Department of Agrifood Production and Environmental Sciences - Università degli Studi di Firenze, Viale delle Idee 30, 50019 Sesto Fiorentino, Florence, Italy.
Department of Biology, Università degli Studi di Firenze, via Micheli 1, 50121 Florence, Italy.
Plant Sci. 2018 Jun;271:1-8. doi: 10.1016/j.plantsci.2018.03.006. Epub 2018 Mar 9.
This work investigated the effect of Zn excess on growth, metal accumulation and photosynthetic changes in Tetradenia riparia, in relation to possible variations in the composition of the plant volatilome. Experiments were carried out in hydroponics exposing plants to a range of Zn concentrations. Zinc excess negatively affected plant growth in a dose-dependent manner. The metal was accumulated proportionally to its concentration in the medium and preferentially allocated to roots. All the photosynthetic parameters and the concentration of some photosynthetic pigments were negatively affected by Zn, whereas the level of leaf total soluble sugars remained unchanged. Twenty-three different VOCs were identified in the plant volatilome. Each compound was emitted at a different level and intensity of emission was manifold increased by the presence of Zn in the growth medium. The Zn-induced compounds could represent both an adaptive response (f.i. methanol, acetylene, C-aldehydes, isoprene, terpenes) and a damage by-product (f.i. propanal, acetaldehyde, alkyl fragments) of the metal presence in the culture medium. Given that the Zn-mediated induction of those VOCs, considered protective, occurred even under a Zn-limited photosynthetic capacity, our work supports the hypothesis of an active role of such molecules in an adaptive plant response to trace metal stress.
本研究调查了锌过量对 Tetradenia riparia 生长、金属积累和光合作用变化的影响,同时研究了植物挥发物组成可能发生的变化。实验在水培条件下进行,植物暴露于一系列锌浓度下。锌过量以剂量依赖的方式对植物生长产生负面影响。金属与介质中的浓度成比例积累,并优先分配到根部。所有光合作用参数和一些光合色素的浓度都受到锌的负面影响,而叶片总可溶性糖的水平保持不变。在植物挥发物中鉴定出了 23 种不同的 VOC。每种化合物的排放水平不同,而在生长介质中存在锌时,其排放强度则大大增加。锌诱导的化合物可能代表了金属存在于培养基中的适应性反应(例如甲醇、乙炔、C-醛、异戊二烯、萜类)和损伤副产物(例如丙醛、乙醛、烷基片段)。鉴于那些被认为具有保护作用的 VOC 是在光合作用能力受到锌限制的情况下被锌介导诱导的,我们的工作支持了这些分子在植物对痕量金属胁迫的适应性反应中发挥积极作用的假说。