Herath Venura, Connolly Kaylee, Roach Anna, Ausekar Ashish, Persky Tracy, Verchot Jeanmarie
Department of Plant Pathology & Microbiology Texas A&M University College Station Texas USA.
Department of Agriculture Biology, Faculty of Agriculture University of Peridaniya Peradeniya Sri Lanka.
Plant Direct. 2022 Jul 20;6(7):e431. doi: 10.1002/pld3.431. eCollection 2022 Jul.
The endoplasmic reticulum (ER) houses sensors that respond to environmental stress and underly plants' adaptative responses. These sensors transduce signals that lead to changes in nuclear gene expression. The ER to nuclear signaling pathways are primarily attributed to the unfolded protein response (UPR) and are also integrated with a wide range of development, hormone, immune, and stress signaling pathways. Understanding the role of the UPR in signaling network mechanisms that associate with particular phenotypes is crucially important. While UPR-associated genes are the subject of ongoing investigations in a few model plant systems, most remain poorly annotated, hindering the identification of candidates across plant species. This open-source curated database provides a centralized resource of peer reviewed knowledge of ER to nuclear signaling pathways for the plant community. We provide a UPRome interactive viewer for users to navigate through the pathways and to access annotated information. The plant ER UPRome website is located at http://uprome.tamu.edu. We welcome contributions from the researchers studying the ER UPR to incorporate additional genes into the database through the "contact us" page.
内质网(ER)中存在一些传感器,它们对环境胁迫作出反应,并构成植物适应性反应的基础。这些传感器转导信号,导致核基因表达发生变化。内质网到细胞核的信号通路主要归因于未折叠蛋白反应(UPR),并且还与广泛的发育、激素、免疫和胁迫信号通路整合在一起。了解UPR在与特定表型相关的信号网络机制中的作用至关重要。虽然UPR相关基因是一些模式植物系统中正在进行研究的主题,但大多数基因的注释仍然很少,这阻碍了跨植物物种的候选基因鉴定。这个开源的精心策划的数据库为植物学界提供了一个关于内质网到细胞核信号通路的同行评审知识的集中资源。我们提供了一个UPRome交互式查看器,供用户浏览这些通路并获取注释信息。植物内质网UPRome网站位于http://uprome.tamu.edu。我们欢迎研究内质网UPR的研究人员通过“联系我们”页面为数据库纳入更多基因做出贡献。