Lysenko Eugene A
Institute of Plant Physiology, Russian Academy of Sciences, Botanicheskaya ul. 35, 127276 Moscow, Russia.
Plant Cell Rep. 2007 Jul;26(7):845-59. doi: 10.1007/s00299-007-0318-7. Epub 2007 Mar 14.
Plant sigma factors determine the promoter specificity of the major RNA polymerase of plastids and thus regulate the first level of plastome gene expression. In plants, sigma factors are encoded by a small family of nuclear genes, and it is not yet clear if the family members are functionally redundant or each paralog plays a particular role. The review presents the analysis of the information on plant sigma factors obtained since their discovery a decade ago and focuses on similarities and differences in structure and functions of various paralogs. Special attention is paid to their interaction with promoters, the regulation of their expression, and their role in the development of a whole plant. The analysis suggests that though plant sigma factors are basically similar, at least some of them perform distinct functions. Finally, the work presents the scheme of this gene family evolution in higher plants.
植物σ因子决定了质体主要RNA聚合酶的启动子特异性,从而调控质体基因组基因表达的第一水平。在植物中,σ因子由一小类核基因编码,目前尚不清楚这些家族成员在功能上是冗余的,还是每个旁系同源物都发挥着特定作用。这篇综述呈现了自十年前植物σ因子被发现以来所获得信息的分析,并聚焦于各种旁系同源物在结构和功能上的异同。特别关注了它们与启动子的相互作用、表达调控以及它们在整株植物发育中的作用。分析表明,尽管植物σ因子基本相似,但至少其中一些具有不同的功能。最后,该研究展示了高等植物中这个基因家族的进化图谱。