Weider Lawrence J, Makino Wataru, Acharya Kumud, Glenn Karen L, Kyle Marcia, Urabe Jotaro, Elser James J
Department of Zoology and Biological Station, University of Oklahoma, Norman, OK 73019, USA.
Oecologia. 2005 May;143(4):537-47. doi: 10.1007/s00442-005-0003-x. Epub 2005 Mar 24.
The role of stoichiometric food quality in influencing genotype coexistence and competitive interactions between clones of the freshwater microcrustacean, Daphnia pulex, was examined in controlled laboratory microcosm experiments. Two genetically distinct clones of D. pulex, which show variation in their ribosomal rDNA structure, as well as differences in a number of previously characterized growth-rate-related features (i.e., life-history features), were allowed to compete in two different arenas: (1) batch cultures differing in algal food quality (i.e., high vs. low carbon:phosphorus (C:P ratio) in the green alga, Scenedesmus acutus); (2) continuous flow microcosms receiving different light levels (i.e., photosynthetically active radiation) that affected algal C:P ratios. In experiment 1, a clear genotype x environment interaction was determined with clone 1 out-competing clone 2 under high nutrient (i.e., low food C:P) conditions, while the exact opposite pattern was observed under low nutrient (i.e., high C:P) conditions. In experiment 2, clone 1 dominated over clone 2 under high light (higher C:P) conditions, but clonal coexistence was observed under low light (low C:P) conditions. These results indicate that food (nutrient) quality effects (hitherto an often overlooked factor) may play a role in microevolutionary (genotypic) responses to changing stoichiometric conditions in natural populations.
在受控的实验室微观世界实验中,研究了化学计量食物质量在影响淡水微型甲壳动物大型溞克隆之间的基因型共存和竞争相互作用中的作用。使用了两个基因不同的大型溞克隆,它们在核糖体rDNA结构上存在差异,并且在许多先前表征的与生长速率相关的特征(即生活史特征)方面也有所不同,让它们在两个不同的环境中竞争:(1)藻类食物质量不同的分批培养(即绿藻尖锐栅藻中高碳:磷(C:P比)与低碳:磷);(2)接受不同光照水平(即光合有效辐射)的连续流动微观世界,光照水平会影响藻类的C:P比。在实验1中,确定了明显的基因型×环境相互作用,在高营养(即低食物C:P)条件下克隆1胜过克隆2,而在低营养(即高C:P)条件下观察到了相反的模式。在实验2中,在高光(较高C:P)条件下克隆1占主导地位,但在低光(低C:P)条件下观察到了克隆共存。这些结果表明,食物(营养)质量效应(迄今为止一个经常被忽视的因素)可能在自然种群中对不断变化的化学计量条件的微观进化(基因型)反应中发挥作用。