Key Laboratory of Ministry of Education for Coastal and Wetland Ecosystems, Xiamen University, Xiamen 361102, PR China.
Key Laboratory of Ministry of Education for Coastal and Wetland Ecosystems, Xiamen University, Xiamen 361102, PR China; State Key Laboratory of Marine Environmental Science, Xiamen University, Xiamen 361102, PR China.
Ecotoxicol Environ Saf. 2019 Mar;169:134-143. doi: 10.1016/j.ecoenv.2018.11.004. Epub 2018 Nov 13.
In the present study, a set of pot culture experiments was conducted to reveal how the metabolism process of phenolic compounds was affected by cadmium (Cd) and zinc (Zn) and to further uncover heavy metal tolerance mechanisms in Kandelia obovata. After 60d of treatment, the biomass and chlorophyll a content in the leaves were suppressed, but total phenolic compounds in roots and leaves were improved by the increasing gradient of Cd or Zn concentrations; Total phenolic compounds significantly increased by 3.6-44.6% in the roots, and by 0.4-126.6% in the leaves. At the meantime, the activity of Shikimate dehydrogenase (SKDH), cinnamyl alcohol dehydrogenase (CAD), and polyphenol oxidase (PPO) in the roots increased by 11.2-307.6%, 12.4-175.4% and - 2.7-392.8%, and the results were 3.4-69.5%, 1.7-40.0%, 16.0-99.7% in the leaves. Higher toxicity of Cd than Zn, as well as slight alleviating effect of 100 mg kg Zn on 2.5 mg kg Cd were found. Additionally, a significantly positive correlation coefficients for relationship between phenolic metabolism related enzyme activity and Cd/Zn contamination levels was found, and leaf SKDH, leaf CAD, and leaf PPO activities were moderately correlated with leaf Cd (r = 0.39, r = 0.43, and r = 0.57, respectively) and leaf Zn (r = 0.44, r = 0.41, r = 0.19, respectively) content, which indicate that Cd and Zn play a previously unrecognized but major role in phenolic compounds synthesis, transport, and metabolism in K. obovata. The results also provided evidence that the application of high levels of Cd and Zn was accompanied by three phenolic metabolism pathways participating in heavy metal tolerance process.
在本研究中,进行了一系列盆栽实验,以揭示酚类化合物的代谢过程如何受到镉 (Cd) 和锌 (Zn) 的影响,并进一步揭示秋茄 (Kandelia obovata) 对重金属的耐受机制。经过 60d 的处理,叶片的生物量和叶绿素 a 含量受到抑制,但随着 Cd 或 Zn 浓度梯度的增加,根和叶中的总酚含量得到改善;根中总酚含量提高了 3.6-44.6%,叶中提高了 0.4-126.6%。与此同时,根中莽草酸脱氢酶 (SKDH)、肉桂醇脱氢酶 (CAD) 和多酚氧化酶 (PPO) 的活性分别提高了 11.2-307.6%、12.4-175.4%和-2.7-392.8%,叶中分别提高了 3.4-69.5%、1.7-40.0%、16.0-99.7%。Cd 的毒性高于 Zn,100mgkg Zn 对 2.5mgkg Cd 有轻微缓解作用。此外,还发现酚类代谢相关酶活性与 Cd/Zn 污染水平之间存在显著的正相关系数,叶片 SKDH、叶片 CAD 和叶片 PPO 活性与叶片 Cd(r=0.39、r=0.43 和 r=0.57)和叶片 Zn(r=0.44、r=0.41 和 r=0.19)含量呈中度相关,表明 Cd 和 Zn 在秋茄酚类化合物的合成、运输和代谢中发挥了以前未被认识但很重要的作用。研究结果还表明,高水平 Cd 和 Zn 的应用伴随着三种参与重金属耐受过程的酚类代谢途径。