生物强化
农学
生产(经济)
锂(药物)
化学
生物
微量营养素
经济
内分泌学
宏观经济学
有机化学
作者
Danilo Pereira Ramos,Guillermo Arturo Herrera Chan,Wanessa Rocha de Souza,Dayara Vieira Silva,Larissa Urzêdo Rodrigues,Patrícia Sumara Moreira Fernandes,Paulo Henrique Cavazzini,Danyllo Santos Dias,Roberto Antonio Savelli Martinez,Damiana Beatriz da Silva,Patrícia Martins Guarda,Emerson Adriano Guarda,Vitor L. Nascimento,Renato Almeida Sarmento,Rodrigo Ribeiro Fidélis
摘要
Context Lithium (Li) is an essential trace element for human health. Although the biofortification of rice (Oryza sativa) with Li is a promising strategy to overcome its deficiency, little is known about its biological activity in plants. Aims We determined the effect of sources and doses of Li applied via the leaves on the biofortification, physiological components, and production of irrigated rice. Methods The experimental design consisted of randomised blocks in a 5 × 3 factorial arrangement, with four replicates. The factors consisted of five doses of Li (0, 50, 100 150, and 200 g ha−1) and three sources (lithium sulfate, Li2SO4·H2O; lithium hydroxide, LiOH·H2O; and lithium chloride, LiCl). Key results Regardless of the source used, foliar application of Li allowed bioaccumulation in rice grains without influencing the development and grain yield of the crop. Supplying Li to rice plants in the form of Li2SO4·H2O increased the photosynthetic rate and water use efficiency. Moreover, regardless of the source used, the consumption of rice grains biofortified with Li at a dose of 200 g ha−1 can supply more than 50% of the minimum recommended daily intake of the element. Conclusions Foliar spraying of Li is effective for agronomic biofortification of rice. Implications Biofortification of rice with Li can contribute to reducing its deficiency in naturally poor regions.
科研通智能强力驱动
Strongly Powered by AbleSci AI