Univ Lille Nord de France, F-59000 Lille, Université du Littoral Côte d'Opale, Unité de Chimie Environnementale et Interactions sur le Vivant, F-62228 Calais, France.
J Hazard Mater. 2012 Mar 30;209-210:18-26. doi: 10.1016/j.jhazmat.2011.12.044. Epub 2012 Jan 8.
Arbuscular mycorrhizal (AM) colonization may be one of the means that protects plants and allows them to thrive on polycyclic aromatic hydrocarbon-polluted soils including the carcinogenic benzo(a)pyrene (B[a]P). To understand the mechanisms involved in the AM symbiosis tolerance to B[a]P toxicity, the purpose of this study was to compare the lipid compositions as well as the contents between mycorrhizal and non-mycorrhizal chicory root cultures grown in vitro under B[a]P pollution. Firstly, B[a]P induced significant decreases of the Glomalean lipid markers: C16:1ω5 and 24-methyl/methylene sterol amounts in AM roots indicating a reduced AM fungal development inside the roots. Secondly, whereas increases in fatty acid amounts after B[a]P application were measured in non-mycorrhizal roots, no changes were shown in mycorrhizal roots. On the other hand, while, after treatment with B[a]P, the total phospholipid contents were unmodified in non-mycorrhizal roots in comparison with the control, drastic reductions were observed in mycorrhizal roots, mainly owing to decreases in phosphatidylethanolamine and phosphatidylcholine. Moreover, B[a]P affected AM root sterols by reducing stigmasterol. In conclusion, the findings presented in this paper have highlighted, for the first time, significant changes in the AM root lipid metabolism under B[a]P pollution and have culminated on their role in the defense/protection mechanisms.
丛枝菌根(AM)定殖可能是保护植物并使其在包括致癌的苯并[a]芘(B[a]P)在内的多环芳烃污染土壤中茁壮成长的一种方式。为了了解 AM 共生对 B[a]P 毒性的耐受性所涉及的机制,本研究的目的是比较在 B[a]P 污染下体外培养的丛枝菌根和非丛枝菌根菊苣根的脂质组成和含量。首先,B[a]P 诱导 Glomalean 脂质标志物的显著减少:AM 根中的 C16:1ω5 和 24-甲基/亚甲基甾醇含量表明 AM 真菌在根内的发育减少。其次,虽然在非菌根根中测量到 B[a]P 处理后脂肪酸含量增加,但在菌根根中未显示出变化。另一方面,虽然在用 B[a]P 处理后,与对照相比,非菌根根中的总磷脂含量没有改变,但在菌根根中观察到剧烈减少,主要是由于磷脂酰乙醇胺和磷脂酰胆碱减少。此外,B[a]P 通过降低豆甾醇来影响 AM 根甾醇。总之,本文的研究结果首次强调了 AM 根脂质代谢在 B[a]P 污染下的显著变化,并最终强调了它们在防御/保护机制中的作用。