19.
The cDNAs encoding ETHYLENE INSENSITIVE3 (EIN3) transcription factor, OgEIL1 and OgEIL2 of Oncidium were cloned, sequenced and characterized. The deduced amino acid sequences of OgEIL1 and OgEIL2 of identified cDNA clones contain all structural features found in the Arabidopsis EIN3, such as an amino terminal acidic domain, a proline-rich region, and five basic conserved domains. Complementation test for OgEIL1 in Arabidopsis ein3 mutant indicate that function of OgEIL1 is the same as Arabidopsis EIN3. RNA gel blot analysis indicated that OgEIL1 and OgEIL2 expressed differentially in the roots, stem, leaves and flower buds of Oncidium. OgEIL1 and OgEIL2 mRNA levels in fully opened flowers increased as time progressed after cutting and reached a maximum in the fifth day and decreased on seventh day, which is consistent with the hypothesis that flowers initiated to wilt when ethylene raised abruptly. In de-capped flowers, OgEIL2 mRNA showed a decrease, while OgEIL1 mRNA exhibited an increase. Exogenous application of ethylene increased the mRNA levels of OgEIL1 and OgEIL2 in flower buds and flowers after cutting compared prior to ethylene treatment, however, in pollinia de-capped flowers, both OgEIL1 and OgEIL2 mRNA levels responded to a decline to exogenous ethylene immediately after treatment. Collectively, it is suggested that the main functions of OgEIL1 and OgEIL2 are to modulate the senescence of Oncidium flowers.
乙烯不敏感 3(EIN3)转录因子、OgEIL1 和 OgEIL2 的 cDNA 编码基因已被克隆、测序和鉴定。鉴定的 cDNA 克隆的 OgEIL1 和 OgEIL2 的推导氨基酸序列包含在拟南芥 EIN3 中发现的所有结构特征,例如氨基末端酸性结构域、富含脯氨酸的区域和五个基本保守结构域。在拟南芥 ein3 突变体中对 OgEIL1 的互补测试表明,OgEIL1 的功能与拟南芥 EIN3 相同。RNA 凝胶印迹分析表明,OgEIL1 和 OgEIL2 在蝴蝶兰的根、茎、叶和花蕾中表达不同。完全开放的花朵在切割后随着时间的推移,OgEIL1 和 OgEIL2 的 mRNA 水平增加,在第五天达到最大值,并在第七天下降,这与当乙烯突然升高时花朵开始枯萎的假设一致。在去帽的花朵中,OgEIL2 mRNA 显示下降,而 OgEIL1 mRNA 显示增加。与乙烯处理前相比,外源施用乙烯可增加花蕾和切花中 OgEIL1 和 OgEIL2 的 mRNA 水平,但在花粉去帽的花朵中,OgEIL1 和 OgEIL2 的 mRNA 水平对处理后立即出现的外源乙烯的反应是下降。总之,这表明 OgEIL1 和 OgEIL2 的主要功能是调节蝴蝶兰花朵的衰老。