Pinus sylvestris
Pinus sylvestris
Pinus sylvestris,又称苏格兰松,是一种传统药用植物,原产于欧洲和亚洲。其传统的用途在任何特定的医疗实践或文化中都没有很好地记录下来。科学证据表明,长期使用Pinus sylvestris var. mongolica可以增加煤矸石堆中的微生物群落丰富度并改变基质质量,这可能具有潜在的生态效益。辐射暴露研究表明,苏格兰松木的剂量依赖性效应存在,并且恢复途径根据辐射严重程度而异。UV-B预处理对苏格兰松和挪威云杉的耐受性影响不同,抗氧化能力增强和黄酮积累是关键机制。没有记录到与Pinus sylvestris相关的重大安全问题或药物相互作用。
- 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
- 长期恢复Pinus sylvestris var. mongolica增加了煤矸石堆中微生物群落的丰富度并改变了基质质量。
- 1986年的辐射暴露导致云杉木材异常和液压能力降低,恢复途径因中等剂量或条件性致死剂量而异。
- 紫外线B预照射对苏格兰松和挪威云杉的耐受性影响不同,这取决于光照周期,增强的抗氧化能力和类黄酮积累是关键机制。
- 稀疏的自然定居Pinus sylvestris 在树木周围2米范围内对土壤湿度和养分比例产生了局部影响,但并未显著影响其他性质。
- 这项研究发现,慢性伽马射线照射在苏格兰松幼苗中引起了组织特异性变化,包括茎尖生长激素减少和胚乳中氨基酸增加。
Frequently asked questions
What is Pinus sylvestris?
Pinus sylvestris (Pinus sylvestris) 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 Pinus sylvestris?
5 sourced findings are recorded for Pinus sylvestris; the strongest carries evidence grade D. For example: 长期恢复Pinus sylvestris var. mongolica增加了煤矸石堆中微生物群落的丰富度并改变了基质质量。
How strong is the evidence for Pinus sylvestris?
The strongest finding for Pinus sylvestris carries evidence grade D — preliminary or traditional. Grades run A (strongest) to D (preliminary or traditional).
Is Pinus sylvestris safe? What are the side effects?
No major safety issues are recorded for Pinus sylvestris in our sources, but the data may be incomplete. Consult a qualified professional before use.
Does Pinus sylvestris interact with medications?
No drug interactions are recorded for Pinus sylvestris in our sources. This does not rule them out — check with a pharmacist.
What are the common names of Pinus sylvestris?
Pinus sylvestris is also known as: сосна обыкновенная, Pin sylvestre.
Is Pinus sylvestris 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 Responses of microbial community structure and substrate quality in coal gangue piles to stand age of Pinus sylvestris var. mongolica. literature abstract metadata
- T2 Targeted metabolomic and gene expression analysis reveals an organ-specific response to chronic ionizing radiation exposure during Pinus sylvestris seedling development. literature abstract metadata
- T2 Localised effects of sparse natural tree colonisation on soil physicochemical properties. literature abstract metadata
- T2 Photoperiod modulates UV-B-induced acclimation to high light in Norway spruce and Scots pine seedlings. literature abstract metadata
- T2 Hidden radiation legacy revealed in Scots pine's xylem structure and hydraulic function after the Chornobyl accident. literature abstract metadata