Fambrini Marco, Durante Chiara, Cionini Giuliano, Geri Chiara, Giorgetti Lucia, Michelotti Vania, Salvini Mariangela, Pugliesi Claudio
Dipartimento di Biologia delle Piante Agrarie, Sezione di Genetica, Università di Pisa, Via Matteotti 1B, 56124, Pisa, Italy.
Dev Genes Evol. 2006 May;216(5):253-64. doi: 10.1007/s00427-005-0050-7. Epub 2006 Feb 1.
The Helianthus annuus LEAFY COTYLEDON1-LIKE (HaL1L) gene encodes a heme-activated protein 3 subunit of the CCAAT box-binding factor. The phylogenetic analysis indicates that HaL1L is closely related to LEAFY COTYLEDON1 (LEC1)-type of Arabidopsis thaliana. In particular, the peptide results homologous to the LEC1-LIKE gene of A. thaliana, with which it shares a high amino acid sequence identity (56%). HaL1L transcripts are accumulated primarily at an early stage of sunflower embryogenesis. High levels of HaL1L messenger RNA (mRNA) have been detected in the developing embryo proper, suspensor, endosperm, integument, and integumentary tapetum cells, while in unfertilized ovules, HaL1L mRNA was present at rather low levels. In an attempt to examine the involvement of HaL1L on somatic embryogenesis, a somaclonal variant of H. annuus x H. tuberosus (EMB-2) that produces ectopic embryo- and shoot-like structures, arranged in clusters along leaf veins, was used. We found that the epiphyllous proliferation of ectopic embryos on EMB-2 leaves was associated to HaL1L mRNA accumulation. The detection of HaL1L transcripts was evident in somatic embryos at the heart- and early cotyledon-stage. On the contrary, no signal related to HaL1L transcript accumulation was observed in EMB-2 leaves characterized by the presence of shoot-like structures. Together, these results support the conclusion that the transcription of the HaL1L gene is maintained both in zygotic and in somatic embryogenesis. In addition, the ectopic accumulation of HaL1L mRNA in parenchymal cells around the vascular bundles of epiphyllous leaves opens the possibility that HaL1L could also be involved in switching somatic cell fate towards embryogenic competence.
向日葵(Helianthus annuus)类叶状子叶1(HaL1L)基因编码CCAAT盒结合因子的血红素激活蛋白3亚基。系统发育分析表明,HaL1L与拟南芥(Arabidopsis thaliana)的叶状子叶1(LEC1)类型密切相关。特别是,该肽与拟南芥的LEC1类基因具有同源性,二者氨基酸序列同一性较高(56%)。HaL1L转录本主要在向日葵胚胎发生的早期积累。在发育中的胚体、胚柄、胚乳、珠被和珠被绒毡层细胞中检测到高水平的HaL1L信使核糖核酸(mRNA),而在未受精的胚珠中,HaL1L mRNA水平相当低。为了研究HaL1L在体细胞胚胎发生中的作用,使用了向日葵(H. annuus)×马铃薯(H. tuberosus)的体细胞克隆变异体(EMB-2),该变异体产生异位的胚胎和芽状结构,沿叶脉成簇排列。我们发现,EMB-2叶片上异位胚胎的叶上增殖与HaL1L mRNA积累有关。在心脏期和子叶早期的体细胞胚胎中,HaL1L转录本的检测很明显。相反,在具有芽状结构的EMB-2叶片中未观察到与HaL1L转录本积累相关的信号。总之,这些结果支持了HaL1L基因在合子胚胎发生和体细胞胚胎发生中都保持转录的结论。此外,HaL1L mRNA在叶上叶片维管束周围实质细胞中的异位积累,使得HaL1L也可能参与将体细胞命运转变为胚胎发生能力成为可能。