Urea is a widespread organic pollutant, which can be a nitrogen source, playing different roles in the growth of submerged macrophytes depending on concentrations, while high cadmium (Cd) concentrations are often toxic to macrophytes. In order to evaluate the combined effect of urea and Cd on a submerged macrophyte, Cabomba caroliniana, the morphological and physiological responses of C. caroliniana in the presence of urea and Cd were studied. The results showed that high concentrations of urea (400mgL-1) and Cd (500µmolL-1) had negative effects on C. caroliniana. There were strong visible symptoms of toxicity after 4 days of exposure under Cd-alone, 400mgL-1 urea, and Cd+400mgL-1 urea treatments. In addition, 400mgL-1 urea and Cd had adverse effects on C. caroliniana's pigment system. Significant losses in chlorophyll fluorescence and photosynthetic rates, as well as Rubisco activity were also observed under Cd-alone, 400mgL-1 urea, and Cd+400mgL-1 urea treatments. 400mgL-1 urea markedly enhanced Cd toxicity in C. caroliniana, reflected by a sharp decrease in photosynthetic activity and more visible toxicity symptoms. The results of thiobarbituric acid reactive substances (TBARS) pointed to extreme oxidative stress in C. caroliniana induced under Cd or 400mgL-1 urea exposure. Exogenous ascorbate (AsA) protected C. caroliniana from adverse damage in 400mgL-1 urea, which further corroborated the oxidative stress claim under 400mgL-1 urea. However, results also demonstrated that lower urea concentration (10mgL-1) alleviated Cd-induced phytotoxicity by stimulating chlorophyll synthesis and photosynthetic activity, as well as activating the activity of catalase (CAT) and glutathione-S-transferase (GST), which may explain the alleviating effect of urea on C. caroliniana under Cd stress.

译文

尿素是一种广泛存在的有机污染物,可能是氮源,根据浓度的不同,在淹没的大型植物的生长中起不同的作用,而高浓度的镉 (Cd) 通常对大型植物有毒。为了评估尿素和Cd对淹没的大型植物Cabomba caroliniana的综合作用,研究了在尿素和Cd存在下caroliniana的形态和生理响应。结果表明,高浓度的尿素 (400mgL-1) 和Cd (500µmolL-1) 对C. caroliniana有负面影响。在单独的Cd,400mgL-1尿素和Cd 400mgL-1尿素处理下暴露4天后,出现了强烈的可见毒性症状。此外,400mgL-1尿素和Cd对C. caroliniana的色素系统也有不利影响。在单独的Cd,400mgL-1尿素和Cd 400mgL-1尿素处理下,还观察到叶绿素荧光和光合速率以及Rubisco活性的显着损失。400mgL-1尿素显着增强了C. caroliniana的Cd毒性,这反映在光合作用活性急剧下降和更明显的毒性症状上。硫代巴比妥酸反应性物质 (TBARS) 的结果表明,在Cd或400mgL-1尿素暴露下,caroliniana会引起极端的氧化应激。外源性抗坏血酸 (AsA) 保护了caroliniana免受400mgL-1尿素的不利损害,这进一步证实了400mgL-1尿素下的氧化应激要求。然而,结果还表明,较低的尿素浓度 (10mgL-1) 通过刺激叶绿素合成和光合活性以及激活过氧化氢酶 (CAT) 和谷胱甘肽S-转移酶 (GST) 的活性来减轻Cd诱导的植物毒性,这可以解释尿素在Cd胁迫下对C. caroliniana的缓解作用。

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