Iordachescu Mihaela, Verlinden Sven
Genetics and Developmental Biology Program, Division of Plant and Soil Sciences, West Virginia University, 1090 Agricultural Science Building, PO Box 6108, Morgantown, WV 26506, USA.
J Exp Bot. 2005 Aug;56(418):2011-8. doi: 10.1093/jxb/eri199. Epub 2005 Jun 27.
Using a combination of approaches, three EIN3-like (EIL) genes DC-EIL1/2 (AY728191), DC-EIL3 (AY728192), and DC-EIL4 (AY728193) were isolated from carnation (Dianthus caryophyllus) petals. DC-EIL1/2 deduced amino acid sequence shares 98% identity with the previously cloned and characterized carnation DC-EIL1 (AF261654), 62% identity with DC-EIL3, and 60% identity with DC-EIL4. DC-EIL3 deduced amino acid sequence shares 100% identity with a previously cloned carnation gene fragment, Dc106 (CF259543), 61% identity with Dianthus caryophyllus DC-EIL1 (AF261654), and 59% identity with DC-EIL4. DC-EIL4 shared 60% identity with DC-EIL1 (AF261654). Expression analyses performed on vegetative and flower tissues (petals, ovaries, and styles) during growth and development and senescence (natural and ethylene-induced) indicated that the mRNA accumulation of the DC-EIL family of genes in carnation is regulated developmentally and by ethylene. DC-EIL3 mRNA showed significant accumulation upon ethylene exposure, during flower development, and upon pollination in petals and styles. Interestingly, decreasing levels of DC-EIL3 mRNA were found in wounded leaves and ovaries of senescing flowers whenever ethylene levels increased. Flowers treated with sucrose showed a 2 d delay in the accumulation of DC-EIL3 transcripts when compared with control flowers. These observations suggest an important role for DC-EIL3 during growth and development. Changes in DC-EIL1/2 and DC-EIL4 mRNA levels during flower development, and upon ethylene exposure and pollination were very similar. mRNA levels of the DC-EILs in styles of pollinated flowers showed a positive correlation with ethylene production after pollination. The cloning and characterization of the EIN3-like genes in the present study showed their transcriptional regulation not previously observed for EILs.
采用多种方法,从香石竹(石竹)花瓣中分离出三个类EIN3(EIL)基因,即DC-EIL1/2(AY728191)、DC-EIL3(AY728192)和DC-EIL4(AY728193)。DC-EIL1/2推导的氨基酸序列与先前克隆并鉴定的香石竹DC-EIL1(AF261654)有98%的同一性,与DC-EIL3有62%的同一性,与DC-EIL4有60%的同一性。DC-EIL3推导的氨基酸序列与先前克隆的香石竹基因片段Dc106(CF259543)有100%的同一性,与石竹DC-EIL1(AF261654)有61%的同一性,与DC-EIL4有59%的同一性。DC-EIL4与DC-EIL1(AF261654)有60%的同一性。对营养组织和花组织(花瓣、子房和花柱)在生长发育和衰老(自然衰老和乙烯诱导衰老)过程中进行的表达分析表明,香石竹中DC-EIL基因家族的mRNA积累受发育调控和乙烯调控。DC-EIL3 mRNA在乙烯处理后、花发育过程中以及花瓣和花柱授粉后均有显著积累。有趣的是,在衰老花朵的受伤叶片和子房中,每当乙烯水平升高时,DC-EIL3 mRNA水平就会下降。与对照花朵相比,用蔗糖处理的花朵DC-EIL3转录本的积累延迟了2天。这些观察结果表明DC-EIL3在生长发育过程中起重要作用。在花发育过程中以及乙烯处理和授粉后,DC-EIL1/2和DC-EIL4 mRNA水平的变化非常相似。授粉花朵花柱中DC-EILs的mRNA水平与授粉后乙烯产生呈正相关。本研究中类EIN3基因的克隆和鉴定表明了它们的转录调控,这是之前EILs未观察到的。