Suppr超能文献

生态环境中的维生素D。

Vitamin D in an ecological context.

作者信息

Björn L O, Wang T

机构信息

Department of Plant Biology, Lund University, Sweden.

出版信息

Int J Circumpolar Health. 2000 Jan;59(1):26-32.

Abstract

Although numerous investigations have been carried out concerning the occurrence of vitamin D (D2 and D3) and their provitamins in different foodstuffs, about the effects of vitamin D intake on the human body as well as the cellular effects of the physiologically active form of vitamin D, there are almost no studies on vitamin D in an ecological context. One source for vitamin D is fish. But fish cannot synthesize vitamin D, nor provitamin D. Both originate at the beginning of the food chain, in phytoplankton. It is likely that the conversion of provitamin D (D2 and D3) to vitamin D can take place only under the influence of ultraviolet-B radiation in algae. Therefore the vitamin/provitamin ratio can perhaps be used as a much needed internal "exposure meter" for UV-B radiation. As is well known, provitamin D3 (7-dehydrocholesterol) can be converted to vitamin D3 also in human skin under the influence of ultraviolet-B radiation. Little is known about which species or groups of planktonic algae are capable of vitamin D synthesis, since only natural mixtures of algae and a few defined species have been analyzed. We have observed that reindeer lichen contains vitamin D2 and D3. For plant scientists vitamin D is interesting also because it is synthesized by some (but not all) higher plants, and acts as a growth substance in plants. Provitamin D2 (ergosterol) is synthesized by many fungi, and this fact may explain some traits of plant-fungal symbiosis.

摘要

尽管已经针对不同食品中维生素D(D2和D3)及其维生素原的存在、维生素D摄入量对人体的影响以及维生素D生理活性形式的细胞效应开展了大量研究,但几乎没有关于生态环境中维生素D的研究。维生素D的一个来源是鱼类。但鱼类既不能合成维生素D,也不能合成维生素原D。两者都始于食物链的起点——浮游植物。维生素原D(D2和D3)向维生素D的转化可能仅在藻类中的紫外线B辐射影响下发生。因此,维生素/维生素原的比例或许可以用作急需的紫外线B辐射内部“暴露计量仪”。众所周知,维生素原D3(7-脱氢胆固醇)在紫外线B辐射影响下也能在人体皮肤中转化为维生素D3。对于哪些浮游藻类物种或类群能够合成维生素D,人们知之甚少,因为仅分析过藻类的天然混合物和少数特定物种。我们观察到驯鹿地衣含有维生素D2和D3。对于植物科学家来说,维生素D也很有趣,因为它由一些(但不是所有)高等植物合成,并在植物中作为一种生长物质发挥作用。维生素原D2(麦角固醇)由许多真菌合成,这一事实或许可以解释植物与真菌共生的一些特性。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验