Department of Agri-Food and Environmental Science, Università di Firenze, via delle Idee 30, 50019, Sesto Fiorentino, Italy.
Department of Biology, Università di Firenze, via Micheli 1, 50121, Firenze, Italy.
Environ Pollut. 2016 Mar;210:282-92. doi: 10.1016/j.envpol.2015.12.020. Epub 2016 Jan 20.
We investigated how the adaptation to metalliferous environments can influence the plant response to biotic stress. In a metallicolous and a non-metallicolous population of Silene paradoxa the induction of oxidative stress and the production of callose and volatiles were evaluated in the presence of copper and of the PAMP fungal protein cerato-platanin, separately and in combination. Our results showed incompatibility between the ordinary ROS-mediated response to fungal attack and the acquired mechanisms of preventing oxidative stress in the tolerant population. A similar situation was also demonstrated by the sensitive population growing in the presence of copper but, in this case, with a lack of certain responses, such as callose production. In addition, in terms of the joint behaviour of emitted volatiles, multivariate statistics showed that not only did the populations respond differently to the presence of copper or biotic stress, but also that the biotic and abiotic stresses interacted in different ways in the two populations. Our results demonstrated that the same incompatibility of hyperaccumulators in ROS-mediated biotic stress signals also seemed to be exhibited by the excluder metallophyte, but without the advantage of being able to rely on the elemental defence for plant protection from natural enemies.
我们研究了适应富含金属环境如何影响植物对生物胁迫的反应。在 Silene paradoxa 的一个富含金属和一个非富含金属的种群中,我们分别评估了在铜和真菌蛋白几丁质酶存在下,以及它们同时存在时,氧化应激的诱导、胼胝质的产生和挥发物的产生。我们的结果表明,在耐受种群中,普通 ROS 介导的对真菌攻击的反应与防止氧化应激的获得机制之间存在不兼容性。在生长过程中存在铜的敏感种群中也出现了类似的情况,但在这种情况下,某些反应(如胼胝质的产生)缺失。此外,就挥发物的联合行为而言,多元统计表明,不仅种群对铜或生物胁迫的存在有不同的反应,而且生物和非生物胁迫在两个种群中的相互作用方式也不同。我们的结果表明,超积累植物在 ROS 介导的生物胁迫信号中表现出的不兼容性似乎也存在于排除金属的植物中,但它们没有能够依靠元素防御来保护植物免受天敌侵害的优势。