Department of Environmental Analysis, Faculty of Chemistry, University of Gdańsk, Gdańsk, Poland.
Plant Biol (Stuttg). 2011 Nov;13(6):932-9. doi: 10.1111/j.1438-8677.2011.00444.x. Epub 2011 Mar 2.
The complex of species formed by eggplant (Solanum melongena L.) and its wild and weedy relatives (mainly S. incanum L. and S. insanum L.) is characterised by an extreme morphological divergence that is not always associated with genetic variation. The taxonomy of so-called 'spiny Solanum' species (subgenus Leptostemonum) is therefore extremely unclear. Cultivated eggplant lacks resistance to pests that frequently occur among the wild forms and species. As these wild plants are a potential gene pool for improvement of eggplant cultivars, knowledge of the characteristics of taxonomic relations between plants of different origin is crucial. We suggest using the leaf cuticular n-alkane chain length distribution pattern as an alternative taxonomic marker for eggplant and related species. The results are in good agreement with current knowledge of the systematics of these plants; at the same time, the method developed here is useful for verifying plant identification based on morphological traits. Analysis of 13 eggplant cultivars, five accessions of S. incanum and two lines of S. macrocarpon enabled the intraspecific variation within eggplant to be assessed as low. There was wide variability among S. incanum accessions, probably because plants described as S. incanum are members of a number of different species. Some Asian accessions (sometimes described as S. insanum) were found to be almost identical to S. melongena, while a truly wild African S. incanum plant showed extensive similarity. The usefulness of the chemotaxonomic approach in dealing with the S. melongena-S. incanum complex is discussed.
茄子(Solanum melongena L.)及其野生和杂草亲缘种(主要为 S. incanum L. 和 S. insanum L.)形成的物种复合体具有极端的形态分化,这种分化并不总是与遗传变异相关。因此,所谓的“多刺茄属”物种(Leptostemonum 亚属)的分类学非常不清楚。栽培茄子缺乏对野生种中常见害虫的抗性。由于这些野生植物是茄子品种改良的潜在基因库,因此了解不同起源植物之间分类关系的特征至关重要。我们建议使用叶表皮正构烷烃链长分布模式作为茄子和相关物种的替代分类标记。研究结果与这些植物系统发育的现有知识非常吻合;同时,这里开发的方法对于基于形态特征验证植物鉴定也非常有用。对 13 个茄子品种、5 个 S. incanum 品系和 2 个 S. macrocarpon 品系的分析评估了茄子的种内变异,结果表明其变异程度较低。S. incanum 品系之间存在广泛的变异性,这可能是因为被描述为 S. incanum 的植物是多个不同物种的成员。一些亚洲品系(有时被描述为 S. insanum)与 S. melongena 几乎相同,而真正的野生非洲 S. incanum 植物则表现出广泛的相似性。讨论了化学分类方法在处理 S. melongena-S. incanum 复合体中的应用。