Flag Iris
Iris pseudacorus
鸢尾属伪酸橙,又称黄标鸢尾,是一种传统上未在特定医疗实践中使用的植物。科学研究探索了其潜在的生态和环境作用,特别是在人工湿地中,它表现出稳定的性能并具有有效的污染物去除能力,尤其是对微塑料。研究表明,鸢尾属伪酸橙的细根在湿地环境中在控制甲烷(CH4)通量方面发挥着重要作用。尽管各种湿地植物在氮和磷去除效率上存在种间差异,但鸢尾属伪酸橙已被观察到在这种情况下表现有效。目前尚未根据现有研究发现该植物有重大安全问题或记录的药物相互作用。
- 最佳证据
- D
- 注意事项
- —
仅供参考。传统用法并不代表已被证实有效。证据与安全性各不相同,请查阅所引来源。
科学怎么说
- 这项研究开发了一种基于Percoll™的协议,成功从十二种测试植物物种中的四种中提取出高质量和高分子量DNA,包括黄菖蒲。
- 细根在控制香蒲属植物如 Iris pseudacorus 湿地中甲烷通量方面的作用比粗根更为显著。
- Iris pseudacorus 经 Bacillus sp. TR2 处理后形成了纳米-BioMnOx,与对照组相比,4-氯酚的去除率提高了58.49%。
- Iris pseudacorus 在暴露于微塑料的人工湿地中表现出稳定的生理性能,并维持了高污染物去除效率。
- 研究发现六种湿地植物在氮和磷去除效率方面存在显著的interspecific差异,其中Myriophyllum spicatum的整体净化性能最高。
Frequently asked questions
What is Flag Iris?
Flag Iris (Iris pseudacorus) is a plant documented in FolkKB's traditional-medicine reference, drawn from sourced literature and cross-checked against the evidence.
What does the scientific evidence say about Flag Iris?
5 sourced findings are recorded for Flag Iris; the strongest carries evidence grade D. For example: 这项研究开发了一种基于Percoll™的协议,成功从十二种测试植物物种中的四种中提取出高质量和高分子量DNA,包括黄菖蒲。
How strong is the evidence for Flag Iris?
The strongest finding for Flag Iris carries evidence grade D — preliminary or traditional. Grades run A (strongest) to D (preliminary or traditional).
Is Flag Iris safe? What are the side effects?
No major safety issues are recorded for Flag Iris in our sources, but the data may be incomplete. Consult a qualified professional before use.
Does Flag Iris interact with medications?
No drug interactions are recorded for Flag Iris in our sources. This does not rule them out — check with a pharmacist.
What are the common names of Flag Iris?
Flag Iris is also known as: ирис ложноаировый, Barchjeblom.
Is Flag Iris a proven treatment?
No. FolkKB is informational only. Traditional use and early findings are not proof of efficacy or safety — consult a qualified professional and never self-treat.
来源
- T2 The Role of Root and Shoot Structures in CH4 Transport and Release in Wetland Plants. literature abstract metadata
- T2 Selecting emergent wetland plants for constructed wetlands under microplastic stress: Physiological performance and transcriptomic mechanisms. literature abstract metadata
- T2 Using Bacillus sp. TR2 to form nano-BioMnOx to improve 4-chlorophenol rhizoremediation. literature abstract metadata
- T2 Comparative Study on Nitrogen and Phosphorus Removal Efficiency and Rhizosphere Microbial Mechanisms of Six Wetland Plants in Eutrophic Water. literature abstract metadata
- T2 Efficient high-quality and high molecular weight plant DNA extraction protocol using Percoll™. literature abstract metadata