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叶面喷施后菊苣(L. var. Hegi)叶片中碘和硒的显著积累。

Significant Accumulation of Iodine and Selenium in Chicory ( L. var. Hegi) Leaves after Foliar Spraying.

作者信息

Germ Mateja, Kacjan-Maršić Nina, Kroflič Ana, Jerše Ana, Stibilj Vekoslava, Golob Aleksandra

机构信息

Biotechnical Faculty, University of Ljubljana, 1501 Ljubljana, Slovenia.

Jožef Stefan Institute, 1501 Ljubljana, Slovenia.

出版信息

Plants (Basel). 2020 Dec 13;9(12):1766. doi: 10.3390/plants9121766.

Abstract

The interactions between the uptake of selenium (as selenite and selenate) and iodine (as iodate and iodide) by red chicory ( L. var. Hegi) and their effects on selected morphological and physiological characteristics were investigated. Seedlings were transplanted to the field, and at the onset of head formation, the plants were foliar-sprayed with the following solutions: Milli-Q water (control), Se (IV), Se (VI), I (-I), I (V), Se (IV) + I (-I), Se (IV) + I (V), Se (VI) + I (-I) and Se (VI) + I (V). The different treatments had no significant effects on the yield (39.8-51.5 t ha) and mass (970-1200 g) of the chicory heads. The selenium content in Se-treated plants was up to 5.5-times greater than the control plants. The iodine content in the chicory leaves enriched with I was 3.5-times greater than the control plants. Iodide or iodate, applied together with selenite in the spray solution, increased the uptake of Se by chicory plants, while both forms of iodine, applied together with selenate, reduced the uptake of Se. Plants treated with I (V) had lower amounts of chlorophyll and carotenoids than the control, while respiratory potential was higher than the control, which indicated the possible presence of stress in I (V)-treated plants. However, the potential photochemical efficiency of photosystem II was similar and close to the theoretical maximum (0.83) in the control and treated groups, which indicated that all of the plants were in good condition. Furthermore, the plant mass and yield were comparable in the control and treated groups. Molecular studies, like gene expression analysis, would represent a major upgrade of the present study by defining the mechanisms of Se and I uptake and their interactions and by enhancing the knowledge of the Se and I transporters.

摘要

研究了红菊苣(L. var. Hegi)对硒(亚硒酸盐和硒酸盐形式)和碘(碘酸盐和碘化物形式)的吸收及其相互作用对选定形态和生理特征的影响。将幼苗移植到田间,在头状花序形成开始时,对植株进行叶面喷施以下溶液:超纯水(对照)、硒(IV)、硒(VI)、碘(-I)、碘(V)、硒(IV)+碘(-I)、硒(IV)+碘(V)、硒(VI)+碘(-I)和硒(VI)+碘(V)。不同处理对菊苣头状花序的产量(39.8 - 51.5吨/公顷)和质量(970 - 1200克)没有显著影响。硒处理植株中的硒含量比对照植株高出5.5倍。富含碘的菊苣叶片中的碘含量比对照植株高出3.5倍。喷雾溶液中与亚硒酸盐一起施用的碘化物或碘酸盐增加了菊苣植株对硒的吸收,而两种形式的碘与硒酸盐一起施用时,则降低了硒的吸收。用碘(V)处理的植株叶绿素和类胡萝卜素含量低于对照,而呼吸潜力高于对照,这表明用碘(V)处理的植株可能存在胁迫。然而,对照组和处理组中光系统II的潜在光化学效率相似且接近理论最大值(0.83),这表明所有植株状况良好。此外,对照组和处理组的植株质量和产量相当。分子研究,如基因表达分析,将通过确定硒和碘的吸收机制及其相互作用以及增进对硒和碘转运体的了解,对本研究进行重大升级。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2529/7764295/e8e63a6ee7b4/plants-09-01766-g001.jpg

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