Piculell Bridget J, Hoeksema Jason D, Thompson John N
Department of Ecology and Evolutionary Biology, 1156 High Street, University of California, Santa Cruz, Santa Cruz, CA 95064, USA.
BMC Biol. 2008 May 28;6:23. doi: 10.1186/1741-7007-6-23.
Geographic selection mosaics, in which species exert different evolutionary impacts on each other in different environments, may drive diversification in coevolving species. We studied the potential for geographic selection mosaics in plant-mycorrhizal interactions by testing whether the interaction between bishop pine (Pinus muricata D. Don) and one of its common ectomycorrhizal fungi (Rhizopogon occidentalis Zeller and Dodge) varies in outcome, when different combinations of plant and fungal genotypes are tested under a range of different abiotic and biotic conditions.
We used a 2 x 2 x 2 x 2 factorial experiment to test the main and interactive effects of plant lineage (two maternal seed families), fungal lineage (two spore collections), soil type (lab mix or field soil), and non-mycorrhizal microbes (with or without) on the performance of plants and fungi. Ecological outcomes, as assessed by plant and fungal performance, varied widely across experimental environments, including interactions between plant or fungal lineages and soil environmental factors.
These results show the potential for selection mosaics in plant-mycorrhizal interactions, and indicate that these interactions are likely to coevolve in different ways in different environments, even when initially the genotypes of the interacting species are the same across all environments. Hence, selection mosaics may be equally as effective as genetic differences among populations in driving divergent coevolution among populations of interacting species.
地理选择镶嵌体,即物种在不同环境中对彼此施加不同的进化影响,可能推动共同进化物种的多样化。我们通过测试在一系列不同的非生物和生物条件下,当测试植物和真菌基因型的不同组合时,辐射松(Pinus muricata D. Don)与其常见的外生菌根真菌之一(西方须腹菌Rhizopogon occidentalis Zeller和Dodge)之间的相互作用在结果上是否存在差异,研究了植物 - 菌根相互作用中地理选择镶嵌体的可能性。
我们采用了一个2×2×2×2析因实验,来测试植物谱系(两个母本种子家族)、真菌谱系(两个孢子收集物)、土壤类型(实验室混合土或田间土壤)以及非菌根微生物(有或无)对植物和真菌表现的主要和交互作用。通过植物和真菌表现评估的生态结果在不同实验环境中差异很大,包括植物或真菌谱系与土壤环境因素之间的相互作用。
这些结果显示了植物 - 菌根相互作用中选择镶嵌体的可能性,并表明即使最初相互作用物种的基因型在所有环境中相同,这些相互作用在不同环境中也可能以不同方式共同进化。因此,在驱动相互作用物种种群间的趋异共同进化方面,选择镶嵌体可能与种群间的遗传差异同样有效。