Rose-mallow

Hibiscus

木槿,一种具有多种品种的植物,在世界各地的传统医学和烹饪实践中被使用,但没有传统记录其特定的医疗用途。关于其直接治疗应用的科学证据有限;然而,研究表明木槿中的内源性HcU6-14启动子可以提高CRISPR/Cas9介导的基因编辑效率,而Arabidopsis中HcERF37的交叉表达和kenaf中该基因的沉默影响了镉耐受性。此外,使用木槿提取物生物工程化的Zn2TiO4纳米材料展示了增强的光催化和电化学性能,但显示出有限的抗菌活性。智能热空气旋转圆筒干燥机在40°C下比混合智能太阳能干燥机保留更多的总花青素,表明处理木槿以获取其色素可能具有潜在的好处。目前的安全问题很小,在现有研究中没有记录到重大药物相互作用。

速览
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

  • 研究发现, kenaf 内源性 HcU6-14 启动子的转录活性更高,并且与外源启动子相比,能够提高 CRISPR/Cas9 介导的基因组编辑效率。 D PMID
  • 研究发现,HcERF37 的过表达增强了阿拉伯芥对镉的耐受性,而在 kenaf 中沉默它则加剧了镉毒性。 D PMID
  • 研究发现,使用木槿果提取物生物工程制备的Zn2TiO4纳米材料表现出增强的光催化和电化学性能,但抗菌活性有限。 D PMID
  • 智能热空气旋转烘干机在40°C时保留的总花青素比混合智能太阳能烘干机多。 D PMID
  • 这项研究比较了四种木槿栽培品种的形态和细胞遗传特征,揭示了不同物种在花大小、叶形、染色体数目及rDNA位点上的特定差异。 D PMID

Frequently asked questions

What is Rose-mallow?

Rose-mallow (Hibiscus) 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 Rose-mallow?

5 sourced findings are recorded for Rose-mallow; the strongest carries evidence grade D. For example: 研究发现, kenaf 内源性 HcU6-14 启动子的转录活性更高,并且与外源启动子相比,能够提高 CRISPR/Cas9 介导的基因组编辑效率。

How strong is the evidence for Rose-mallow?

The strongest finding for Rose-mallow carries evidence grade D — preliminary or traditional. Grades run A (strongest) to D (preliminary or traditional).

Is Rose-mallow safe? What are the side effects?

No major safety issues are recorded for Rose-mallow in our sources, but the data may be incomplete. Consult a qualified professional before use.

Does Rose-mallow interact with medications?

No drug interactions are recorded for Rose-mallow in our sources. This does not rule them out — check with a pharmacist.

What are the common names of Rose-mallow?

Rose-mallow is also known as: Гибискус, Ketmie, Hibiscus.

Is Rose-mallow 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

  1. T2 Bioengineered Zn2TiO4 nanomaterial and its effective electrochemical, antibacterial and photocatalytic responses. literature abstract metadata
  2. T2 Genome-Wide and Transcriptomic Analyses Reveal That HcERF37 Activates HcPDR1 to Confer Cadmium Tolerance in Kenaf. literature abstract metadata
  3. T2 Roselle Precision Drying: Comparative Performance of Smart Rotary Drum and Solar Dryers. literature abstract metadata
  4. T2 Cloning and functional verification of endogenous U6 promoters for developing an efficient CRISPR/Cas9-mediated genome editing system in kenaf (Hibiscus cannabinus L.). literature abstract metadata
  5. T2 Agro-Morphological and Cytogenetic Characterization of Hibiscus Genetic Resources: Implications for Germplasm Conservation and Interspecific Breeding. literature abstract metadata