Plant Systems Engineering Research Center, Korea Research Institute of Bioscience and Biotechnology (KRIBB), Gwahak-ro, Daejeon, Korea.
Department of Environmental Biotechnology, KRIBB School of Biotechnology, Korea University of Science and Technology, Gajeong-ro, Daejeon, Korea.
J Exp Bot. 2018 Jun 19;69(14):3393-3400. doi: 10.1093/jxb/ery023.
Carotenoids play essential roles in various light-harvesting processes in plants and help protect the photosynthetic machinery from photo-oxidative damage. Orange genes, which play a role in carotenoid accumulation, have recently been isolated from several plant species, and their functions have been intensively investigated. The Orange gene (IbOr) of sweet potato [Ipomoea batatas (L.) Lam] helps maintain carotenoid homeostasis to improve plant tolerance to environmental stress. IbOr, a protein with strong holdase chaperone activity, directly interacts with phytoene synthase, a key enzyme involved in carotenoid biosynthesis, in plants under stress conditions, resulting in increased carotenoid accumulation and abiotic stress tolerance. In addition, IbOr interacts with the oxygen-evolving enhancer protein 2-1, a member of a protein complex in photosystem II that is denatured under heat stress. Transgenic sweet potato plants overexpressing IbOr showed enhanced tolerance to high temperatures (47 °C). These findings indicate that IbOr protects plants from environmental stress not only by controlling carotenoid biosynthesis, but also by directly stabilizing photosystem II. In this review, we discuss the functions of IbOr and Or proteins in other plant species and their possible biotechnological applications for molecular breeding for sustainable development on marginal lands.
类胡萝卜素在植物的各种光捕获过程中发挥着重要作用,并有助于保护光合作用机器免受光氧化损伤。橙色基因在类胡萝卜素积累中发挥作用,最近已从几种植物物种中分离出来,并对其功能进行了深入研究。甘薯[Ipomoea batatas(L.)Lam]的橙色基因(IbOr)有助于维持类胡萝卜素的动态平衡,提高植物对环境胁迫的耐受性。IbOr 是一种具有强烈热休克蛋白伴侣活性的蛋白质,在胁迫条件下与类胡萝卜素生物合成中的关键酶——phytoene synthase 直接相互作用,导致类胡萝卜素积累增加和非生物胁迫耐受性增强。此外,IbOr 与放氧增强蛋白 2-1 相互作用,后者是光合系统 II 中蛋白质复合物的一个成员,在热胁迫下变性。过表达 IbOr 的转基因甘薯植物对高温(47°C)表现出更强的耐受性。这些发现表明,IbOr 通过控制类胡萝卜素生物合成以及直接稳定光系统 II 来保护植物免受环境胁迫。在这篇综述中,我们讨论了 IbOr 和其他植物物种中的 Or 蛋白的功能及其在边缘土地可持续发展的分子育种中的可能生物技术应用。