Demmig-Adams Barbara, Adams William W
Department of Environmental, Population, and Organismic Biology, University of Colorado, Boulder, CO 80309-0334, USA.
Science. 2002 Dec 13;298(5601):2149-53. doi: 10.1126/science.1078002.
The harnessing of solar energy by photosynthesis depends on a safety valve that effectively eliminates hazardous excess energy and prevents oxidative damage to the plant cells. Many of the compounds that protect plant cells also protect human cells. Improving plant resistance to stress may thus have the beneficial side effect of also improving the nutritional quality of plants in the human diet. The pathways that synthesize these compounds are becoming amenable to genetic manipulation, which may yield benefits as widespread as improved plant stress tolerance and improved human physical and mental health.
光合作用对太阳能的利用依赖于一种安全阀,该安全阀能有效消除有害的多余能量,并防止对植物细胞的氧化损伤。许多保护植物细胞的化合物也能保护人类细胞。因此,提高植物的抗逆性可能还会产生有益的副作用,即提高人类饮食中植物的营养质量。合成这些化合物的途径正变得易于进行基因操作,这可能会带来广泛的益处,如提高植物的胁迫耐受性以及改善人类的身心健康。