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硒对年轻的鞑靼荞麦植物线粒体活性的影响。

Impact of selenium on mitochondrial activity in young Tartary buckwheat plants.

机构信息

Biotechnical Faculty, University of Ljubljana, Jamnikarjeva 101, SI-1000 Ljubljana, Slovenia.

出版信息

Plant Physiol Biochem. 2013 Feb;63:196-9. doi: 10.1016/j.plaphy.2012.11.027. Epub 2012 Dec 12.

Abstract

To investigate the impact of Se on Tartary buckwheat (Fagopyrum tataricum Gaertn.) plants, the plant foliage was sprayed with 10 mg Se(VI) L(-1) at the beginning of flowering. The Se was effectively assimilated by the plants and taken into the seeds, where its concentration was more than double that in untreated plants. The seeds were collected and sown to obtain the progeny of these Se-treated plants. To assess the physiological characteristics of control plants and these Se-treated progeny plants, the estimated respiratory potential via electron transport system (ETS) activity and the photochemical efficiency of photosystem II were measured. Three weeks after germination, the Se-treated progeny plants showed higher ETS activity compared to the controls. Through weeks 4 and 5, this high ETS activity approximately halved, and the difference in ETS activity seen at 3 weeks was lost. On the other hand, at week 4, the potential photochemical efficiency was higher in the Se-treated progeny plants than the controls. In adult plants, the leaves dry mass was significantly greater in the Se-treated progeny plants than the controls. This study demonstrates an impact of Se in Tartary buckwheat on the progeny plants of Se sprayed plants, as shown previously in pea plants.

摘要

为了研究硒对苦荞(鞑靼荞麦)植物的影响,在开花初期向植物叶片喷洒 10 mg Se(VI) L(-1)。硒被植物有效吸收并进入种子,其浓度是未处理植物的两倍多。收集种子并播种以获得这些经硒处理的植物的后代。为了评估对照植物和这些经硒处理的后代植物的生理特性,通过电子传递系统(ETS)活性来估计呼吸潜能和光系统 II 的光化学效率。发芽后 3 周,经硒处理的后代植物的 ETS 活性高于对照。在第 4 周和第 5 周期间,这种高 ETS 活性几乎减半,而第 3 周观察到的 ETS 活性差异消失。另一方面,在第 4 周,经硒处理的后代植物的潜在光化学效率高于对照。在成年植物中,经硒处理的后代植物的叶片干质量明显大于对照。这项研究表明,在豌豆植物中先前观察到的那样,硒对喷洒硒的植物的后代植物在苦荞中产生了影响。

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