Carlsberg Research Center, 10 Gamle Carlsberg Vej, DK-2500 Valby, Denmark.
J Exp Bot. 2010 Jun;61(6):1549-66. doi: 10.1093/jxb/erq030.
Tocopherols and tocotrienols, collectively known as tocochromanols, are lipid-soluble molecules that belong to the group of vitamin E compounds and are essential in the human diet. Not surprisingly, most of what is known about the biological functions of tocochromanols comes from studies of mammalian systems, yet they have been shown to be synthesized only by photosynthetic organisms. The last decade has seen a radical change in the appreciation of the biological role of tocochromanols in plants thanks to a detailed characterization of mutant and transgenic plants, including several Arabidopsis thaliana mutants, the sucrose export defective1 (sxd1) maize mutant, and some transgenic potato and tobacco lines altered in tocochromanol biosynthesis. Recent findings indicate that tocopherols may play important roles in plants beyond their antioxidant function in photosynthetic membranes. Plants deficient in tocopherols show alterations in germination and export of photoassimilates, and growth, leaf senescence, and plant responses to abiotic stresses, thus suggesting that tocopherols may influence a number of physiological processes in plants. Thus, in this review not only the antioxidant function of tocochromanols in plants, but also these new emerging possible roles will be considered. Particular attention will be paid to specific roles attributed to different tocopherol homologues (particularly alpha- and gamma-tocopherol) and the possible functions of tocotrienols, which in contrast to tocopherols are only present in a range of unrelated plant groups and are almost exclusively found in seeds and fruits.
生育酚和三烯生育酚,统称为生育酚,是脂溶性分子,属于维生素 E 化合物组,在人类饮食中必不可少。毫不奇怪,对生育酚生物功能的了解大部分来自对哺乳动物系统的研究,然而,已经证明它们仅由光合生物合成。过去十年,由于对包括拟南芥突变体、蔗糖输出缺陷 1(sxd1)玉米突变体和一些在生育酚生物合成中改变的转基因马铃薯和烟草系在内的突变体和转基因植物的详细特征描述,人们对植物中生育酚的生物作用有了根本性的认识。最近的发现表明,生育酚在植物中的作用可能超出了其在光合膜中的抗氧化功能。生育酚缺乏的植物在萌发和光合同化物输出、生长、叶片衰老和植物对非生物胁迫的反应方面表现出改变,这表明生育酚可能影响植物中的许多生理过程。因此,在本次综述中,不仅考虑了生育酚在植物中的抗氧化功能,还考虑了这些新出现的可能作用。特别关注归因于不同生育酚同系物(特别是α-和γ-生育酚)的特定作用,以及生育三烯酚的可能功能,与生育酚不同,生育三烯酚仅存在于一系列无亲缘关系的植物群中,几乎只存在于种子和果实中。