Dow AgroSciences LLC , 9330 Zionsville Road, Indianapolis, Indiana 46268, United States.
J Agric Food Chem. 2013 Sep 18;61(37):8737-42. doi: 10.1021/jf402846k. Epub 2013 Sep 6.
After foliar application, compounds that are not absorbed into leaves can be removed from the leaf surface by dipping or rinsing in dilutions of organic solvents in water. However, interactions between solvent mixtures and the epicuticular wax layer have received little attention, and information on potential physical and chemical intactness of the plant surface following application of solvents is limited. In this study, wheat leaves were dipped in organic solvents at different dilutions with water, and the major component of the leaf epicuticular wax layer, 1-octacosanol, was analyzed to assess damage to the wax layer. Dipping leaves in dilutions of organic solvent higher than 60% by volume resulted in only negligible or low levels of 1-octacosanol extraction, while no 1-octacosanol was detected in any mixtures containing less than 40% organic solvent. Furthermore, analysis of leaf surfaces by scanning electron microscopy showed structural intactness of the epicuticular wax layer when organic solvent mixtures were used. Therefore, our results demonstrate that the epicuticular wax layer of wheat leaves is not altered physically or chemically by organic solvent solutions up to 40% by volume. These findings validate the use of solvent washing procedures to assess unabsorbed compounds on wheat leaf surfaces.
叶片喷施后,未被叶片吸收的化合物可以通过在水中稀释的有机溶剂浸泡或冲洗从叶片表面去除。然而,溶剂混合物与表皮蜡层之间的相互作用很少受到关注,并且关于施用溶剂后植物表面潜在的物理和化学完整性的信息有限。在这项研究中,将小麦叶片浸入不同水稀释度的有机溶剂中,并分析叶片表皮蜡层的主要成分二十八烷醇,以评估蜡层的损伤情况。将叶片浸入体积分数高于 60%的有机溶剂稀释液中,仅导致二十八烷醇的提取量可忽略不计或很低,而在任何含有低于 40%有机溶剂的混合物中均未检测到二十八烷醇。此外,通过扫描电子显微镜对叶片表面进行分析表明,当使用有机溶剂混合物时,表皮蜡层的结构完整。因此,我们的结果表明,小麦叶片的表皮蜡层在体积分数高达 40%的有机溶剂溶液中不会发生物理或化学变化。这些发现验证了使用溶剂清洗程序来评估小麦叶片表面未被吸收的化合物的方法。