Mazourek Michael, Pujar Anuradha, Borovsky Yelena, Paran Ilan, Mueller Lukas, Jahn Molly M
Department of Plant Breeding and Genetics, Cornell University, Ithaca, New York 14853, USA.
Plant Physiol. 2009 Aug;150(4):1806-21. doi: 10.1104/pp.109.136549. Epub 2009 Jun 24.
Capsaicinoids are the pungent alkaloids that give hot peppers (Capsicum spp.) their spiciness. While capsaicinoids are relatively simple molecules, much is unknown about their biosynthesis, which spans diverse metabolisms of essential amino acids, phenylpropanoids, benzenoids, and fatty acids. Pepper is not a model organism, but it has access to the resources developed in model plants through comparative approaches. To aid research in this system, we have implemented a comprehensive model of capsaicinoid biosynthesis and made it publicly available within the SolCyc database at the SOL Genomics Network (http://www.sgn.cornell.edu). As a preliminary test of this model, and to build its value as a resource, targeted transcripts were cloned as candidates for nearly all of the structural genes for capsaicinoid biosynthesis. In support of the role of these transcripts in capsaicinoid biosynthesis beyond correct spatial and temporal expression, their predicted subcellular localizations were compared against the biosynthetic model and experimentally determined compartmentalization in Arabidopsis (Arabidopsis thaliana). To enable their use in a positional candidate gene approach in the Solanaceae, these genes were genetically mapped in pepper. These data were integrated into the SOL Genomics Network, a clade-oriented database that incorporates community annotation of genes, enzymes, phenotypes, mutants, and genomic loci. Here, we describe the creation and integration of these resources as a holistic and dynamic model of the characteristic specialized metabolism of pepper.
辣椒素类物质是赋予辣椒(辣椒属)辣味的辛辣生物碱。虽然辣椒素类物质是相对简单的分子,但其生物合成过程仍有许多未知之处,该过程涉及必需氨基酸、苯丙烷类、苯类和脂肪酸的多种代谢。辣椒不是模式生物,但通过比较方法可以利用模式植物中开发的资源。为了帮助在这个系统中开展研究,我们构建了一个全面的辣椒素类物质生物合成模型,并将其在SOL基因组网络(http://www.sgn.cornell.edu)的SolCyc数据库中公开。作为对该模型的初步测试,并提升其作为一种资源的价值,我们克隆了几乎所有辣椒素类物质生物合成结构基因的候选靶向转录本。为了支持这些转录本在辣椒素类物质生物合成中的作用,而不仅仅是正确的时空表达,我们将其预测的亚细胞定位与生物合成模型进行了比较,并与拟南芥(Arabidopsis thaliana)中实验确定的区室化进行了对比。为了能在茄科植物的定位候选基因方法中使用这些基因,我们在辣椒中对其进行了遗传定位。这些数据被整合到SOL基因组网络中,这是一个以进化枝为导向的数据库,整合了基因、酶、表型、突变体和基因组位点的群体注释。在这里,我们将这些资源的创建和整合描述为辣椒特征性特殊代谢的一个整体且动态的模型。