INRA, UMR1347 Agroécologie, BP 86510, F-21000 Dijon, France.
Plant Sci. 2013 Aug;209:32-45. doi: 10.1016/j.plantsci.2013.03.016. Epub 2013 Apr 15.
The DOF (DNA-binding One Zinc Finger) family of transcription factors is involved in many fundamental processes in higher plants, including responses to light and phytohormones as well as roles in seed maturation and germination. DOF transcription factor genes are restricted in their distribution to plants, where they are in many copies in both gymnosperms and angiosperms and also present in lower plants such as the moss Physcomitrella patens and in the alga Chlamydomonas reinhardtii which possesses a single DOF gene. DOF transcription factors bind to their promoter targets at the consensus sequence AAAG. This binding depends upon the presence of the highly conserved DOF domain in the protein. Depending on the target gene, DOF factor binding may activate or repress transcription. DOF factors are expressed in most if not all tissues of higher plants, but frequently appear to be functionally redundant. Recent next-generation sequencing data provide a more comprehensive survey of the distribution of DOF sequence classes among plant species and within tissue types, and clues as to the evolution of functions assumed by this transcription factor family. DOFs do not appear to be implicated in the initial differentiation of the plant body plan into organs via the resolution of meristematic zones, in contrast to MADS-box and homeobox transcription factors, which are found in other non-plant eukaryotes, and this may reflect a more recent evolutionary origin.
DNA 结合单锌指(DOF)转录因子家族参与高等植物的许多基本过程,包括对光和植物激素的反应,以及在种子成熟和萌发中的作用。DOF 转录因子基因在植物中受到限制,在裸子植物和被子植物中都有许多拷贝,在低等植物如苔藓 Physcomitrella patens 和藻类 Chlamydomonas reinhardtii 中也存在,后者只拥有一个 DOF 基因。DOF 转录因子在其启动子目标上结合,其保守序列为 AAAG。这种结合依赖于蛋白质中高度保守的 DOF 结构域的存在。根据靶基因的不同,DOF 因子结合可能激活或抑制转录。DOF 因子在高等植物的大多数组织中表达,但通常似乎具有功能冗余性。最近的下一代测序数据更全面地调查了 DOF 序列类在植物物种中的分布,以及在组织类型内的分布情况,并为该转录因子家族所承担的功能进化提供了线索。与在其他非植物真核生物中发现的 MADS 盒和同源盒转录因子不同,DOF 似乎不参与植物体计划通过分生组织区的分辨率初始分化成器官,这可能反映了最近的进化起源。