Natural Products Laboratory, Institute of Biology, Leiden University, Leiden, The Netherlands.
Hortus Botanicus Leiden, Leiden University, Leiden, The Netherlands.
Planta Med. 2021 Oct;87(12-13):1032-1044. doi: 10.1055/a-1529-8370. Epub 2021 Jul 8.
Despite the extensive studies on latex, some fundamental questions on their chemical specialization and the factors influencing this specialization have yet to be investigated. To address this issue, latexes and their bearing tissues from diverse species were profiled by HNMR and GC-MS. Additionally, the antiherbivory activity of these materials was tested against thrips ( Pergande, 1895). The multivariate data analysis showed a clear separation between latexes and leaves from the same species. Conversely, the chemical profiles of latexes from different species were highly similar, that is, they displayed much less metabolic species-specificity. These shared chemical profiles of latexes were reflected in their overall higher mortality index (80.4% ± 7.5) against thrips compared with their bearing tissues (55.5% ± 14.9). The metabolites correlated to the antiherbivory activity of latexes were triterpenoids and steroids. However, the activity could not be attributed to any single terpenoid. This discrepancy and the reduction of the latex activity after fractionation suggested a complementary effect of the compounds when in a mixture as represented by the latex. Additionally, aqueous fractions of several latexes were found to possess simple spectra, even with only 1 metabolite. These metabolites were determined to be organic acids that might be involved in the modulation of the rate of latex coagulation, potentially increasing the sealing and trapping effects of the latex.
尽管对乳胶进行了广泛的研究,但关于其化学特异性以及影响这种特异性的因素的一些基本问题仍有待研究。为了解决这个问题,我们通过 HNMR 和 GC-MS 对来自不同物种的乳胶及其承载组织进行了分析。此外,我们还测试了这些材料对蓟马( Pergande,1895)的抗食草活性。多元数据分析显示,乳胶与同一物种的叶片之间存在明显的分离。相反,不同物种的乳胶化学特征非常相似,即它们表现出较少的代谢物种特异性。乳胶的这些共同化学特征反映在它们对蓟马的总体较高死亡率指数(80.4%±7.5)上,与它们的承载组织(55.5%±14.9)相比。与乳胶抗食草活性相关的代谢物是三萜类化合物和类固醇。然而,这种活性不能归因于任何单一的萜类化合物。这种差异以及乳胶活性在分级后的降低表明,当以乳胶混合物的形式存在时,化合物具有互补作用。此外,发现几种乳胶的水相部分具有简单的光谱,即使只有 1 种代谢物。这些代谢物被确定为有机酸,可能参与调节乳胶的凝固速度,从而增加乳胶的密封和捕获效果。