Mishra Himanshu, Saran Shweta
School of Life Sciences, Jawaharlal Nehru University, New Delhi 110 067, India.
J Biosci. 2015 Jun;40(2):241-55. doi: 10.1007/s12038-015-9519-3.
Homeobox genes are compared between genomes in an attempt to understand the evolution of animal development. The ability of the protist, Dictyostelium discoideum, to shift between uni- and multicellularity makes this group ideal for studying the genetic changes that may have occurred during this transition. We present here the first genome-wide classification and comparative genomic analysis of the 14 homeobox genes present in D. discoideum. Based on the structural alignment of the homeodomains, they can be broadly divided into TALE and non-TALE classes. When individual homeobox genes were compared with members of known class or family, we could further classify them into 3 groups, namely, TALE, OTHER and NOVEL classes, but no HOX family was found. The 5 members of TALE class could be further divided into PBX, PKNOX, IRX and CUP families; 4 homeobox genes classified as NOVEL did not show any similarity to any known homeobox genes; while the remaining 5 were classified as OTHERS as they did show certain degree of similarity to few known homeobox genes. No unique RNA expression pattern during development of D. discoideum emerged for members of an individual group. Putative promoter analysis revealed binding sites for few homeobox transcription factors among many probable factors.
为了理解动物发育的进化过程,人们对不同基因组中的同源异型基因进行了比较。原生生物盘基网柄菌具有在单细胞和多细胞状态之间转换的能力,这使得该类生物成为研究在此转变过程中可能发生的基因变化的理想对象。我们在此展示了对盘基网柄菌中存在的14个同源异型基因进行的首次全基因组分类和比较基因组分析。基于同源结构域的结构比对,它们可大致分为TALE和非TALE两类。当将单个同源异型基因与已知类别或家族的成员进行比较时,我们可进一步将它们分为3组,即TALE、OTHER和NOVEL类,但未发现HOX家族。TALE类的5个成员可进一步分为PBX、PKNOX、IRX和CUP家族;4个被归类为NOVEL的同源异型基因与任何已知的同源异型基因均无相似性;而其余5个被归类为OTHERS,因为它们确实与少数已知同源异型基因显示出一定程度的相似性。在盘基网柄菌发育过程中,单个组的成员并未呈现出独特的RNA表达模式。推定启动子分析揭示了在众多可能的因子中存在少数同源异型转录因子的结合位点。