Amato Alberto, Kooistra Wiebe H C F, Ghiron Jung Hee Levialdi, Mann David G, Pröschold Thomas, Montresor Marina
Stazione Zoologica A. Dohrn, Villa Comunale, 80121 Napoli, Italy.
Protist. 2007 Apr;158(2):193-207. doi: 10.1016/j.protis.2006.10.001. Epub 2006 Dec 4.
Pseudo-nitzschia is a marine cosmopolitan genus of chain-forming planktonic diatoms. As for the vast majority of phytoplankton organisms, species identification within this genus mostly relies upon morphological features. Taxa were initially identified based on cell shape and gross morphology of their composite silica cell wall, called the frustule. Yet, observations of the frustule in electron microscopy showed many additional characters for species identification and results of molecular studies have demonstrated that genetically distinct groups might exist within morpho-species. However, these studies have not addressed the biological meaning of these genetic differences. Here, we bridge that gap by comparing ultrastructural features and sequence data (three ribosomal and one plastid marker) of 95 strains with results of mating experiments among these strains. Experiments were performed on two morphologically distinct entities: P. delicatissima and P. pseudodelicatissima. Each of the two entities consisted of multiple genetically distinct and reproductively isolated taxa, all occurring in sympatry: P. delicatissima was composed of three phylogenetic and reproductively distinct groups, whereas P. pseudodelicatissima consisted of up to five. Once these taxa had been defined both genetically and biologically, subtle ultrastructural differences could be detected as well. Our findings not only show that cryptic genetic variants abound in sympatry, but also that they are reproductively isolated and, therefore, biologically distinct units.
拟菱形藻是一种在海洋中广泛分布的形成链状的浮游硅藻属。与绝大多数浮游植物一样,该属内的物种鉴定主要依赖形态特征。最初,分类单元是根据细胞形状及其复合硅质细胞壁(称为壳套)的总体形态来鉴定的。然而,电子显微镜下对壳套的观察揭示了许多用于物种鉴定的其他特征,分子研究结果表明形态物种内可能存在遗传上不同的群体。然而,这些研究尚未探讨这些遗传差异的生物学意义。在这里,我们通过比较95个菌株的超微结构特征和序列数据(三个核糖体和一个质体标记)以及这些菌株之间的交配实验结果来填补这一空白。实验在两个形态上不同的实体上进行:柔弱拟菱形藻和假柔弱拟菱形藻。这两个实体中的每一个都由多个遗传上不同且生殖隔离的分类单元组成,所有这些分类单元都共存于同一区域:柔弱拟菱形藻由三个系统发育和生殖上不同的群体组成,而假柔弱拟菱形藻则由多达五个群体组成。一旦从遗传和生物学角度定义了这些分类单元,也能检测到细微的超微结构差异。我们的研究结果不仅表明在同一区域中隐藏的遗传变异大量存在,而且它们是生殖隔离的,因此是生物学上不同的单元。