Graduate School of Life Sciences, Tohoku University, Sendai, 980-8578, Japan,
Oecologia. 2014 May;175(1):163-72. doi: 10.1007/s00442-014-2896-8. Epub 2014 Feb 13.
An increasing number of studies have shown that genetic diversity within plant species can influence important ecological processes. Here, we report a two-year wetland mesocosm experiment in which genotypic richness of Phragmites australis was manipulated to examine its effects on primary productivity and nitrogen removal from water. We used six genotypes of P. australis, and compared primary productivity and nitrogen concentration in the outflow water of the mesocosms between monocultures and polycultures of all six genotypes. We also quantified the abundance of denitrifying bacteria, as denitrification is a primary mechanism of nitrogen removal in addition to the biotic uptake by P. australis. Plant productivity was significantly greater in genotypic polycultures compared to what was expected based on monocultures. This richness effect on productivity was driven by both complementary and competitive interactions among genotypes. In addition, nitrogen removal rates of mesocosms were generally greater in genotypic polycultures compared to those expected based on monocultures. This effect, particularly pronounced in autumn, may largely be attributable to the enhanced uptake of nitrogen by P. australis, as the abundance of nitrite reducers did not increase with plant genotypic diversity. Although our effect sizes were relatively small compared to previous experiments, our study emphasizes the effect of genotypic interactions in regulating multiple ecological processes.
越来越多的研究表明,植物物种内的遗传多样性可以影响重要的生态过程。在这里,我们报告了一项为期两年的湿地中观实验,其中操纵了芦苇的基因型丰富度,以研究其对初级生产力和水中氮去除的影响。我们使用了 6 种芦苇基因型,并比较了中观实验中单一栽培和 6 种基因型的混合栽培中初级生产力和水中氮浓度的差异。我们还量化了反硝化细菌的丰度,因为反硝化是氮去除的主要机制,除了芦苇的生物吸收外。与单一栽培相比,基因型混合栽培中的植物生产力显著更高。这种生产力的丰富效应是由基因型之间的互补和竞争相互作用驱动的。此外,与基于单一栽培的预期相比,中观实验中氮去除率通常在基因型混合栽培中更高。这种效应,特别是在秋季更为明显,可能主要归因于芦苇对氮的吸收增强,因为亚硝酸盐还原菌的丰度并没有随着植物基因型多样性的增加而增加。虽然与之前的实验相比,我们的效应大小相对较小,但我们的研究强调了基因型相互作用在调节多个生态过程中的作用。