Black Locust

Robinia pseudoacacia

Robinia pseudoacacia,通常称为黑刺槐,是一种原产于北美洲东南部的树木,但在世界各地广泛栽培。传统医学没有记录该植物在各种文化中的特定用途。科学证据主要集中在生态和生物学研究上,而不是药用应用方面。研究表明,在城市环境中,Robinia pseudoacacia 森林的径向生长速率低于农村地区,这可能归因于环境因素。研究还发现,随着树木老化,微生物衍生碳,尤其是真菌残余物,显著增加了土壤有机碳库。此外,基因组和转录组分析为刺槐 stipular 刺的木质化过程提供了见解。WZ14 接种已被证明可以增加各种豆科植物中的重金属积累,但效果因物种而异。值得注意的是,与该植物相关的重大安全问题或药物相互作用记录很少。

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

  • 两种植物——日本松(Pinus thunbergii)和刺槐(Robinia pseudoacacia)在城市地区的径向生长速率均低于农村地区。 D PMID
  • 微生物衍生的碳,尤其是真菌残余物,在Robinia pseudoacacia 森林老化过程中增加并成为土壤有机碳库的主要组成部分。 D PMID
  • 该研究通过基因组和转录组分析,为罗宾尼亚伪赤松(Robinia pseudoacacia)刺状棘的木质化过程提供了见解。 D PMID
  • WZ14 接种显著增加了不同豆科植物中重金属的积累,具有物种特异性效果。 D PMID

Frequently asked questions

What is Black Locust?

Black Locust (Robinia pseudoacacia) 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 Black Locust?

4 sourced findings are recorded for Black Locust; the strongest carries evidence grade D. For example: 两种植物——日本松(Pinus thunbergii)和刺槐(Robinia pseudoacacia)在城市地区的径向生长速率均低于农村地区。

How strong is the evidence for Black Locust?

The strongest finding for Black Locust carries evidence grade D — preliminary or traditional. Grades run A (strongest) to D (preliminary or traditional).

Is Black Locust safe? What are the side effects?

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

Does Black Locust interact with medications?

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

What are the common names of Black Locust?

Black Locust is also known as: Робиния псевдоакация.

Is Black Locust 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 Genome and transcriptomics provide insights on stipular spine morphogenesis in Robinia pseudoacacia. literature abstract metadata
  2. T2 Shifts in Plant- and Microbe-Derived Carbon Pathways during Forest Restoration Drive Soil Carbon Stabilization in Mu Us Sandy Lands. literature abstract metadata
  3. T2 Effects of microbial agents and leguminous plants on multi-heavy metal accumulation: Key dominant genera response and microbial network stability. literature abstract metadata
  4. T2 [Radial growth and ecological resilience to extreme drought of Pinus thunbergii and Robinia pseudoacacia in urban and rural environments of Qingdao, China]. literature abstract metadata