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Genome-wide identification, expression, and interaction analysis for ovate family proteins in peach

机译:桃子家族蛋白在桃子中的基因组鉴定,表达和相互作用分析

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Ovate family proteins (OFPs), which are involved in aspects of plant development and growth, is a class of plant-specific transcription factors. Although OFPs have been reported in some species, little is known about their evolution, structure, fruit developmental expression, and interactions among OFP members in peach (Prunus persica). In this study, 15 peach OFP (PpOFP) genes were identified. Phylogenetic analysis showed that 716 OFPs from 32 species were divided into 15 subgroups; 10 subgroups (Ia, Ib, Ic, Id, Ie, If, Ig, Ih, Ii, and Ij) were composed of dicotyledonous plants only and five (IIa, IIb, IIc, IId, and IIe) were composed of monocotyledonous plants only. Structure analysis showed that the OFP genes in monocotyledonous and dicotyledonous plants had no introns. Chromosomal localization analysis showed that 15 PpOFP genes were unevenly mapped on seven chromosomes. Furthermore, eight of the 15 PpOFP genes were cloned successfully by the RT-PCR method. To some extent, eight PpOFPs were expressed in all the detected peach tissues. In addition, analysis by Y2H and BiFC technologies indicated that both PpOFP4 and PpOFP5 formed homodimers with themselves, and PpOFP5 interacted with PpOFP7 or PpOFP8 to form heterodimers. These results serve as the theoretical basis for the analysis of the biological function and regulation of peach OFP transcription factors in the growth, development and other conditions, as well as evolution studies of OFP transcription factors in higher plants.
机译:参与植物开发和生长方面的卵形家族蛋白(OFP)是一类植物特异性转录因子。虽然已经在某些物种中报道了OFP,但对于桃子(Prunus Persica)中的OPP成员之间的进化,结构,果实发育表达和相互作用毫无疑问。在该研究中,鉴定了15个PEP(PPOFP)基因。系统发育分析表明,从32种的716个OFP分为15个亚组; 10个子组(IA,IB,IC,ID,即IG,IH,II和IJ)仅由双子叶植物组成,其中五(IIA,IIB,IID,IID)仅由单圈子植物组成。结构分析表明,单圈和双子叶植物中的OPP基因没有内含子。染色体定位分析表明,在七条染色体上不均匀地映射了15个PPOPP基因。此外,通过RT-PCR方法成功地克隆了15种PPOFP基因中的八个。在某种程度上,在所有检测到的桃子组织中表达了八种PPOFP。此外,通过Y2H和BIFC技术分析表明,PPOFP4和PPOFP5与本身形成同杂体,PPOFP5与PPOFP7或PPOFP8相互作用以形成异二聚体。这些结果作为分析生物学功能和调节桃子转录因子的生物功能和调节的理论依据,以及高等植物中OFP转录因子的进化研究。

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