Robert W. Holley Center for Agriculture and Health, USDA-ARS, Cornell University, Ithaca, NY 14853, USA.
Planta. 2011 Apr;233(4):649-60. doi: 10.1007/s00425-010-1323-6. Epub 2010 Dec 11.
Selenium (Se) is an essential micronutrient for animals and humans. Increasing Se content in food crops offers an effective approach to reduce the widespread selenium deficiency problem in many parts of the world. In this study, we evaluated 30 diverse accessions of lettuce (Lactuca sativa L.) for their capacity to accumulate Se and their responses to different forms of Se in terms of plant growth, nutritional characteristics, and gene expression. Lettuce accessions responded differently to selenate and selenite treatment, and selenate is superior to selenite in inducing total Se accumulation. At least over twofold change in total Se levels between cultivars with high and low Se content was found. Synergistic relationship between Se and sulfur accumulation was observed in nearly all accessions at the selenate dosage applied. The change in shoot biomass varied between lettuce accessions and the forms of Se used. The growth-stimulated effect by selenate and the growth-inhibited effect by selenite were found to be correlated with the alteration of antioxidant enzyme activities. The different ability of lettuce accessions to accumulate Se following selenate treatment appeared to be associated with an altered expression of genes involved in Se/S uptake and assimilation. Our results provide important information for the effects of different forms of Se on plant growth and metabolism. They will also be of help in selecting and developing better cultivars for Se biofortification in lettuce.
硒(Se)是动物和人类必需的微量元素。增加食物作物中的硒含量是减少世界许多地区普遍存在的硒缺乏问题的有效方法。在这项研究中,我们评估了 30 种不同生菜(Lactuca sativa L.)品种对硒的积累能力,以及它们对植物生长、营养特性和基因表达方面不同形式硒的反应。生菜品种对亚硒酸盐和亚硒酸盐处理的反应不同,而且亚硒酸盐在诱导总硒积累方面优于亚硒酸盐。在高硒和低硒含量的品种之间发现总硒水平至少有两倍的变化。在应用的亚硒酸盐剂量下,几乎所有品种都观察到硒和硫积累之间的协同关系。在不同的生菜品种和硒形式之间,芽生物量的变化不同。发现亚硒酸盐的生长刺激作用和亚硒酸盐的生长抑制作用与抗氧化酶活性的改变有关。在亚硒酸盐处理后,生菜品种积累硒的不同能力似乎与参与硒/硫摄取和同化的基因的表达改变有关。我们的研究结果为不同形式的硒对植物生长和代谢的影响提供了重要信息。它们还将有助于选择和开发更好的生菜品种进行硒生物强化。