Fortes Ana M, Santos Filipa, Pais Maria S
Plant Systems Biology Lab, ICAT, Center for Biodiversity and Functional Integrative Genomics, Science Faculty of Lisbon University, Campo Grande, 1749-016 Lisboa, Portugal.
J Biomed Biotechnol. 2010;2010. doi: 10.1155/2010/583691. Epub 2010 Aug 2.
The usage of Humulus lupulus for brewing increased the demand for high-quality plant material. Simultaneously, hop has been used in traditional medicine and recently recognized with anticancer and anti-infective properties. Tissue culture techniques have been reported for a wide range of species, and open the prospect for propagation of disease-free, genetically uniform and massive amounts of plants in vitro. Moreover, the development of large-scale culture methods using bioreactors enables the industrial production of secondary metabolites. Reliable and efficient tissue culture protocol for shoot regeneration through organogenic nodule formation was established for hop. The present review describes the histological, and biochemical changes occurring during this morphogenic process, together with an analysis of transcriptional and metabolic profiles. We also discuss the existence of common molecular factors among three different morphogenic processes: organogenic nodules and somatic embryogenesis, which strictly speaking depend exclusively on intrinsic developmental reprogramming, and legume nitrogen-fixing root nodules, which arises in response to symbiosis. The review of the key factors that participate in hop nodule organogenesis and the comparison with other morphogenic processes may have merit as a study presenting recent advances in complex molecular networks occurring during morphogenesis and together, these provide a rich framework for biotechnology applications.
啤酒花用于酿造增加了对高质量植物材料的需求。同时,啤酒花已被用于传统医学,最近还被发现具有抗癌和抗感染特性。组织培养技术已在多种物种中得到报道,并为体外繁殖无病、基因一致且大量的植物开辟了前景。此外,使用生物反应器的大规模培养方法的发展使得次生代谢产物能够进行工业化生产。已为啤酒花建立了通过器官发生结节形成进行芽再生的可靠且高效的组织培养方案。本综述描述了在此形态发生过程中发生的组织学和生化变化,以及转录和代谢谱分析。我们还讨论了三种不同形态发生过程中共同分子因子的存在:器官发生结节和体细胞胚胎发生,严格来说它们完全依赖于内在发育重编程,以及豆科植物固氮根瘤,它是对共生的响应而产生的。对参与啤酒花结节器官发生的关键因素的综述以及与其他形态发生过程的比较,作为一项展示形态发生过程中复杂分子网络最新进展的研究可能具有价值,这些共同为生物技术应用提供了丰富的框架。