硒
硒酸盐
生物强化
遗传算法
化学
开枪
环境化学
生物利用度
食品科学
光合作用
植物
生物
生物化学
微量营养素
生态学
有机化学
生物信息学
作者
Yan Li,Yiran Xiao,Jinghong Hao,Shuangxi Fan,Ruifang Dong,Haihong Zeng,Chaojie Liu,Yingyan Han
标识
DOI:10.1016/j.plaphy.2022.10.007
摘要
Lettuce is a common vegetable in hydroponic production. In this paper, a selenium (Se)-biofortification method was provided. The Se content, speciation, and the effects of different concentrations of selenate and selenite on lettuce growth and amino acids were investigated. The results showed that lettuce had strong ability to accumulate exogenous selenium, and inorganic Se could be effectively converted into organic Se. The proportion of organic Se in the shoots under treatment with 4 μmol L-1 selenite was 100%. Selenomethionine was the main organic Se, accounting for 51% (selenate) and 90% (selenite) of the total Se. Adding Se improves photosynthesis of lettuce and promotes growth. The growth with 2 μmol L-1 selenate and 4 μmol L-1 selenite was better than CK, and the shoot fresh weight was increased by 143.22% and 166.98%, respectively. Furthermore, the optimum Se application is 2 μmol L-1, and some areas can apply 4 μmol L-1 selenite. But Se-excessive areas are not recommended to grow selenium-rich foods. Therefore, lettuce has strong biofortification potential.
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