Cherian Sam, Figueroa Carlos R, Nair Helen
Faculty of Integrative Sciences and Technology, Quest International University Perak, Jalan Raja Permaisuri Bainun, 30250 Ipoh, Perak Darul Ridzuan, Malaysia
Faculty of Forest Sciences and Biotechnology Center, Universidad de Concepcion, Casilla 160-C, Concepcion, Chile.
J Exp Bot. 2014 Sep;65(17):4705-22. doi: 10.1093/jxb/eru280. Epub 2014 Jul 3.
Fruit ripening is a complex and highly coordinated developmental process involving the expression of many ripening-related genes under the control of a network of signalling pathways. The hormonal control of climacteric fruit ripening, especially ethylene perception and signalling transduction in tomato has been well characterized. Additionally, great strides have been made in understanding some of the major regulatory switches (transcription factors such as RIPENING-INHIBITOR and other transcriptional regulators such as COLOURLESS NON-RIPENING, TOMATO AGAMOUS-LIKE1 and ETHYLENE RESPONSE FACTORs), that are involved in tomato fruit ripening. In contrast, the regulatory network related to non-climacteric fruit ripening remains poorly understood. However, some of the most recent breakthrough research data have provided several lines of evidences for abscisic acid- and sucrose-mediated ripening of strawberry, a non-climacteric fruit model. In this review, we discuss the most recent research findings concerning the hormonal regulation of fleshy fruit ripening and their cross-talk and the future challenges taking tomato as a climacteric fruit model and strawberry as a non-climacteric fruit model. We also highlight the possible contribution of epigenetic changes including the role of plant microRNAs, which is opening new avenues and great possibilities in the fields of fruit-ripening research and postharvest biology.
果实成熟是一个复杂且高度协调的发育过程,涉及许多成熟相关基因在信号通路网络控制下的表达。跃变型果实成熟的激素调控,尤其是番茄中的乙烯感知和信号转导,已经得到了很好的表征。此外,在理解一些参与番茄果实成熟的主要调控开关(如成熟抑制因子等转录因子以及无色非成熟、番茄AGAMOUS-LIKE1和乙烯反应因子等其他转录调节因子)方面也取得了很大进展。相比之下,与非跃变型果实成熟相关的调控网络仍知之甚少。然而,一些最新的突破性研究数据为脱落酸和蔗糖介导的非跃变型果实模型草莓的成熟提供了多条证据。在这篇综述中,我们以跃变型果实番茄和非跃变型果实草莓为模型,讨论了有关肉质果实成熟激素调控及其相互作用的最新研究发现以及未来面临的挑战。我们还强调了表观遗传变化的可能贡献,包括植物微小RNA的作用,这为果实成熟研究和采后生物学领域开辟了新途径和巨大可能性。