铅毒性诱导硬粒小麦萌发和幼苗生化指标的变化。简历。Vitron和Gta

S. Slimani, M. Boudelaa, Saddek Abdelmadjid, A. Ladjama, Imène Nedjah, M. Benkaddour
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引用次数: 0

摘要

在陆地上最常见的重金属中,铅是土壤和沉积物中最具代表性的污染物。它很容易在植物的不同部位被吸收和积累。在宏观上,铅对植物有不利影响。首先,在过量的情况下,它可能对萌发发育的几个阶段产生毒性,影响发育早期的叶片形成和根伸长。在实验室条件下分析了铅对两个硬粒小麦品种Triticum durum cv Gta和Vitron发芽的影响。目的是确定铅对(i)生发参数和(ii)应激生理标志物的影响。试验采用完全随机设计,每个品种20个种子,3个重复,4种浓度Pb(NO3)2(0、320、430和660 ppm)对发芽的影响。平均环境温度为22°C,湿度为32%,光周期光暗比为16/8 h,结果表明萌发对铅具有真实的敏感性。事实上,在最高浓度处理的所有种子中,这两个品种完全没有发芽。随着铅处理剂量的增加,种子的萌发能力和色素含量明显下降,细胞代谢、蛋白质、脯氨酸和谷胱甘肽水平受到破坏。这些结果表明,铅胁迫导致生发参数降低,细胞生化指标明显受损。这种效果与使用的剂量成反比。还注意到,Gta品种对铅毒性的敏感性低于Vitron。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lead Phytotoxicity Induced Changes in Biochemical Markers in Germination and Seedlings in Durum Wheat Triticum durum Desf. Cv.Vitron and Gta
Among the heavy metals most commonly found on land, lead is a strongly represented pollutant in soil and sediments. It is easily absorbed and accumulated in different parts of plants. On the macroscopic scale, lead causes unfavorable effects on plants. First and in the event of excess, it may exert toxicity affecting several stages of germination development in leaf formation and root elongation in the early stages of development. The effect of lead on two varieties of durum wheat Triticum durum cv Gta and Vitron have been analyzed on germination under laboratory conditions. The objective is to determine the influence of lead on (i) germinal parameters and (ii) the stress physiological markers. The experiment was set up in a completely randomized design with 3 replications of 20 seeds per variety, including 4 concentrations of Pb(NO3)2 (0, 320, 430 and 660 ppm) on the germination. Average ambient temperature was 22°C, the humidity was 32% and photoperiod light/dark was 16/8 h. The obtained results showed a real sensitivity of germination to lead. Indeed, it was noted a total absence of germination of the two varieties in all seeds treated with the highest concentration. The treatment of seeds by the increasing doses of lead decreased the germinative faculty considerably, the content of pigments and disrupted the cellular metabolism, the proteins, the proline and glutathione levels. These results indicated that lead stress caused a decrease in germinal parameters and significant impairment of cell biochemical markers. Such effect was inversely proportional to the doses used. It was also noted that the Gta variety was less sensitive to lead toxicity than Vitron.
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