Copolovici Lucian, Niinemets Ülo
Institute of Technical and Natural Sciences Research-Development of "Aurel Vlaicu" University, Elena Dragoi 2, Arad 310330, Romania; Institute of Agricultural and Environmental Sciences, Estonian University of Life Sciences, Kreutzwaldi 1, Tartu 51014, Estonia.
Institute of Agricultural and Environmental Sciences, Estonian University of Life Sciences, Kreutzwaldi 1, Tartu 51014, Estonia; Estonian Academy of Sciences, Kohtu 6, 10130 Tallinn, Estonia.
Chemosphere. 2015 Nov;138:751-7. doi: 10.1016/j.chemosphere.2015.07.075. Epub 2015 Aug 18.
Sesquiterpenes are plant-produced hydrocarbons with important ecological functions in plant-to-plant and plant-to-insect communication, but due to their high reactivity they can also play a significant role in atmospheric chemistry. So far, there is little information of gas/liquid phase partition coefficients (Henry's law constants) and their temperature dependencies for sesquiterpenes, but this information is needed for quantitative simulation of the release of sesquiterpenes from plants and modeling atmospheric reactions in different phases. In this study, we estimated Henry's law constants (Hpc) and their temperature responses for 12 key plant sesquiterpenes with varying structure (aliphatic, mono-, bi- and tricyclic sesquiterpenes). At 25 °C, Henry's law constants varied 1.4-fold among different sesquiterpenes, and the values were within the range previously observed for monocyclic monoterpenes. Hpc of sesquiterpenes exhibited a high rate of increase, on average ca. 1.5-fold with a 10 °C increase in temperature (Q10). The values of Q10 varied 1.2-fold among different sesquiterpenes. Overall, these data demonstrate moderately high variation in Hpc values and Hpc temperature responses among different sesquiterpenes. We argue that these variations can importantly alter the emission kinetics of sesquiterpenes from plants.
倍半萜是植物产生的碳氢化合物,在植物与植物以及植物与昆虫的通讯中具有重要的生态功能,但由于它们具有高反应活性,因此在大气化学中也能发挥重要作用。到目前为止,关于倍半萜的气/液相分配系数(亨利定律常数)及其温度依赖性的信息很少,但对于定量模拟植物中倍半萜的释放以及不同相中大气反应的建模来说,这些信息是必需的。在本研究中,我们估算了12种结构各异的关键植物倍半萜(脂肪族、单环、二环和三环倍半萜)的亨利定律常数(Hpc)及其温度响应。在25℃时,不同倍半萜的亨利定律常数相差1.4倍,其值在先前观察到的单环单萜的范围内。倍半萜的Hpc表现出较高的增长率,平均而言,温度每升高10℃(Q10)约增长1.5倍。不同倍半萜的Q10值相差1.2倍。总体而言,这些数据表明不同倍半萜的Hpc值和Hpc温度响应存在适度的高变异性。我们认为这些变异能够显著改变植物中倍半萜的排放动力学。