Max Planck Institute of Molecular Plant Physiology, Am Mühlenberg, Potsdam-Golm, Germany.
University of Potsdam, Institute of Biochemistry and Biology, Haus, Potsdam-Golm, Germany.
J Exp Bot. 2019 May 9;70(10):2727-2740. doi: 10.1093/jxb/erz098.
NAC transcription factors (TFs) are important regulators of expressional reprogramming during plant development, stress responses, and leaf senescence. NAC TFs also play important roles in fruit ripening. In tomato (Solanum lycopersicum), one of the best characterized NACs involved in fruit ripening is NON-RIPENING (NOR), and the non-ripening (nor) mutation has been widely used to extend fruit shelf life in elite varieties. Here, we show that NOR additionally controls leaf senescence. Expression of NOR increases with leaf age, and developmental as well as dark-induced senescence are delayed in the nor mutant, while overexpression of NOR promotes leaf senescence. Genes associated with chlorophyll degradation as well as senescence-associated genes (SAGs) show reduced and elevated expression, respectively, in nor mutants and NOR overexpressors. Overexpression of NOR also stimulates leaf senescence in Arabidopsis thaliana. In tomato, NOR supports senescence by directly and positively regulating the expression of several senescence-associated genes including, besides others, SlSAG15 and SlSAG113, SlSGR1, and SlYLS4. Finally, we find that another senescence control NAC TF, namely SlNAP2, acts upstream of NOR to regulate its expression. Our data support a model whereby NAC TFs have often been recruited by higher plants for both the control of leaf senescence and fruit ripening.
NAC 转录因子(TFs)是植物发育、应激反应和叶片衰老过程中表达重编程的重要调控因子。NAC TFs 也在果实成熟中发挥重要作用。在番茄(Solanum lycopersicum)中,参与果实成熟的一个特征最明显的 NAC 是 NON-RIPENING(NOR),非成熟(nor)突变已被广泛用于延长优良品种果实的货架期。在这里,我们表明 NOR 还控制叶片衰老。NOR 的表达随叶片年龄的增加而增加,nor 突变体中发育和暗诱导的衰老被延迟,而 NOR 的过表达则促进叶片衰老。与叶绿素降解以及衰老相关基因(SAGs)相关的基因分别在 nor 突变体和 NOR 过表达体中表达减少和增加。NOR 的过表达也会在拟南芥中刺激叶片衰老。在番茄中,NOR 通过直接正向调控几个衰老相关基因的表达来支持衰老,这些基因包括 SlSAG15 和 SlSAG113、SlSGR1 和 SlYLS4 等。最后,我们发现另一个衰老控制 NAC TF,即 SlNAP2,在前调控 NOR 的表达。我们的数据支持了这样一种模式,即 NAC TFs 经常被高等植物招募来控制叶片衰老和果实成熟。