Tanaka Masaru, Ishiguro Koji, Oki Tomoyuki, Okuno Shigenori
Division of Upland Farming Research, Kyushu Okinawa Agricultural Research Center, NARO, Yokoichi 6651-2, Miyakonojo, Miyazaki 885-0091, Japan.
Division of Field Crop Research and Development, Hokkaido Agricultural Research Center, NARO, Shinsei Minami 9-4, Memuro, Kasai, Hokkaido 082-0081, Japan.
Breed Sci. 2017 Jan;67(1):52-61. doi: 10.1270/jsbbs.16125. Epub 2017 Feb 16.
In addition to the nutritionally important components such as starches, vitamins and minerals, storage roots and leaves of sweetpotato () contains several components with health-promoting functions. Of these, the functionalities of carotenoids, anthocyanins and caffeoylquinic acids have been well established by and experiments. Several sweetpotato cultivars containing high levels of these components have been developed in Japan; e.g., 'Ayamurasaki', which has high amounts of anthocyanin in its storage roots. To further improve the content and also to change the composition of these functional components, the identification of the genes involved in their biosynthesis and genetic modification of the biosynthetic pathway has been attempted. In this review, we summarize the present status of the research and breeding for these functional components, and we discuss the future prospects for improving sweetpotato functionality.
除了淀粉、维生素和矿物质等营养重要成分外,甘薯()的贮藏根和叶片还含有几种具有促进健康功能的成分。其中,类胡萝卜素、花青素和咖啡酰奎尼酸的功能已通过实验和实验得到充分证实。日本已培育出几种含有高水平这些成分的甘薯品种;例如,“绫紫”,其贮藏根中含有大量花青素。为了进一步提高这些功能成分的含量并改变其组成,人们尝试鉴定参与其生物合成的基因并对生物合成途径进行基因改造。在这篇综述中,我们总结了这些功能成分的研究和育种现状,并讨论了改善甘薯功能的未来前景。