Filiz Ertugrul, Vatansever Recep, Ozyigit Ibrahim Ilker, Uras Mehmet Emin, Sen Ugur, Anjum Naser A, Pereira Eduarda
Duzce University, Department of Crop and Animal Production, Cilimli Vocational School, 81750, Cilimli, Duzce, Turkey.
Marmara University, Faculty of Science and Arts, Department of Biology, 34722, Goztepe, Istanbul, Turkey.
Arch Biochem Biophys. 2017 Aug 1;627:30-45. doi: 10.1016/j.abb.2017.06.012. Epub 2017 Jun 15.
This study aimed to improve current understanding on ethylene-insensitive 3-like (EIL) members, least explored in woody plants such as poplar (Populus trichocarpa Torr. & Grey). Herein, seven putative EIL members were identified in P. trichocarpa genome and were roughly annotated either as EIN3-like sequence associated with ethylene pathway or EIL3-like sequences related with sulfur (S)-pathway. Motif-distribution pattern of proteins also corroborated this annotation. They were distributed on six chromosomes (chr1, 3, 4 and 8-10), and were revealed to encode a protein of 509-662 residues with nuclear localization. The presence of ethylene insensitive 3 (EIN3; PF04873) domain (covering first 80-280 residues from N-terminus) was confirmed by Hidden Markov Model-based search. The first half of EIL proteins (∼80-280 residues including EIN3 domain) was substantially conserved. The second half (∼300-600 residues) was considerably diverged. Additionally, first half of proteins harbored acidic, proline-rich and glutamine-rich sites, and supported the essentiality of these regions in the transcriptional-activation and protein-function. Moreover, identified six segmental and one-tandem duplications demonstrated the negative or purifying selective nature of mutations. Furthermore, expression profile analysis indicated the possibility of a crosstalk between EIN3- and EIL3-like genes, and co-expression networks implicated their interactions with very diverse panels of biological molecules.
本研究旨在增进目前对乙烯不敏感3样(EIL)成员的了解,这类成员在杨树(毛果杨)等木本植物中研究较少。在此,在毛果杨基因组中鉴定出7个假定的EIL成员,它们大致被注释为与乙烯途径相关的EIN3样序列或与硫(S)途径相关的EIL3样序列。蛋白质的基序分布模式也证实了这一注释。它们分布在6条染色体(chr1、3、4和8 - 10)上,编码509 - 662个残基的具有核定位的蛋白质。通过基于隐马尔可夫模型的搜索确认了乙烯不敏感3(EIN3;PF04873)结构域(覆盖N端前80 - 280个残基)的存在。EIL蛋白的前半部分(约80 - 280个残基,包括EIN3结构域)基本保守。后半部分(约300 - 600个残基)差异较大。此外,蛋白质的前半部分含有酸性、富含脯氨酸和富含谷氨酰胺的位点,并支持这些区域在转录激活和蛋白质功能中的重要性。此外,鉴定出的6个片段重复和1个串联重复证明了突变的负向或纯化选择性质。此外,表达谱分析表明EIN3样基因和EIL3样基因之间可能存在相互作用,共表达网络表明它们与非常多样的生物分子相互作用。