Nourimand Maryam, Todd Christopher D
Department of Biology, University of Saskatchewan, Saskatoon, S7N 5E2, Canada.
Department of Biology, University of Saskatchewan, Saskatoon, S7N 5E2, Canada.
Plant Physiol Biochem. 2017 Oct;119:103-109. doi: 10.1016/j.plaphy.2017.08.012. Epub 2017 Aug 17.
Ureides are nitrogen-rich compounds, derived from purine catabolism. A dual role for ureides, and for allantoin in particular, in both nitrogen recycling and the abiotic stress response has been recently identified. Previous work on the effect of allantoin on cadmium (Cd)-exposed Arabidopsis revealed that high concentration of allantoin in allantoinase-negative mutant (aln-3) leaves alleviates Cd toxicity via inducing antioxidant mechanisms in these plants. In the present study, we evaluate whether allantoin has a similar protective role in roots. Both wild type and aln-3 roots contain higher amounts of internal Cd compared to leaves. Likewise, aln-3 roots are more resistant to Cd, reflected in fresh and dry weight, and stimulated antioxidant enzyme activity, including superoxide dismutase (SOD) and catalase (CAT), resulting in lower reactive oxygen species concentration. In contrast with wild-type leaves, high levels of Cd in Col-0 roots reduces transcript abundance of uricase, leading to a significant decline in allantoin level of treated roots at 1000 and 1500 μM CdCl. This metabolite change is also accompanied by decreasing the activity of antioxidant enzymes (SOD and CAT). Additionally, contrary to wild-type leaves, root genotype has a significant effect on CAT activity under Cd treatment, suggesting the possible different sources of damage and oxidative stress response in these two tissues.
脲类是富含氮的化合物,来源于嘌呤分解代谢。最近发现脲类,尤其是尿囊素,在氮循环和非生物胁迫响应中具有双重作用。先前关于尿囊素对镉(Cd)处理的拟南芥影响的研究表明,尿囊素酶阴性突变体(aln-3)叶片中高浓度的尿囊素通过诱导这些植物的抗氧化机制来减轻镉毒性。在本研究中,我们评估尿囊素在根中是否具有类似的保护作用。与叶片相比,野生型和aln-3根中积累了更多的内部镉。同样,aln-3根对镉更具抗性,这体现在鲜重和干重上,并且刺激了抗氧化酶活性,包括超氧化物歧化酶(SOD)和过氧化氢酶(CAT),从而降低了活性氧浓度。与野生型叶片相反,Col-0根中高浓度的镉降低了尿酸酶的转录丰度,导致在1000和1500 μM CdCl处理下根中尿囊素水平显著下降。这种代谢物变化还伴随着抗氧化酶(SOD和CAT)活性的降低。此外,与野生型叶片相反,根基因型在镉处理下对CAT活性有显著影响,表明这两个组织中可能存在不同的损伤来源和氧化应激反应。