首页> 外文期刊>Frontiers in Plant Science >Iodine and Selenium Biofortification with Additional Application of Salicylic Acid Affects Yield, Selected Molecular Parameters and Chemical Composition of Lettuce Plants ( Lactuca sativa L. var. capitata)
【24h】

Iodine and Selenium Biofortification with Additional Application of Salicylic Acid Affects Yield, Selected Molecular Parameters and Chemical Composition of Lettuce Plants ( Lactuca sativa L. var. capitata)

机译:碘和硒的生物强化与水杨酸的附加施用影响莴苣植物(苜蓿 L.var。 capitata )的产量,所选分子参数和化学组成

获取原文
           

摘要

Iodine (I) and selenium (Se) are included in the group of beneficial elements. They both play important roles in humans and other animals, particularly in the regulation of thyroid functioning. A substantial percentage of people around the world suffer from health disorders related to the deficiency of these elements in the diet. Salicylic acid (SA) is a compound similar to phytohormones and is known to improve the efficiency of I biofortification of plants. The influence of SA on Se enrichment of plants has not, however, been recognized together with its effect on simultaneous application of I and Se to plants. Two-year studies (2014–2015) were conducted in a greenhouse with hydroponic cultivation of lettuce in an NFT (nutrient film technique) system. They included the application of I (as KIO_(3)), Se (as Na_(2)SeO_(3)) and SA into the nutrient solution. KIO_(3)was used at a dose of 5 mg I?dm~(-3)(i.e., 39.4 μM I), while Na_(2)SeO_(3)was 0.5 mg Se?dm~(-3)(i.e., 6.3 μM Se). SA was introduced at three doses: 0.1, 1.0, and 10.0 mg?dm~(-3)nutrient solutions, equivalent to 0.724, 7.24, and 72.4 μM SA, respectively. The tested combinations were as follows: (1) control, (2) I + Se, (3) I + Se + 0.1 mg SA?dm~(-3), (4) I + Se + 1.0 mg SA?dm~(-3)and (5) I + Se + 10.0 mg SA?dm~(-3). The applied treatments had no significant impact on lettuce biomass (leaves and roots). Depending on the dose, a diverse influence of SA was noted with respect to the efficiency of I and Se biofortification; chemical composition of leaves; and mineral nutrition of lettuce plants, including the content of macro- and microelements and selenocysteine methyltransferase ( SMT ) gene expression. SA application at all tested doses comparably increased the level of selenomethionine (SeMet) and decreased the content of SA in leaves.
机译:有益元素包括碘(I)和硒(Se)。它们在人类和其他动物中都起着重要作用,尤其是在甲状腺功能的调节中。世界上相当大比例的人患有与饮食中这些元素缺乏有关的健康疾病。水杨酸(SA)是类似于植物激素的化合物,已知可以提高植物的生物强化效率。然而,尚未认识到SA对植物富硒的影响,以及其对同时施用I和Se对植物的影响。在温室中进行了为期两年的研究(2014-2015年),在NFT(营养膜技术)系统中对水莴苣进行水培栽培。它们包括将I(作为KIO_(3)),Se(作为Na_(2)SeO_(3))和SA施用到营养液中。 KIO_(3)的剂量为5 mg I?dm〜(-3)(即39.4μMI),而Na_(2)SeO_(3)的剂量为0.5 mg Se?dm〜(-3)(即,6.3μMSe)。 SA以三种剂量引入:0.1、1.0和10.0 mg?dm〜(-3)营养液,分别相当于0.724、7.24和72.4μMSA。测试的组合如下:(1)对照,(2)I + Se,(3)I + Se + 0.1 mg SA?dm〜(-3),(4)I + Se + 1.0 mg SA?dm〜 (-3)和(5)I + Se + 10.0 mg SA·dm〜(-3)。施用的处理对生菜生物量(叶和根)没有显着影响。视剂量而定,SA对I和Se生物强化的效率有多种影响。叶子的化学成分和生菜植物的矿物质营养,包括宏观和微量元素的含量以及硒代半胱氨酸甲基转移酶(SMT)基因表达。在所有测试剂量下SA的施用都可相对提高硒代蛋氨酸(SeMet)的水平,并降低叶片中SA的含量。

著录项

相似文献

  • 外文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号