Naithani Sushma, Partipilo Christina M, Raja Rajani, Elser Justin L, Jaiswal Pankaj
Department of Botany and Plant Pathology, Oregon State University Corvallis, OR, USA.
Front Plant Sci. 2016 Mar 4;7:242. doi: 10.3389/fpls.2016.00242. eCollection 2016.
FragariaCyc is a strawberry-specific cellular metabolic network based on the annotated genome sequence of Fragaria vesca L. ssp. vesca, accession Hawaii 4. It was built on the Pathway-Tools platform using MetaCyc as the reference. The experimental evidences from published literature were used for supporting/editing existing entities and for the addition of new pathways, enzymes, reactions, compounds, and small molecules in the database. To date, FragariaCyc comprises 66 super-pathways, 488 unique pathways, 2348 metabolic reactions, 3507 enzymes, and 2134 compounds. In addition to searching and browsing FragariaCyc, researchers can compare pathways across various plant metabolic networks and analyze their data using Omics Viewer tool. We view FragariaCyc as a resource for the community of researchers working with strawberry and related fruit crops. It can help understanding the regulation of overall metabolism of strawberry plant during development and in response to diseases and abiotic stresses. FragariaCyc is available online at http://pathways.cgrb.oregonstate.edu.
草莓代谢循环(FragariaCyc)是一个基于夏威夷4号栽培种野草莓(Fragaria vesca L. ssp. vesca)注释基因组序列的草莓特异性细胞代谢网络。它是在Pathway-Tools平台上以MetaCyc为参考构建的。已发表文献中的实验证据用于支持/编辑现有实体,以及在数据库中添加新的途径、酶、反应、化合物和小分子。截至目前,草莓代谢循环包含66个超级途径、488个独特途径、2348个代谢反应、3507种酶和2134种化合物。除了搜索和浏览草莓代谢循环,研究人员还可以比较不同植物代谢网络中的途径,并使用组学浏览器工具分析他们的数据。我们将草莓代谢循环视为从事草莓及相关水果作物研究的科研群体的一种资源。它有助于理解草莓植株在发育过程中以及应对疾病和非生物胁迫时整体代谢的调控。草莓代谢循环可在http://pathways.cgrb.oregonstate.edu在线获取。