Department of Biological Sciences, University of Naples Federico II, Via Mezzocannone 8, 80134 Napoli, Italy.
Curr Genomics. 2011 Aug;12(5):342-56. doi: 10.2174/138920211796429754.
Since the time of Darwin, biologists have studied the origin and evolution of the Orchidaceae, one of the largest families of flowering plants. In the last two decades, the extreme diversity and specialization of floral morphology and the uncoupled rate of morphological and molecular evolution that have been observed in some orchid species have spurred interest in the study of the genes involved in flower development in this plant family. As part of the complex network of regulatory genes driving the formation of flower organs, the MADS-box represents the most studied gene family, both from functional and evolutionary perspectives. Despite the absence of a published genome for orchids, comparative genetic analyses are clarifying the functional role and the evolutionary pattern of the MADS-box genes in orchids. Various evolutionary forces act on the MADS-box genes in orchids, such as diffuse purifying selection and the relaxation of selective constraints, which sometimes reveals a heterogeneous selective pattern of the coding and non-coding regions. The emerging theory regarding the evolution of floral diversity in orchids proposes that the diversification of the orchid perianth was a consequence of duplication events and changes in the regulatory regions of the MADS-box genes, followed by sub- and neo-functionalization. This specific developmental-genetic code is termed the "orchid code."
自达尔文时代以来,生物学家就一直在研究兰花科(Orchidaceae)的起源和演化,兰花科是开花植物中最大的科之一。在过去的二十年中,一些兰花物种中观察到的花形态的极端多样性和专业化以及形态和分子演化的解偶联率,激发了人们对研究该植物科中参与花发育的基因的兴趣。作为调控基因形成花器官的复杂网络的一部分,MADS-box 代表了从功能和进化角度研究最多的基因家族。尽管兰花没有发表的基因组,但比较遗传分析阐明了 MADS-box 基因在兰花中的功能作用和进化模式。各种进化力量作用于兰花中的 MADS-box 基因,例如弥散性净化选择和选择约束的放松,这有时会揭示编码和非编码区域的异质选择模式。关于兰花花朵多样性进化的新兴理论提出,兰花花被的多样化是 MADS-box 基因的重复事件和调控区域变化的结果,随后是亚功能化和新功能化。这种特定的发育遗传密码被称为“兰花密码”。